WO2015025407A1 - Filled soil block for cultivation, plant cultivation method, and soil block-cultivated plant - Google Patents

Filled soil block for cultivation, plant cultivation method, and soil block-cultivated plant Download PDF

Info

Publication number
WO2015025407A1
WO2015025407A1 PCT/JP2013/072459 JP2013072459W WO2015025407A1 WO 2015025407 A1 WO2015025407 A1 WO 2015025407A1 JP 2013072459 W JP2013072459 W JP 2013072459W WO 2015025407 A1 WO2015025407 A1 WO 2015025407A1
Authority
WO
WIPO (PCT)
Prior art keywords
soil
cultivation
block
filled
plant
Prior art date
Application number
PCT/JP2013/072459
Other languages
French (fr)
Japanese (ja)
Inventor
工藤 哲也
Original Assignee
Kudo Tetsuya
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Kudo Tetsuya filed Critical Kudo Tetsuya
Priority to JP2014505445A priority Critical patent/JP5525666B1/en
Priority to PCT/JP2013/072459 priority patent/WO2015025407A1/en
Publication of WO2015025407A1 publication Critical patent/WO2015025407A1/en

Links

Images

Classifications

    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G24/00Growth substrates; Culture media; Apparatus or methods therefor
    • A01G24/40Growth substrates; Culture media; Apparatus or methods therefor characterised by their structure
    • A01G24/44Growth substrates; Culture media; Apparatus or methods therefor characterised by their structure in block, mat or sheet form

Definitions

  • the present invention relates to a soil-filled soil block used for cuttings, sowing, transplanting, and the like for plant stem insertion, leaf cutting, root cutting, and root grafting, and a plant cultivation method using the soil block. And a plant cultivated in the soil block (hereinafter referred to as “soil block cultivated plant”).
  • the hole B since the hole B is small and shallow, when the soil block is stacked for storage or transportation, the hole B may be deformed by its own weight (load) and closed. For this reason, the hole B played only the role of the mark (mark which shows a block center part) at the time of performing plant cultivation work.
  • the hole B In order to cultivate the plant C in the hole B, every time it is cultivated, the hole B has a shape, size, and depth suitable for cultivation by re-drilling with a wire or expanding the hole. Had to be reworked.
  • the molded soil block may be damaged, and if it is sown in the reworked hole, the soil for forming the soil block will be covered with the seed, and the reworked hole will be cut or grafted. Then, it was troublesome that the soil for forming the soil block had to be brought in and stabilized. When the block was damaged or deformed, it was necessary to restore the original shape, and the repair work was troublesome and time consuming.
  • An object of the present invention is to provide a soil block which can be planted without separately preparing soil for cultivation, a plant cultivation method using the soil block, and a soil block cultivation plant.
  • soil block filled with soil for cultivation of the present invention is a natural soil, artificial soil, resin, a mixture thereof (hereinafter referred to as “molding soil”) compressed into a block of arbitrary shape.
  • a bottomed work hole is opened on the upper surface of the molded block body, and the work hole is filled with soil suitable for plant cultivation (hereinafter referred to as “cultivation soil”) such as natural soil, artificial soil, resin, and a mixture thereof.
  • soil block filled with soil for cultivation hereinafter simply referred to as “soil block” is a natural soil, artificial soil, resin, a mixture thereof.
  • the block body is not easily deformed, the work hole is not easily blocked, and the shape after molding can be self-held (the size is reduced by drying, but the shape is constant (including almost constant; detailed description of the invention and claims)
  • the working hole has a size and depth that facilitates planting (planting) such as sowing, transplanting, cuttings, etc. (at least the depth that enables cuttings) and is filled
  • the filled soil for cultivation and the block main body have a soil quality and an amount of soil capable of growing the cultivated plant to an arbitrary growth stage. It is desirable that the thickness (width) of the outer periphery of the work hole of the block body is designed to be a dimension that does not easily collapse after molding.
  • the soil for cultivation contains fertilizer (nutrient) necessary for the growth target.
  • the nutrient may be liquid, powder, or granular.
  • the liquid nutrient can be adsorbed on an adsorbent made of a material that easily adsorbs nutrients such as zeolite, and the nutrient adsorbed adsorbent is mixed with the cultivation soil, so that the nutrient can be included in the cultivation soil.
  • the molding soil can also contain nutrients necessary for the growth target as described above, and the molding soil can be compression-molded to form a block body.
  • the soil for filling the soil block filled with the soil is uncompressed to the extent that the working hole is filled with its own weight, or the non-compressed filled soil for cultivation can be easily post-processed such as drilling, grooving, making a dent, etc. It is something that has been compacted. In any case, at least the softness that can be cut without post-processing.
  • the soil block is a single unit having one unit as a basic unit, an integrated unit in which two or more soil blocks are integrally formed, or an integrated unit in which a divided part that can be divided into a single unit or two or more soil blocks is formed. It can be shaped.
  • the individual soil blocks of the integrated type and the divided integrated type are filled with cultivation soil in the working holes.
  • a space portion can be provided between the outer peripheral surfaces of adjacent block bodies.
  • a part of the outer peripheral surface of the adjacent block main body is in contact, and a space is formed in the other part.
  • the space allows the outer peripheral surface of the block body to come into contact with air, so that the roots of the plants extending from the cultivation soil into the block main body can be prevented from extending out of the block main body. Inside, it is possible to take in oxygen necessary for plant cultivation.
  • the work hole can be made gradually thinner from the upper surface side to the bottom surface side of the block body.
  • the block main body can be gradually thinned over the entire length from the upper surface side to the bottom surface side, or only the bottom side can be gradually thinned from the middle of the work hole.
  • the soil block can cover the top surface of the soil block from the top of the filled cultivation soil with a covering material to prevent the filled cultivation soil from falling off.
  • Plant cultivation method of the present invention suppresses the growth of roots of plants cultivated in the soil for cultivation filled in the working holes of the soil block, and the tip of the root is the outer peripheral surface of the soil block (slightly inside of the outer peripheral surface, somewhat Including the outside: the same in the detailed description of the invention and the claims), and a cultivation method that prevents root pots from being formed on the outer peripheral surface of the block body.
  • plants are cultivated by planting work such as sowing, transplanting, cuttings, etc.
  • the outer peripheral surface of the soil block is Touching the air, the root of the plant is brought into contact with air of humidity that is difficult to stretch on the outer peripheral surface, and the elongation of the root is stopped near the contact position with the air (outer peripheral surface).
  • a root pot is not formed, but the root is stretched from the cultivation soil to the whole of the block body (including almost the whole: the same in the detailed description of the invention and the claims below), and the soil block is bare. Make sure that the block body does not collapse (even if not in a container or tray).
  • the soil block In order to make the outer peripheral surface of the soil block come into contact with air, the soil block is put in a larger container and a gap is provided between the outer peripheral surface of the soil block and the inner peripheral surface of the container. it can. When cultivating a soil block without putting it in a container, the soil block is placed indoors or outdoors while being bare.
  • soil block cultivation plant of the present invention The plant cultivated with the soil block of the present invention (soil block cultivated plant) has been filled in any of the working holes of the above-described unitary soil block, integral soil block, or divided integral soil block of the present invention. Plants are cultivated in the cultivation soil. In this case, the roots extend only to the outer peripheral surface of the soil block, but the block main body is stretched throughout the block main body so that the block main body does not collapse.
  • the soil block cultivated plant of the present invention can be a cutting plant seedling that has been cut and grown on the cultivation soil filled in the working hole. Usually, since the roots of cut stems and grafted seedlings are cut, the roots are newly rooted and project from the cut surface or the contact surface with the soil.
  • the soil block of the present invention has the following effects. (1) Since a work hole having a size and depth capable of cultivating a plant is formed in the block main body and the cultivation soil is filled in the work hole, plant cultivation is performed using the filled cultivation soil. Therefore, it is not necessary to prepare soil for cultivation, and plant cultivation can be easily performed. (2) Since the block body is hard to collapse even when stacked, it is hard to lose its shape, the work hole is hard to close, and it is compressed and solidified to a hardness that can self-hold the shape after molding. It is easy to carry out operations such as transportation, cultivation and shipping.
  • the cultivation soil filled in the working hole is non-compressed, or the non-compressed cultivation soil is pressed and compacted to such an extent that post-processing such as drilling, grooving, and dent making can be easily performed. Therefore, planting (planting) such as sowing and cuttings on the soil for cultivation can be performed easily.
  • the filled cultivation soil and block main body have a soil quality and an amount of soil that allow the cultivated plant to grow up to an arbitrary growth stage, and thus are easy to germinate, root, and settle, so that the plant grows. It becomes a suitable cultivation environment.
  • both or at least one of the filled cultivation soil and block main body contains nutrients
  • the plant is more suitable for the growth environment of the plant, and the plant is easy to grow even if it is smaller than the conventional soil block.
  • the block body has a columnar shape with a height of about 40-50 mm and a diameter of about 30-40 mm, and the soil block has a hole diameter of about 15-25 mm
  • the seedling will be about several hundred mm ( It can be grown (until it is equivalent to raising a seedling in a general-purpose seedling pot with a diameter of 90 mm).
  • (6) In the case of an integrated soil block or a divided integrated soil block, it can be stored, cultivated, transported, shipped, etc.
  • the integrated soil block and the divided integrated soil block can transport a large number of integrated soil blocks at once by a machine, workability is improved and work efficiency is improved.
  • the plant cultivation method of the present invention has the following effects. (1) Since the tip of the root of the plant extends only to the outer peripheral surface of the block main body, plant cultivation that can be transplanted or planted as it is without loosening or cutting the root is possible. (2) Although the roots are extended only to the outer peripheral surface of the block main body, they can be stretched throughout the block main body, so that the plant cultivation in which the soil block does not lose its shape even when taken out from the container can be performed.
  • the soil block cultivation plant of the present invention has the following effects. (1) Since the roots extend only to the outer peripheral surface of the soil block, the roots can be transplanted or planted as they are, the roots are not damaged at the time of transplanting or planting, and the plant becomes easy to grow after transplanting or planting. (2) Although the roots extend only to the outer peripheral surface of the soil block, they are stretched in the block body, so the soil block does not collapse, and plants can be shipped and distributed to the market without containers. Cost reduction can be achieved. (3) Since the plant cultivated in the integrated soil block or the divided integrated soil block can be shipped and distributed as it is, it is easy to handle.
  • FIG. 1 It shows an example of the soil block of the present invention
  • (a) is a perspective view when the block body is cylindrical and the work hole is a circular bottom
  • (b) is a block body is cylindrical.
  • An example of the soil block of this invention is shown, Comprising: (a) is a perspective view which shows an example at the time of plant cultivation to the soil for cultivation with which the work hole was filled, (b) is a soil block cultivation plant of (a) FIG.
  • the soil block of the present invention (a) is a plan view of an integrated soil block in which a large number of cylindrical soil blocks are integrally formed in a staggered arrangement, and (b) is a vertical and horizontal shape of a large number of cylindrical soil blocks.
  • (a) is a top view of the integrated soil block by which many square-shaped soil blocks were integrally molded in the front and rear, right and left
  • (b) is the integrated soil block of (a).
  • the longitudinal cross-sectional view which shows the state which the root of the plant cultivated to the side extended to the adjacent soil block.
  • Sectional drawing which is another example of the soil block of this invention, and shows the state which carried out the plant cultivation to the integrated soil block with a space part between the outer peripheral surfaces of the adjacent soil block.
  • It is explanatory drawing of the plant cultivation method of this invention Comprising: (a) is explanatory drawing of the cultivation method which puts a soil block in a container and makes the outer peripheral surface of a soil block touch air, and (b) is (a). Explanatory drawing of the soil block cultivation plant which took out the plant cultivated with this cultivation method from the container. The perspective view which shows an example of the conventional soil block.
  • the soil block 1 is formed by adding moisture to the molding soil and kneading it into a block body 2 which is compression-molded and hardened into a block shape.
  • a bottomed working hole 3 is formed in the upper surface of the block body 2.
  • the shape of the work hole 3 is made narrower such as an inverted conical shape (FIG. 1A) or an inverted polygonal pyramid shape (FIG.
  • Plants C such as cutting seedlings and grafted seedlings cultivated in the soil for cultivation in the inside become easy to settle at the lower center of the work hole 3, and the root 10 becomes easy to stretch evenly (including substantially equal) toward the outer periphery of the block body 2. It is desirable to make the soil block easy to stabilize even if the seedling C grows.
  • the work hole 3 may be gradually reduced from the upper surface side to the bottom surface side of the block body 2, and only the lower side (only the bottom side) may be gradually reduced from the middle of the work hole 3. .
  • the material for the forming soil is not particularly limited as long as it does not hinder plant cultivation, but soil for plant cultivation is suitable.
  • peat moss black peat moss (hereinafter, both are referred to as “peet moss”), red crust, humus, a mixture of two or more of these, and others may be used.
  • the block body 2 is made by mixing peat moss, which is a molding soil, with water and kneading it, and pressing it into a block shape (compression molding), or adding a binder such as an adhesive or a sticking agent to the molding soil, and nutrients as necessary. (Fertilizer) can be included and molded.
  • the compression molding may be mechanical or manual.
  • the block body 2 is hard to be crushed even when stacked after molding, hard to lose its shape, hard to close the work hole 3, and has a hardness capable of self-holding the shape after molding, and is hard enough to be post-processed during implantation. It is desirable that it is compression molded and solidified.
  • the cultivation soil 4 is suitable to contain nutrients. Nutrients are mixed with powdered and granular materials in the molding soil, liquid materials are included, or adsorbed on adsorbents that easily adsorb nutrients such as zeolite, and the adsorbed adsorbed nutrients are mixed into the molding soil. Can be included.
  • the filled cultivation soil 4 and the block main body 2 have a soil quality and a soil amount that allow the cultivated plant C to grow to an arbitrary growth stage. If necessary, both or one of the filled cultivation soil 4 and the block main body 2 may contain nutrients.
  • the working hole 3 can be formed by cutting or pushing the upper surface of the block body 2 after the block body 2 is formed, or can be formed when the block body 2 is formed.
  • the working hole 3 has a size and a depth that allow easy seeding, easy transplanting of the seedling C, and easy cutting.
  • the size and depth (size) of the working hole 3 can be arbitrarily designed according to the purpose of cultivation, but at least have a width and depth suitable for filling the cultivation soil 4. Further, although depending on the size of the seedling C, at least the size and depth of cuttings, depending on the shape and size of the seeds, at least the size and depth of sowing, the size of the seedling C (degree of growth) Depending on the size, at least the seedling C should be sized and deep enough for transplantation. Whatever the diameter of the block body 2 and the height of the block body 2, the diameter of the work hole 3 is about 4/7 or less of the diameter of the block body 2, and the depth of the work hole 3 is equal to the height of the block body. About 3/4 or less is suitable. As an example, when the block body 2 has a diameter of 35 mm and a height of 40 mm, a hole diameter of 10 to 25 mm and a hole depth of about 10 to 30 mm are suitable.
  • the width (thickness) of the edge 12 should be 5 mm or more, preferably 7.5 mm or more.
  • the shape of the work hole 3 is not limited to a circle, and may be, for example, a rectangular hole as shown in FIG.
  • various types of work holes 3 having shapes and sizes other than those described above are prepared, and the type corresponding to the type of plant C to be cultivated and the growth of plant C can be selected and used. preferable.
  • the cultivation soil 4 filled in the work hole 3 may be any material having the performance and purpose necessary for plant cultivation, and may be the same as or different from the molding soil.
  • commercially available soil such as peat moss, red bean clay, and mulch, a mixture of two or more of these, and other materials may be used.
  • the cultivation soil 4 is filled in the work hole 3 in a non-compressed manner (filled in the state of roses), or the post-processing such as drilling, grooving, making a dent, etc. can be made easily. It is compacted so that it can be cultivated easily.
  • the filling amount of the working hole 3 may be filled up to the edge of the working hole 3, but can be smaller than that. In any case, various planting operations such as sowing, transplanting, and cutting can be easily performed.
  • a working part 5 is formed by the working hole 3 and the cultivation soil 4 filled in the working hole 3.
  • the soil block 1 of the present invention may be one in which two or more soil blocks 1 are integrally molded (integrated soil block).
  • FIG. 3A shows an integrated soil block in which cylindrical soil blocks 1 are integrated in a staggered arrangement
  • FIG. 3B shows an outer peripheral surface of the cylindrical soil block 1. Is an integrated soil block connected vertically and horizontally.
  • a space 8 is formed between the outer peripheral surfaces of adjacent soil blocks 1, and the outer peripheral surface 7 of the block body 2 is exposed to the outside. .
  • the working hole 3 of each soil block 1 is filled with cultivation soil 4.
  • FIG. 4 (a) is an integrated soil block in which square-shaped soil blocks 1 are integrated vertically and horizontally in a grid pattern.
  • dividing portions 6 such as lines and grooves are provided at the upper boundary portions of the individual soil blocks 1, and the dividing blocks 6 are divided so that the soil blocks 1 can be divided one by one or a desired number.
  • the soil 4 for cultivation is already filled in the work hole 3 of each soil block.
  • the integrated soil block of FIG. 5 is obtained by integrating a large number of block bodies 2 vertically and horizontally in the same manner as the integrated soil block of FIG. 4A, and a downward V-shaped space on the bottom surface side of the block body 2.
  • a portion 8 is provided so that the outer peripheral surface 7 on the bottom surface side of the block body 2 is exposed to the outside.
  • the space 8 may have other shapes and sizes.
  • the space portion 8 can also be a split-integrated soil block that is also used as the split portion 6.
  • the soil block 1 is supplied and exhausted through the space part 8 to provide an environment suitable for cultivation of the plant C. And the plant C is less likely to rot. Further, when the root 10 extends to the outer peripheral surface 7 of the block body 2, it touches the air and does not extend any more (elongation is prevented). Even in this case, the root 10 can be stretched throughout the block body 2.
  • Both the integrated soil block and the divided integrated soil block are the same as the structure of the single soil block except that two or more soil blocks 1 are integrated.
  • FIGS. 2A and 2B An example of the plant cultivation method using the soil block 1 of the present invention will be described.
  • the cultivation method shown in FIGS. 2A and 2B is an example in the case where the seedling C is transplanted to the cultivation soil 4 in the work hole 3 of the single soil block 1.
  • the soil for cultivation 4 is dug back with a finger or a rod, a hole is made, the seedling C is transplanted into the hole, and the soil for cultivation 4 is brought around the seedling C to stabilize the seedling C.
  • the plant cultivation method of the present invention can cultivate plants with cuttings in addition to the transplanting and sowing of the seedling C described above. Cutting is performed by directly inserting the cultivated stem, leaves, grafts, etc. into the cultivation soil 4. At this time, if necessary, the cultivation soil 4 is moved to the periphery of the stems, leaves, grafts, etc. to stabilize the stems, leaves, grafts, etc.
  • Plant cultivation method 2 using soil block cultivation method for suppressing root elongation
  • the root 10 of the plant C cultivated in the cultivation soil 4 filled in the work hole 3 is suppressed, and the root 10 stretches throughout the interior of the block body 2. It is possible to extend the front end portion 11 only to the outer peripheral surface 7 of the block main body 2.
  • the root 10 has a characteristic that it is difficult to stretch when exposed to air. Therefore, in this invention, the outer peripheral surface 7 of the block main body 2 is made to touch air, and it grows.
  • the soil block 1 may be installed indoors or outdoors in a naked state as shown in FIG. 5, and as shown in FIG.
  • a space (gap) 8 may be provided between the outer peripheral surface 7 of the soil block 1 and the inner peripheral surface 9a of the container 9 in a large container 9 (regardless of shape, size, material, etc.).
  • the tip portion 11 of the root 10 of the plant C cultivated in the soil block 1 extends to the outer peripheral surface 7 of the block body 2, the tip portion of the root 10 touches the air and does not extend any more.
  • the protrusion slightly protrudes from the outer peripheral surface 7.
  • the root 10 is sufficiently stretched over almost the entire area of the block body 2, and the block body 2 is compression-molded so as not to be crushed and easily deformed.
  • the soil block 1 does not lose its shape.
  • Plant cultivation method using monolithic soil block or split monolithic soil block Although the said plant cultivation method is a case where a single-piece
  • the type of plant C to be cultivated, the time of sowing, the number of seeds to be seeded, the transplanting time of seedling C, the number of transplants, the timing of cutting, etc. are selected according to the suitability of plant C, One or two or more seeds can be sown on the filled cultivation soil 4 in the working hole 3, one or two or more seedlings C can be transplanted, or one or two or more seeds can be cut.
  • the cultivation management after sowing, transplanting, and cutting can be performed in the same manner as the cultivation management in a general-purpose container.
  • the soil block cultivated plant of the present invention is a plant cultivated by any one of the above-described plant cultivation methods in the soil 4 for cultivating filled with the above-described unitary soil block 1, the integral soil block or the divided integral soil block. .
  • the root 10 extends from the cultivation soil 4 into the block body 2.
  • the plant C cultivated by the plant cultivation method in which the outer peripheral surface 7 of the block body 2 is exposed to air, the tip portion 11 of the root 10 is the block body as shown in FIG. 6 (b).
  • the plant C extends only to the outer peripheral surface 7 of 2.
  • the root 10 can be stretched inside the block body 2.
  • the root 10 of the plant C cultivated in the integrated soil block extends to the block body 2 of the adjacent soil block 1 and becomes intertwined as shown in FIG.
  • the root 10 extends to the upper part of the block body 2 of the adjacent soil block 1 and is intertwined. It only grows. Even in this case, the root 10 is stretched over the entire inside of the block main body 2, and even if the block main body 2 is taken out from the container 9, it is difficult to lose its shape.
  • the integrated soil block cultivated plant of FIG. 4 (b) and the integrated soil block cultivated plant of FIG. 5 can also be shipped without a tray and distributed to the market as shown in these drawings.
  • the soil block cultivated plant shown in FIG. Can be transplanted or planted, or placed on the bed of a hydroponics system.
  • the intertwined roots 10 are cut by the division, the roots 10 are stimulated, and a positive effect can be expected for the subsequent growth of the plant C.
  • the soil block 1 of the present invention can be used for business purposes or for a kitchen garden. It can also be used for cultivation in planters and flowerpots.

Landscapes

  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Cultivation Receptacles Or Flower-Pots, Or Pots For Seedlings (AREA)

Abstract

 A filled soil block for cultivation in which a work hole in opened in an upper surface of a block body formed by compressively molding soil for cultivation, and in which soil for cultivation is filled in work hole. The block body is compressively molded and solidified to a hardness in which deformation is unlikely to occur, the work hole is unlikely to be blocked, and the shape can be self-held. The work hole has a size and depth that facilitates seeding, transplanting, cutting and planting, and other planting work. Filled cultivation soil and the block body have a soil quality and quantity that allow planting work in filled cultivation soil and that allow a cultivated plant to be grown to any stage of growth. Nutrients may be included as required. The soil-filled soil block for cultivation may be a monolithic shape, an integrated shape, or a divided integrated shape.

Description

栽培用土充填済みソイルブロックと、植物栽培方法と、ソイルブロック栽培植物Soil block filled with soil for cultivation, plant cultivation method, and soil block cultivation plant
 本発明は、植物の茎挿し、葉挿し、根挿し、断根接木の挿し込み等の挿し木、播種、移植等に使用される栽培用土充填済みソイルブロックと、そのソイルブロックを使用した植物栽培方法と、そのソイルブロックで栽培された植物(以下、「ソイルブロック栽培植物」という)に関する。 The present invention relates to a soil-filled soil block used for cuttings, sowing, transplanting, and the like for plant stem insertion, leaf cutting, root cutting, and root grafting, and a plant cultivation method using the soil block. And a plant cultivated in the soil block (hereinafter referred to as “soil block cultivated plant”).
 植物栽培用のソイルブロックとして、従来は、図7に示すように、成形用土を固めたブロック本体Aの上面に穴Bがあいているものがあった。前記したソイルブロックの他、ブロックに穴が形成された成形ブロック(特許文献1~4)が知られている。 Conventionally, as a soil block for plant cultivation, as shown in FIG. 7, there has been one in which a hole B is formed on the upper surface of a block body A in which molding soil is hardened. In addition to the above-described soil block, molded blocks (Patent Documents 1 to 4) in which holes are formed in the block are known.
特開2003-102264号公報JP 2003-102264 A 特開2000-139233号公報JP 2000-139233 A 実開昭62-139250号公報Japanese Utility Model Publication No. 62-139250 特開昭59-71621号公報JP 59-71621 A
 図7のソイルブロックは、穴Bが小さく浅いため、保管や輸送等のためにソイルブロックを積み重ねると自重(荷重)で変形して穴Bが閉塞することがあった。このため、穴Bは植物栽培作業を行う際の目印(ブロック中心部を示す目印)程度の役割しか果たしていなかった。穴Bに植物Cを栽培するためには、栽培する度に、針金で穴をあけ直すとか、穴を拡張する等の作業を行って穴Bを栽培に適切な形状、大きさ、深さに再加工しなければならなかった。しかし、穴Bを再加工するとせっかく成形したソイルブロックが損壊することがある他、再加工した穴に播種するとソイルブロックの成形用土を寄せて種子に覆土したり、再加工した穴に挿し木や接ぎ木をするとソイルブロックの成形用土を寄せてそれらを安定させたりしなければならないという面倒があった。ブロックが損壊又は変形してしまった場合は、元の形状に修復する必要があり、修復作業は面倒で時間のかかるものであった。 In the soil block of FIG. 7, since the hole B is small and shallow, when the soil block is stacked for storage or transportation, the hole B may be deformed by its own weight (load) and closed. For this reason, the hole B played only the role of the mark (mark which shows a block center part) at the time of performing plant cultivation work. In order to cultivate the plant C in the hole B, every time it is cultivated, the hole B has a shape, size, and depth suitable for cultivation by re-drilling with a wire or expanding the hole. Had to be reworked. However, if the hole B is reworked, the molded soil block may be damaged, and if it is sown in the reworked hole, the soil for forming the soil block will be covered with the seed, and the reworked hole will be cut or grafted. Then, it was troublesome that the soil for forming the soil block had to be brought in and stabilized. When the block was damaged or deformed, it was necessary to restore the original shape, and the repair work was troublesome and time consuming.
 特許文献1~4に開示された成形ブロックは、いずれも、ブロックの上面に播種用、挿し木用等の穴が開口されているが、その穴に播種、挿し木等の植え込み作業をするためには、栽培用土を別途用意しなければならず、植え込み作業が面倒であった。 In each of the molded blocks disclosed in Patent Documents 1 to 4, holes for sowing and cuttings are opened on the upper surface of the block, but in order to plant sowing and cuttings in the holes, The soil for cultivation had to be prepared separately, and the planting work was troublesome.
 本発明の目的は、栽培用土を別途用意することなく植え込み作業を行うことができるソイルブロックと、そのソイルブロックを使用した植物栽培方法と、ソイルブロック栽培植物を提供することにある。 An object of the present invention is to provide a soil block which can be planted without separately preparing soil for cultivation, a plant cultivation method using the soil block, and a soil block cultivation plant.
 (本発明の栽培用土充填済みソイルブロック)
 本発明の栽培用土充填済みソイルブロック(以下、単に「ソイルブロック」という)は、天然培土、人工培土、樹脂、それらの混合物等(以下、「成形用土」という)が任意形状のブロック状に圧縮成形されたブロック本体の上面に有底の作業穴が開口され、作業穴に天然培土、人工培土、樹脂、それらの混合物といった植物栽培に適する用土(以下、「栽培用土」という)が充填されている栽培用土充填済みソイルブロックである。ブロック本体は形崩れしにくく、作業穴が閉塞しにくく、成形後の形状を自己保持可能(乾燥によりサイズが縮小するが、形状は一定(ほぼ一定を含む;発明の詳細な説明及び請求の範囲において同じ)な固さに固化されている。作業穴は播種、移植、挿し木等の植え込み作業(植え付け作業)がし易い大きさと深さ(少なくとも、挿し木が可能な深さ)であり、充填済みの栽培用土に前記植え込み作業ができ、前記充填済みの栽培用土及びブロック本体は、栽培された植物を任意の生育段階まで生育させることができる土質及び土量である。前記生育に必要な養分を含むものであってもよい。ブロック本体の作業穴の外側の周縁の肉厚(幅)は成形後に形崩れし難い寸法に設計するのが望ましい。
(Soil block filled with soil for cultivation of the present invention)
The soil block filled with soil for cultivation according to the present invention (hereinafter simply referred to as “soil block”) is a natural soil, artificial soil, resin, a mixture thereof (hereinafter referred to as “molding soil”) compressed into a block of arbitrary shape. A bottomed work hole is opened on the upper surface of the molded block body, and the work hole is filled with soil suitable for plant cultivation (hereinafter referred to as “cultivation soil”) such as natural soil, artificial soil, resin, and a mixture thereof. A soil block filled with soil for cultivation. The block body is not easily deformed, the work hole is not easily blocked, and the shape after molding can be self-held (the size is reduced by drying, but the shape is constant (including almost constant; detailed description of the invention and claims) The working hole has a size and depth that facilitates planting (planting) such as sowing, transplanting, cuttings, etc. (at least the depth that enables cuttings) and is filled The filled soil for cultivation and the block main body have a soil quality and an amount of soil capable of growing the cultivated plant to an arbitrary growth stage. It is desirable that the thickness (width) of the outer periphery of the work hole of the block body is designed to be a dimension that does not easily collapse after molding.
 前記成形用土には植物栽培に適する培土を使用するのが好ましい。前記栽培用土は成育目標に必要な肥料(養分)を含むものが好ましい。養分は液状でも、粉末でも、粒状でもよい。液状の養分はゼオライトのように養分を吸着し易い材質の吸着材に吸着させ、養分吸着済み吸着材を栽培用土に混合することによって、養分を栽培用土に含ませることができる。必要であれば成形用土にも前記と同様に成育目標に必要な養分を含ませ、その成形用土を圧縮成形してブロック本体とすることもできる。 It is preferable to use a soil suitable for plant cultivation as the molding soil. The soil for cultivation contains fertilizer (nutrient) necessary for the growth target. The nutrient may be liquid, powder, or granular. The liquid nutrient can be adsorbed on an adsorbent made of a material that easily adsorbs nutrients such as zeolite, and the nutrient adsorbed adsorbent is mixed with the cultivation soil, so that the nutrient can be included in the cultivation soil. If necessary, the molding soil can also contain nutrients necessary for the growth target as described above, and the molding soil can be compression-molded to form a block body.
 前記ソイルブロックの充填済み栽培用土は、作業穴を自重で満たす程度に非圧縮充填されているか、又は、非圧縮充填された栽培用土が穴あけ、溝付け、窪み作り等の後加工が容易にできる程度に押し固められているものである。いずれの場合も、少なくとも、後加工することなく挿し木できる軟らかさである。 The soil for filling the soil block filled with the soil is uncompressed to the extent that the working hole is filled with its own weight, or the non-compressed filled soil for cultivation can be easily post-processed such as drilling, grooving, making a dent, etc. It is something that has been compacted. In any case, at least the softness that can be cut without post-processing.
 前記ソイルブロックは一個を基本単位とする単体形、二以上のソイルブロックが一体成形された一体形、一体形であって単体又は二以上のソイルブロックに分割可能な分割部が形成された分割一体形とすることができる。一体形及び分割一体形の個々のソイルブロックも作業穴に栽培用土が充填済みである。 The soil block is a single unit having one unit as a basic unit, an integrated unit in which two or more soil blocks are integrally formed, or an integrated unit in which a divided part that can be divided into a single unit or two or more soil blocks is formed. It can be shaped. The individual soil blocks of the integrated type and the divided integrated type are filled with cultivation soil in the working holes.
 前記一体形の場合も、分割一体形の場合も、隣接するブロック本体の外周面間に空間部を設けることができる。この場合は、隣接するブロック本体の外周面の一部が接触し、他の一部に空間部が形成される。空間部はブロック本体の外周面を空気に触れさせて、栽培用土からブロック本体内に伸びる植物の根が、ブロック本体外へ伸び出すのを抑制でき、ブロック本体の空気に触れる外周面からブロック本体内に、植物の栽培に必要な酸素を取り入れることが可能なものである。 In both the integrated type and the divided integrated type, a space portion can be provided between the outer peripheral surfaces of adjacent block bodies. In this case, a part of the outer peripheral surface of the adjacent block main body is in contact, and a space is formed in the other part. The space allows the outer peripheral surface of the block body to come into contact with air, so that the roots of the plants extending from the cultivation soil into the block main body can be prevented from extending out of the block main body. Inside, it is possible to take in oxygen necessary for plant cultivation.
 前記作業穴は、ブロック本体の上面側から底面側に向けて次第に細くなるようにすることができる。この場合、ブロック本体の上面側から底面側の全長に渡って次第に細くなるようにすることも、作業穴の途中から底側のみが次第に細くなるようにすることもできる。 The work hole can be made gradually thinner from the upper surface side to the bottom surface side of the block body. In this case, the block main body can be gradually thinned over the entire length from the upper surface side to the bottom surface side, or only the bottom side can be gradually thinned from the middle of the work hole.
 前記ソイルブロックは、ソイルブロックの上面を充填済みの栽培用土の上から被覆材でカバーして、充填済み栽培用土の脱落(こぼれ)を防止できるようにすることができる。 The soil block can cover the top surface of the soil block from the top of the filled cultivation soil with a covering material to prevent the filled cultivation soil from falling off.
 (本発明の植物栽培方法)
 本発明の植物栽培方法は、ソイルブロックの作業穴内に充填済みの栽培用土に栽培した植物の根の伸びを抑制して、根の先端部がソイルブロックの外周面(外周面のやや内側、やや外側を含む:発明の詳細な説明及び請求の範囲において同じ)までしか伸びず、ブロック本体の外周面に根鉢が形成されないようにする栽培方法である。根鉢が形成されないようにするには、前記ソイルブロックの作業穴に充填済みの栽培用土に播種、移植、挿し木等の植え込み作業で植物を栽培し、その栽培中に、ソイルブロックの外周面を空気に触れさせて、植物の根を前記外周面において伸びが困難な湿度の空気と触れさせて、根の伸びを当該空気との接触位置付近(外周面)で停止させる。この場合、根鉢は形成されないが、根は栽培用土からブロック本体内の全般(ほぼ全般を含む:以下、発明の詳細な説明及び請求の範囲において同じ)に張らせて、ソイルブロックが裸でも(容器やトレイに入れなくても)ブロック本体が形崩れしないようにする。
(Plant cultivation method of the present invention)
The plant cultivation method of the present invention suppresses the growth of roots of plants cultivated in the soil for cultivation filled in the working holes of the soil block, and the tip of the root is the outer peripheral surface of the soil block (slightly inside of the outer peripheral surface, somewhat Including the outside: the same in the detailed description of the invention and the claims), and a cultivation method that prevents root pots from being formed on the outer peripheral surface of the block body. In order to prevent root pots from being formed, plants are cultivated by planting work such as sowing, transplanting, cuttings, etc. in the soil for cultivation filled in the working holes of the soil block, and during the cultivation, the outer peripheral surface of the soil block is Touching the air, the root of the plant is brought into contact with air of humidity that is difficult to stretch on the outer peripheral surface, and the elongation of the root is stopped near the contact position with the air (outer peripheral surface). In this case, a root pot is not formed, but the root is stretched from the cultivation soil to the whole of the block body (including almost the whole: the same in the detailed description of the invention and the claims below), and the soil block is bare. Make sure that the block body does not collapse (even if not in a container or tray).
 ソイルブロックの外周面を空気に触れさせるには、ソイルブロックをそれよりも大きな容器に入れてソイルブロックの外周面と容器の内周面の間に隙間を設けることにより、空気に触れさせることができる。ソイルブロックを容器に入れずに栽培する場合は、ソイルブロックを裸のまま屋内或いは屋外に設置する。 In order to make the outer peripheral surface of the soil block come into contact with air, the soil block is put in a larger container and a gap is provided between the outer peripheral surface of the soil block and the inner peripheral surface of the container. it can. When cultivating a soil block without putting it in a container, the soil block is placed indoors or outdoors while being bare.
 (本発明のソイルブロック栽培植物)
 本発明のソイルブロックで栽培された植物(ソイルブロック栽培植物)は、本発明の前記した単体形ソイルブロック、又は一体形ソイルブロック、又は分割一体形ソイルブロックのいずれかの作業穴に充填済みの栽培用土に植物が栽培されているものである。この場合、根はソイルブロックの外周面までしか伸びていないが、ブロック本体内の全般に張ってブロック本体が形崩れしないようにしてある。
(Soil block cultivation plant of the present invention)
The plant cultivated with the soil block of the present invention (soil block cultivated plant) has been filled in any of the working holes of the above-described unitary soil block, integral soil block, or divided integral soil block of the present invention. Plants are cultivated in the cultivation soil. In this case, the roots extend only to the outer peripheral surface of the soil block, but the block main body is stretched throughout the block main body so that the block main body does not collapse.
 本発明のソイルブロック栽培植物は、作業穴に充填済みの栽培用土に挿し木されて生育された挿し木苗とすることができる。通常、挿し木する茎や接ぎ木苗は根が切断されているため、それらの根はその切断面や培土との接触面等から新たに発根して張り出す。 The soil block cultivated plant of the present invention can be a cutting plant seedling that has been cut and grown on the cultivation soil filled in the working hole. Usually, since the roots of cut stems and grafted seedlings are cut, the roots are newly rooted and project from the cut surface or the contact surface with the soil.
 本発明のソイルブロックは次の効果がある。
 (1)植物を栽培することのできる大きさ及び深さの作業穴がブロック本体に形成され、作業穴に栽培用土が充填されているので、充填済みの栽培用土を使用して植物栽培を行うことができ、栽培用土を用意する必要がなく、植物栽培が容易にできる。
 (2)ブロック本体が、積み重ねても潰れにくく、型崩れしにくく、作業穴が閉塞しにくく、成形後の形状を自己保持できる固さに圧縮成形されて固化されているため、ソイルブロックの保管、運搬、栽培、出荷等の作業がし易い。
 (3)作業穴に充填された栽培用土が非圧縮充填されているか、又は、非圧縮充填された栽培用土が穴あけ、溝付け、窪み作り等の後加工が容易にできる程度に押し固められているので、栽培用土に播種、挿し木等の植え込み(植え付け)を容易に行うことができる。
 (4)前記充填済みの栽培用土及びブロック本体は、栽培された植物を任意の生育段階まで生育させることができる土質及び土量であるため、発芽、発根、活着し易く、植物の成長に適した栽培環境となる。
 (5)充填済みの栽培用土とブロック本体の双方又は少なくとも一方が養分を含む場合はより一層植物の生育環境に適し、従来のソイルブロックに比して小型であっても植物が成長し易い。例えば、ブロック本体が高さ40~50mm程度、直径30~40mm程度の円柱状であり、作業穴の穴径15~25mm程度のソイルブロックであっても、苗が数百mm程度になるまで(汎用の直径90mmの育苗ポットで育苗する場合と同等になるまで)成長させることができる。
 (6)一体形ソイルブロック、分割一体形ソイルブロックの場合は、一体化されたままでも、又はそれらを所望数に分割しても保管、栽培、運搬、出荷等を行うことができるので作業性がよい。また、一体形ソイルブロック、分割一体形ソイルブロックは、一体になっている多数のソイルブロックを機械で一度に運搬可能であるため作業性がよく、作業能率が向上する。
The soil block of the present invention has the following effects.
(1) Since a work hole having a size and depth capable of cultivating a plant is formed in the block main body and the cultivation soil is filled in the work hole, plant cultivation is performed using the filled cultivation soil. Therefore, it is not necessary to prepare soil for cultivation, and plant cultivation can be easily performed.
(2) Since the block body is hard to collapse even when stacked, it is hard to lose its shape, the work hole is hard to close, and it is compressed and solidified to a hardness that can self-hold the shape after molding. It is easy to carry out operations such as transportation, cultivation and shipping.
(3) The cultivation soil filled in the working hole is non-compressed, or the non-compressed cultivation soil is pressed and compacted to such an extent that post-processing such as drilling, grooving, and dent making can be easily performed. Therefore, planting (planting) such as sowing and cuttings on the soil for cultivation can be performed easily.
(4) The filled cultivation soil and block main body have a soil quality and an amount of soil that allow the cultivated plant to grow up to an arbitrary growth stage, and thus are easy to germinate, root, and settle, so that the plant grows. It becomes a suitable cultivation environment.
(5) When both or at least one of the filled cultivation soil and block main body contains nutrients, the plant is more suitable for the growth environment of the plant, and the plant is easy to grow even if it is smaller than the conventional soil block. For example, even if the block body has a columnar shape with a height of about 40-50 mm and a diameter of about 30-40 mm, and the soil block has a hole diameter of about 15-25 mm, the seedling will be about several hundred mm ( It can be grown (until it is equivalent to raising a seedling in a general-purpose seedling pot with a diameter of 90 mm).
(6) In the case of an integrated soil block or a divided integrated soil block, it can be stored, cultivated, transported, shipped, etc. even if it is integrated or divided into a desired number, so that it can be operated. Is good. In addition, since the integrated soil block and the divided integrated soil block can transport a large number of integrated soil blocks at once by a machine, workability is improved and work efficiency is improved.
 本発明の植物栽培方法は次のような効果がある。
 (1)植物の根の先端部をブロック本体の外周面までしか伸ばさないので、根をほぐしたり、切断したりすることなく、そのまま移植或いは定植できる植物栽培ができる。
 (2)根をブロック本体の外周面までしか伸ばさないが、ブロック本体の内部全般には張らせることができるので、容器から取り出してもソイルブロックが形崩れしない植物栽培ができる。
The plant cultivation method of the present invention has the following effects.
(1) Since the tip of the root of the plant extends only to the outer peripheral surface of the block main body, plant cultivation that can be transplanted or planted as it is without loosening or cutting the root is possible.
(2) Although the roots are extended only to the outer peripheral surface of the block main body, they can be stretched throughout the block main body, so that the plant cultivation in which the soil block does not lose its shape even when taken out from the container can be performed.
 本発明のソイルブロック栽培植物は次のような効果がある。
 (1)根がソイルブロックの外周面までしか伸びていないので、そのまま移植或いは定植でき、移植或いは定植時に根が傷まず、移植或いは定植後に活着が良好になり、成長し易い植物となる。
 (2)根がソイルブロックの外周面までしか伸びていないが、ブロック本体内には張っているため、ソイルブロックが形崩れせず、容器無しで植物を出荷して市場に流通させることができ、コストダウンを図ることができる。
 (3)一体形ソイルブロック又は分割一体形ソイルブロックに栽培された植物は、一体のまま出荷して流通させることができるので取り扱いが容易である。
 (4)一体形ソイルブロック又は分割一体形ソイルブロックに栽培されて、根が隣のソイルブロックまで伸びている(張っている)場合は、ソイルブロックを個々に分割して移植或いは定植する際に根が切れるが、多少の根の切断は移植後或いは定植後の発根の刺激になり、その後の植物の生育にプラスの効果が期待できる。
The soil block cultivation plant of the present invention has the following effects.
(1) Since the roots extend only to the outer peripheral surface of the soil block, the roots can be transplanted or planted as they are, the roots are not damaged at the time of transplanting or planting, and the plant becomes easy to grow after transplanting or planting.
(2) Although the roots extend only to the outer peripheral surface of the soil block, they are stretched in the block body, so the soil block does not collapse, and plants can be shipped and distributed to the market without containers. Cost reduction can be achieved.
(3) Since the plant cultivated in the integrated soil block or the divided integrated soil block can be shipped and distributed as it is, it is easy to handle.
(4) When cultivated in an integral soil block or a split integral soil block and the roots extend to the adjacent soil block (stretch), when the soil block is individually divided and transplanted or planted Although the roots are cut, some cutting of the roots stimulates rooting after transplanting or after planting, and a positive effect can be expected on the subsequent growth of the plant.
本発明のソイルブロックの一例を示すものであって、(a)はブロック本体が円柱状であって作業穴が円形有底の場合の斜視図、(b)はブロック本体が円柱状であって作業穴が角形有底の場合の斜視図。It shows an example of the soil block of the present invention, (a) is a perspective view when the block body is cylindrical and the work hole is a circular bottom, (b) is a block body is cylindrical. The perspective view in case a work hole is a square bottom. 本発明のソイルブロックの一例を示すものであって、(a)は作業穴に充填済みの栽培用土に植物栽培した場合の一例を示す斜視図、(b)は(a)のソイルブロック栽培植物の断面図。An example of the soil block of this invention is shown, Comprising: (a) is a perspective view which shows an example at the time of plant cultivation to the soil for cultivation with which the work hole was filled, (b) is a soil block cultivation plant of (a) FIG. 本発明のソイルブロックの一例であり、(a)は円柱状の多数のソイルブロックが千鳥配列に一体成形された一体形ソイルブロックの平面図、(b)は円柱状の多数のソイルブロックが縦横に一体成形された一体形ソイルブロックの平面図。It is an example of the soil block of the present invention, (a) is a plan view of an integrated soil block in which a large number of cylindrical soil blocks are integrally formed in a staggered arrangement, and (b) is a vertical and horizontal shape of a large number of cylindrical soil blocks. The top view of the integral-type soil block integrally molded in. 本発明のソイルブロックの他例であり、(a)は多数の四角柱のソイルブロックが前後左右に一体成形された一体形ソイルブロックの平面図、(b)は(a)の一体形ソイルブロックに栽培された植物の根が隣のソイルブロックにまで伸びた状態を示す縦断面図。It is another example of the soil block of this invention, (a) is a top view of the integrated soil block by which many square-shaped soil blocks were integrally molded in the front and rear, right and left, (b) is the integrated soil block of (a). The longitudinal cross-sectional view which shows the state which the root of the plant cultivated to the side extended to the adjacent soil block. 本発明のソイルブロックの他例であり、隣接するソイルブロックの外周面の間に空間部がある一体形ソイルブロックに植物栽培した状態を示す断面図。Sectional drawing which is another example of the soil block of this invention, and shows the state which carried out the plant cultivation to the integrated soil block with a space part between the outer peripheral surfaces of the adjacent soil block. 本発明の植物栽培方法の説明図であって、(a)はソイルブロックを容器に入れてソイルブロックの外周面を空気に触れさせて栽培する栽培方法の説明図、(b)は(a)の栽培方法で栽培された植物を容器から取り出したソイルブロック栽培植物の説明図。It is explanatory drawing of the plant cultivation method of this invention, Comprising: (a) is explanatory drawing of the cultivation method which puts a soil block in a container and makes the outer peripheral surface of a soil block touch air, and (b) is (a). Explanatory drawing of the soil block cultivation plant which took out the plant cultivated with this cultivation method from the container. 従来のソイルブロックの一例を示す斜視図。The perspective view which shows an example of the conventional soil block.
  (ソイルブロックの実施形態1:形態)
 本発明のソイルブロック1の形態の一例を図1(a)、(b)を参照して説明する。このソイルブロック1は成形用土に水分を加えて練って、ブロック状に圧縮成形して固めたブロック本体2に、その上面に開口する有底の作業穴3が形成され、その作業穴3内に栽培用土が充填されている栽培用土充填済みソイルブロックである。作業穴3の形状はブロック本体2の上面側から底面側に向けて逆円錐形(図1(a))又は逆多角錐形(図1(b))等の下細りにして、作業穴3内の栽培用土に栽培した挿し木苗、接ぎ木苗等の植物Cが作業穴3の下部中心に落着き易くなり、根10がブロック本体2の外周に向けて均等(略均等を含む)に張り易くなり、苗Cが生長してもソイルブロックが安定し易くなるようにするのが望ましい。作業穴3はブロック本体2の上面側から底面側の全てに亘って次第に下細りであってもよく、作業穴3の途中から下側のみ(底側のみ)が次第に下細りであってもよい。
(Embodiment 1: Soil block embodiment)
An example of the form of the soil block 1 of the present invention will be described with reference to FIGS. The soil block 1 is formed by adding moisture to the molding soil and kneading it into a block body 2 which is compression-molded and hardened into a block shape. A bottomed working hole 3 is formed in the upper surface of the block body 2. A soil block filled with cultivation soil filled with cultivation soil. The shape of the work hole 3 is made narrower such as an inverted conical shape (FIG. 1A) or an inverted polygonal pyramid shape (FIG. 1B) from the upper surface side to the bottom surface side of the block body 2, and the work hole 3 Plants C such as cutting seedlings and grafted seedlings cultivated in the soil for cultivation in the inside become easy to settle at the lower center of the work hole 3, and the root 10 becomes easy to stretch evenly (including substantially equal) toward the outer periphery of the block body 2. It is desirable to make the soil block easy to stabilize even if the seedling C grows. The work hole 3 may be gradually reduced from the upper surface side to the bottom surface side of the block body 2, and only the lower side (only the bottom side) may be gradually reduced from the middle of the work hole 3. .
 (成形用土材料)
 成形用土の材料は植物栽培に支障のないものであれば特に制約はないが、植物栽培用の培土が適する。一例としては、ピートモス、ブラックピートモス(以下、両者を「ピートモス」という)、赤玉土、腐葉土、それら二種類以上を混合したもの、その他のものでもよい。
(Soil material for molding)
The material for the forming soil is not particularly limited as long as it does not hinder plant cultivation, but soil for plant cultivation is suitable. As an example, peat moss, black peat moss (hereinafter, both are referred to as “peet moss”), red crust, humus, a mixture of two or more of these, and others may be used.
 (成形)
 ブロック本体2は、例えば、成形用土であるピートモスを水と混ぜて練り、ブロック状に押し固める(圧縮成形する)とか、成形用土に接着剤、固着剤などのバインダーを加え、必要に応じて養分(肥料)を含ませて成形することができる。圧縮成形は機械式であっても手動式であってもよい。
(Molding)
The block body 2 is made by mixing peat moss, which is a molding soil, with water and kneading it, and pressing it into a block shape (compression molding), or adding a binder such as an adhesive or a sticking agent to the molding soil, and nutrients as necessary. (Fertilizer) can be included and molded. The compression molding may be mechanical or manual.
 (固化)
 ブロック本体2は成形後に積み重ねても潰れにくく、型崩れしにくく、作業穴3が閉塞しにくく、成形後の形状を自己保持できる固さであり、植え込み作業時に後加工し難い程度の固さに圧縮成形されて固化されていることが望ましい。
(Solidification)
The block body 2 is hard to be crushed even when stacked after molding, hard to lose its shape, hard to close the work hole 3, and has a hardness capable of self-holding the shape after molding, and is hard enough to be post-processed during implantation. It is desirable that it is compression molded and solidified.
 (肥料:養分)
 栽培用土4は養分を含むものが適する。養分は成形用土に粉状、粒状のものを混ぜるとか、液状のものを含ませるとか、ゼオライトのように養分を吸着し易い吸着材に吸着させ、その養分吸着済み吸着材を成形用土に混合する等して含ませることができる。
(Fertilizer: nutrient)
The cultivation soil 4 is suitable to contain nutrients. Nutrients are mixed with powdered and granular materials in the molding soil, liquid materials are included, or adsorbed on adsorbents that easily adsorb nutrients such as zeolite, and the adsorbed adsorbed nutrients are mixed into the molding soil. Can be included.
 充填済みの栽培用土4及びブロック本体2は栽培された植物Cを任意の生育段階まで生育させることができる土質及び土量とするのが望ましい。必要に応じて、充填済みの栽培用土4とブロック本体2の双方又は一方が養分を含むものであってもよい。 It is desirable that the filled cultivation soil 4 and the block main body 2 have a soil quality and a soil amount that allow the cultivated plant C to grow to an arbitrary growth stage. If necessary, both or one of the filled cultivation soil 4 and the block main body 2 may contain nutrients.
 (大きさ、形状)
 作業穴3は前記ブロック本体2の成形後にブロック本体2の上面をくり抜いて或いは押し込んで成形することも、ブロック本体2の成形時に形成することもできる。作業穴3は播種し易く、苗Cを移植し易く、挿し木し易い大きさ及び深さである。
(Size, shape)
The working hole 3 can be formed by cutting or pushing the upper surface of the block body 2 after the block body 2 is formed, or can be formed when the block body 2 is formed. The working hole 3 has a size and a depth that allow easy seeding, easy transplanting of the seedling C, and easy cutting.
 (ブロック本体及び作業穴のサイズ例)
 作業穴3の大きさや深さ(サイズ)は、栽培目的に合わせて任意に設計することができるが少なくとも、栽培用土4の充填に適する広さと深さにする。また、苗Cの大きさにもよるが少なくとも、挿し木のできる大きさ及び深さ、種子の形状や大きさにもよるが少なくとも播種できる大きさ及び深さ、苗Cの大きさ(生育程度)にもよるが少なくとも苗Cを移植ができる大きさ及び深さにする。ブロック本体2の直径、ブロック本体2の高さがいずれであっても、作業穴3の直径はブロック本体2の直径の7分の4程度以下、作業穴3の深さはブロック本体高さの4分の3程度以下が適する。一例として、ブロック本体2の直径35mm、高さ40mmの場合、穴径10~25mm、穴の深さ10~30mm程度が適する。
(Block body and work hole size examples)
The size and depth (size) of the working hole 3 can be arbitrarily designed according to the purpose of cultivation, but at least have a width and depth suitable for filling the cultivation soil 4. Further, although depending on the size of the seedling C, at least the size and depth of cuttings, depending on the shape and size of the seeds, at least the size and depth of sowing, the size of the seedling C (degree of growth) Depending on the size, at least the seedling C should be sized and deep enough for transplantation. Whatever the diameter of the block body 2 and the height of the block body 2, the diameter of the work hole 3 is about 4/7 or less of the diameter of the block body 2, and the depth of the work hole 3 is equal to the height of the block body. About 3/4 or less is suitable. As an example, when the block body 2 has a diameter of 35 mm and a height of 40 mm, a hole diameter of 10 to 25 mm and a hole depth of about 10 to 30 mm are suitable.
 前記いずれのサイズの場合も、作業穴3の外周に、成形後の形状を保持できるだけの余裕をもった幅(肉厚)の縁12を形成する必要がある。ブロック本体2を型崩れし難くするためには、縁12の幅(肉厚)を5mm以上とするのがよく、好ましくは7.5mm以上が適する。 In any of the above sizes, it is necessary to form an edge 12 having a width (thickness) having a margin enough to hold the shape after molding on the outer periphery of the work hole 3. In order to make the block main body 2 difficult to lose its shape, the width (thickness) of the edge 12 should be 5 mm or more, preferably 7.5 mm or more.
 作業穴3の形状は円形に限らず、例えば、図1(b)に示すような四角形の穴とか、他の任意形状とすることができる。ソイルブロックは、作業穴3が前記以外の形状、サイズのものを各種用意しておき、栽培する植物Cの種類や植物Cの成長に応じたものを選択して使用できるようにしておくのが好ましい。 The shape of the work hole 3 is not limited to a circle, and may be, for example, a rectangular hole as shown in FIG. As for the soil block, various types of work holes 3 having shapes and sizes other than those described above are prepared, and the type corresponding to the type of plant C to be cultivated and the growth of plant C can be selected and used. preferable.
 (栽培用土)
 作業穴3内に充填される栽培用土4は植物栽培に必要な性能や目的を備えているものであればよく、成形用土と同質のものでも異質のものでも良い。一例としては、ピートモス、赤玉土、腐葉土等の市販の培土、それら二種類以上を混合したもの、その他のものでもよい。
(Cultivation soil)
The cultivation soil 4 filled in the work hole 3 may be any material having the performance and purpose necessary for plant cultivation, and may be the same as or different from the molding soil. As an example, commercially available soil such as peat moss, red bean clay, and mulch, a mixture of two or more of these, and other materials may be used.
 (栽培用土の充填)
 栽培用土4は作業穴3内に非圧縮充填(バラの状態で充填)するか、又は、非圧縮充填された栽培用土4を穴あけ、溝付け、窪み作り等の後加工が容易にできる程度に押し固めて、容易に植物栽培できるようにしてある。作業穴3への充填量は作業穴3の縁まで満杯にしてもよいが、それより少なくすることもできる。いずれの場合も、播種、移植、挿し木といった各種植え込み作業を容易に行うことができるようにする。作業穴3及びそれに充填済みの栽培用土4により作業部5が形成される。
(Filling soil for cultivation)
The cultivation soil 4 is filled in the work hole 3 in a non-compressed manner (filled in the state of roses), or the post-processing such as drilling, grooving, making a dent, etc. can be made easily. It is compacted so that it can be cultivated easily. The filling amount of the working hole 3 may be filled up to the edge of the working hole 3, but can be smaller than that. In any case, various planting operations such as sowing, transplanting, and cutting can be easily performed. A working part 5 is formed by the working hole 3 and the cultivation soil 4 filled in the working hole 3.
 (一体形ソイルブロックの実施形態)
 本発明のソイルブロック1は二以上のソイルブロック1が一体成形されたもの(一体形ソイルブロック)であってもよい。その一例として図3(a)に示すものは円柱状のソイルブロック1が千鳥配列されて一体化された一体形ソイルブロック、図3(b)に示すものは円柱状のソイルブロック1の外周面が縦横に連結された一体形ソイルブロックである。図3(a)、(b)のいずれのソイルブロック1も、隣接するソイルブロック1の外周面の間に空間部8が形成されて、ブロック本体2の外周面7が外部に露出している。夫々のソイルブロック1の作業穴3には栽培用土4が充填済みである。
(Embodiment of integrated soil block)
The soil block 1 of the present invention may be one in which two or more soil blocks 1 are integrally molded (integrated soil block). As an example, FIG. 3A shows an integrated soil block in which cylindrical soil blocks 1 are integrated in a staggered arrangement, and FIG. 3B shows an outer peripheral surface of the cylindrical soil block 1. Is an integrated soil block connected vertically and horizontally. In any of the soil blocks 1 in FIGS. 3A and 3B, a space 8 is formed between the outer peripheral surfaces of adjacent soil blocks 1, and the outer peripheral surface 7 of the block body 2 is exposed to the outside. . The working hole 3 of each soil block 1 is filled with cultivation soil 4.
 (分割一体形ソイルブロックの実施形態)
 図4(a)に示すものは、角形のソイルブロック1が縦横に碁盤目状に一体化された一体形ソイルブロックである。図4(a)では個々のソイルブロック1の上面境界部分に線や溝などの分割部6を設けて、その分割部6から、ソイルブロック1を一個ずつ或いは所望個数ずつ分割できるようにして分割一体形ソイルブロックとしてある。それぞれのソイルブロックの作業穴3に栽培用土4が充填済みである。
(Embodiment of divided integral type soil block)
What is shown in FIG. 4 (a) is an integrated soil block in which square-shaped soil blocks 1 are integrated vertically and horizontally in a grid pattern. In FIG. 4 (a), dividing portions 6 such as lines and grooves are provided at the upper boundary portions of the individual soil blocks 1, and the dividing blocks 6 are divided so that the soil blocks 1 can be divided one by one or a desired number. As an integrated soil block. The soil 4 for cultivation is already filled in the work hole 3 of each soil block.
 (空間部を備えた一体形ソイルブロック)
 図5の一体形ソイルブロックは図4(a)の一体形ソイルブロックと同様に、多数のブロック本体2を縦横に一体化したものであり、ブロック本体2の底面側に下向きV字状の空間部8を設けて、ブロック本体2の底面側の外周面7を外部に露出させてある。空間部8は他の形状、広さであってもよい。空間部8は、分割部6と兼用として分割一体形ソイルブロックとすることもできる。
(Integrated soil block with space)
The integrated soil block of FIG. 5 is obtained by integrating a large number of block bodies 2 vertically and horizontally in the same manner as the integrated soil block of FIG. 4A, and a downward V-shaped space on the bottom surface side of the block body 2. A portion 8 is provided so that the outer peripheral surface 7 on the bottom surface side of the block body 2 is exposed to the outside. The space 8 may have other shapes and sizes. The space portion 8 can also be a split-integrated soil block that is also used as the split portion 6.
 図3(a)(b)や図5のように空間部8を設けた場合は、空間部8を通してソイルブロック1の給排気が行われて植物Cの栽培に適する環境が得られ、排水性も良くなって植物Cが根腐れし難くもなる。また、根10がブロック本体2の外周面7まで伸びると空気に触れてそれ以上は伸びないようになる(伸びが阻止される)。この場合でも、根10はブロック本体2の内部全般に張ることはできる。 When the space part 8 is provided as shown in FIGS. 3A and 3B and FIG. 5, the soil block 1 is supplied and exhausted through the space part 8 to provide an environment suitable for cultivation of the plant C. And the plant C is less likely to rot. Further, when the root 10 extends to the outer peripheral surface 7 of the block body 2, it touches the air and does not extend any more (elongation is prevented). Even in this case, the root 10 can be stretched throughout the block body 2.
 一体形ソイルブロックも、分割一体形ソイルブロックも二以上のソイルブロック1が一体化されていること以外の構成は単体ソイルブロックの構成と同じである。 Both the integrated soil block and the divided integrated soil block are the same as the structure of the single soil block except that two or more soil blocks 1 are integrated.
 (ソイルブロックを使用した植物栽培方法1)
 本発明のソイルブロック1を使用した植物栽培方法の一例を説明する。図2(a)、(b)に示す栽培方法は、単体のソイルブロック1の作業穴3内の栽培用土4に苗Cを移植する場合の例である。この場合は栽培用土4を指や棒等で掘り返して穴をあけて、その穴に苗Cを移植し、栽培用土4を苗Cの周囲に寄せて苗Cを安定させる。
(Plant cultivation method 1 using soil block)
An example of the plant cultivation method using the soil block 1 of the present invention will be described. The cultivation method shown in FIGS. 2A and 2B is an example in the case where the seedling C is transplanted to the cultivation soil 4 in the work hole 3 of the single soil block 1. In this case, the soil for cultivation 4 is dug back with a finger or a rod, a hole is made, the seedling C is transplanted into the hole, and the soil for cultivation 4 is brought around the seedling C to stabilize the seedling C.
 ソイルブロック1の作業穴3に充填されている栽培用土4に播種する場合は、栽培用土4の上に直播きするか、栽培用土4に加工穴をあけたり、窪みや溝を付けたりして、その加工穴、窪み、溝等に播種し、その種子の上に前記充填済み栽培用土4又は別途用意した土を被せる(覆土する)。 When sowing the cultivation soil 4 filled in the work hole 3 of the soil block 1, sowing directly on the cultivation soil 4, or making a processing hole in the cultivation soil 4, adding a recess or a groove, The seeds are sowed in the processed holes, dents, grooves, etc., and the filled cultivation soil 4 or separately prepared soil is covered (covered) on the seeds.
 本発明の植物栽培方法は、前記した苗Cの移植や播種以外にも、挿し木で植物栽培をすることができる。挿し木は、栽培する茎、葉、接ぎ木等を栽培用土4に直に挿して行う。このとき、必要があれば栽培用土4を茎、葉、接ぎ木等の周囲に寄せてそれら茎、葉、接ぎ木等を安定させる。 The plant cultivation method of the present invention can cultivate plants with cuttings in addition to the transplanting and sowing of the seedling C described above. Cutting is performed by directly inserting the cultivated stem, leaves, grafts, etc. into the cultivation soil 4. At this time, if necessary, the cultivation soil 4 is moved to the periphery of the stems, leaves, grafts, etc. to stabilize the stems, leaves, grafts, etc.
 (ソイルブロックを使用した植物栽培方法2:根の伸びを抑制する栽培方法)
 本発明の植物栽培方法では、作業穴3に充填されている栽培用土4に栽培した植物Cの根10の伸びを抑制して、根10がブロック本体2の内部全般には張るが、根10の先端部11がブロック本体2の外周面7までしか伸びないようにすることができる。根10は空気に触れると伸びにくくなる特性がある。そのため本発明ではブロック本体2の外周面7を空気に触れさせて栽培する。根10を空気に触れさせるには、ソイルブロック1を図5のように裸の状態で室内又は室外に設置してもよく、図6(a)に示すようにソイルブロック1をその外形よりも大きな容器9(形状、大きさ、材質等を問わない)に入れて、ソイルブロック1の外周面7と容器9の内周面9aとの間に空間部(隙間)8を設けてもよい。この栽培方法によればソイルブロック1で栽培された植物Cの根10の先端部11がブロック本体2の外周面7まで伸びると、根10の先端部が空気に触れてそれ以上は伸びなくなり、図5、図6(b)に示すように外周面7の外に僅かに突出する程度になる。しかし、この場合でも、根10はブロック本体2内のほぼ全域に十分に張っていること、ブロック本体2が潰れにくく、形崩れしにくい固さに圧縮成形してあることから、容器9から取り出してもソイルブロック1は形崩れしない。
(Plant cultivation method 2 using soil block: cultivation method for suppressing root elongation)
In the plant cultivation method of the present invention, the root 10 of the plant C cultivated in the cultivation soil 4 filled in the work hole 3 is suppressed, and the root 10 stretches throughout the interior of the block body 2. It is possible to extend the front end portion 11 only to the outer peripheral surface 7 of the block main body 2. The root 10 has a characteristic that it is difficult to stretch when exposed to air. Therefore, in this invention, the outer peripheral surface 7 of the block main body 2 is made to touch air, and it grows. In order to make the root 10 come into contact with the air, the soil block 1 may be installed indoors or outdoors in a naked state as shown in FIG. 5, and as shown in FIG. A space (gap) 8 may be provided between the outer peripheral surface 7 of the soil block 1 and the inner peripheral surface 9a of the container 9 in a large container 9 (regardless of shape, size, material, etc.). According to this cultivation method, when the tip portion 11 of the root 10 of the plant C cultivated in the soil block 1 extends to the outer peripheral surface 7 of the block body 2, the tip portion of the root 10 touches the air and does not extend any more. As shown in FIG. 5 and FIG. 6B, the protrusion slightly protrudes from the outer peripheral surface 7. However, even in this case, the root 10 is sufficiently stretched over almost the entire area of the block body 2, and the block body 2 is compression-molded so as not to be crushed and easily deformed. However, the soil block 1 does not lose its shape.
 (一体形ソイルブロック又は分割一体形ソイルブロックを使用した植物栽培方法)
 前記植物栽培方法は、単体形ソイルブロックを使用する場合であるが、一体形ソイルブロック又は分割一体形ソイルブロックを使用する場合は、それらソイルブロック1をそのまま使用することもできるが、トレイにのせて使用することもできる。いずれの場合も、単体形ソイルブロックを使用した栽培方法と同様に、作業穴3内の充填済み栽培用土4を使用して植物Cを栽培することができる。
(Plant cultivation method using monolithic soil block or split monolithic soil block)
Although the said plant cultivation method is a case where a single-piece | unit type soil block is used, when using an integral-type soil block or a division | segmentation integral-type soil block, these soil blocks 1 can also be used as it is, but it puts on a tray. Can also be used. In any case, the plant C can be cultivated using the filled cultivation soil 4 in the work hole 3 in the same manner as in the cultivation method using the unitary soil block.
 前記いずれの栽培方法でも、栽培する植物Cの種類、播種の時期、播種する粒数、苗Cの移植時期、移植本数、挿し木の時期等は植物Cの適性に合わせて選択して、一つの作業穴3内の充填済み栽培用土4に一粒或いは二粒以上播種するとか、一本又は二本以上の苗Cを移植するとか、一本又は二本以上を挿し木したりすることができる。播種後、移植後、挿し木後の栽培管理は汎用の容器での栽培管理と同じように行うことができる。 In any of the above cultivation methods, the type of plant C to be cultivated, the time of sowing, the number of seeds to be seeded, the transplanting time of seedling C, the number of transplants, the timing of cutting, etc. are selected according to the suitability of plant C, One or two or more seeds can be sown on the filled cultivation soil 4 in the working hole 3, one or two or more seedlings C can be transplanted, or one or two or more seeds can be cut. The cultivation management after sowing, transplanting, and cutting can be performed in the same manner as the cultivation management in a general-purpose container.
 (ソイルブロック栽培植物の実施形態)
 本発明のソイルブロック栽培植物は、前記した単体形ソイルブロック1又は一体形ソイルブロック又は分割一体形ソイルブロックの充填済み栽培用土4内に、前記いずれかの植物栽培方法で栽培された植物である。
(Embodiment of soil block cultivation plant)
The soil block cultivated plant of the present invention is a plant cultivated by any one of the above-described plant cultivation methods in the soil 4 for cultivating filled with the above-described unitary soil block 1, the integral soil block or the divided integral soil block. .
 植物Cは成長につれて、根10が栽培用土4からブロック本体2内に伸びる。図6(a)に示すようにブロック本体2の外周面7を空気に触れさせる植物栽培方法で栽培した植物Cは、図6(b)に示すように、根10の先端部11がブロック本体2の外周面7までしか伸びない植物Cとなる。この根10はブロック本体2の内部には張ることができる。 As the plant C grows, the root 10 extends from the cultivation soil 4 into the block body 2. As shown in FIG. 6 (a), the plant C cultivated by the plant cultivation method in which the outer peripheral surface 7 of the block body 2 is exposed to air, the tip portion 11 of the root 10 is the block body as shown in FIG. 6 (b). The plant C extends only to the outer peripheral surface 7 of 2. The root 10 can be stretched inside the block body 2.
 一体形ソイルブロックに栽培した植物Cの根10は、図4(b)のように隣り合うソイルブロック1のブロック本体2まで伸びて絡み合うようになる。図5のように空間部8を備えたソイルブロック1の場合は、根10は隣り合うソイルブロック1のブロック本体2の上部まで伸びて絡み合うが、空気に触れるブロック本体2の下部では外周面7までしか伸びない。この場合でも、根10はブロック本体2の内部全般に張って、ブロック本体2が容器9から取り出しても形崩れしにくくなるので、容器9から抜いて出荷して流通に置くことができる。図4(b)の一体形ソイルブロック栽培植物、図5の一体形ソイルブロック栽培植物もそれら図に示すようにトレイ無しで出荷して市場に流通させることができる。 The root 10 of the plant C cultivated in the integrated soil block extends to the block body 2 of the adjacent soil block 1 and becomes intertwined as shown in FIG. In the case of the soil block 1 having the space portion 8 as shown in FIG. 5, the root 10 extends to the upper part of the block body 2 of the adjacent soil block 1 and is intertwined. It only grows. Even in this case, the root 10 is stretched over the entire inside of the block main body 2, and even if the block main body 2 is taken out from the container 9, it is difficult to lose its shape. The integrated soil block cultivated plant of FIG. 4 (b) and the integrated soil block cultivated plant of FIG. 5 can also be shipped without a tray and distributed to the market as shown in these drawings.
 図2のソイルブロック栽培植物はそのままで、図4(a)(b)の一体形ソイルブロック栽培植物、図5の一体形ソイルブロック栽培植物の場合は一個ずつ或いは所望数のソイルブロック1に分割して移植或いは定植したり、水耕栽培システムのベッドの上に置いたりすることができる。分割により、絡み合った根10が切断されると、根10が刺激を受けて、その後の植物Cの成長にプラスの効果が期待できる。 In the case of the integrated soil block cultivated plant shown in FIGS. 4 (a) and 4 (b) and the integrated soil block cultivated plant shown in FIG. 5, the soil block cultivated plant shown in FIG. Can be transplanted or planted, or placed on the bed of a hydroponics system. When the intertwined roots 10 are cut by the division, the roots 10 are stimulated, and a positive effect can be expected for the subsequent growth of the plant C.
 本発明のソイルブロック1は、業務用として使用することも、家庭菜園用として使用することもできる。また、プランターや植木鉢での栽培に使用することもできる。 The soil block 1 of the present invention can be used for business purposes or for a kitchen garden. It can also be used for cultivation in planters and flowerpots.
 1  ソイルブロック
 2  ブロック本体
 3  作業穴
 4  栽培用土
 5  作業部
 6  分割部
 7  (ブロック本体の)外周面
 8  空間部
 9  容器
 9a (容器の)内周面
 10 根
 11 根の先端部
 12 ブロック本体の作業穴の外側の縁
 A  (従来の)ブロック本体
 B  (従来のソイルブロックの)穴
 C  苗(植物)
DESCRIPTION OF SYMBOLS 1 Soil block 2 Block main body 3 Working hole 4 Cultivation soil 5 Working part 6 Dividing part 7 (Outside surface of block) 8 Space part 9 Container 9a (Inside container) Inner peripheral surface 10 Root 11 Root tip part 12 Block body Outside edge of working hole A (Conventional) Block body B (Conventional soil block) Hole C Seedling (plant)

Claims (11)

  1.  成形用土が任意形状のブロック状に圧縮成形されたソイルブロックにおいて、
     ソイルブロックは成形用土が任意形状に圧縮成形されたブロック本体の上面に有底の作業穴が開口され、作業穴内に栽培用土が充填された栽培用土充填済みソイルブロックであり、
     ブロック本体は形崩れしにくく、作業穴が閉塞しにくく、成形後の形状を自己保持可能な固さに固化されており、
     作業穴は播種、移植、挿し木、接ぎ木の挿し込み等の植え込み作業がし易い大きさと深さであり、充填済み栽培用土に播種、移植、挿し木、接ぎ木の挿し込み等の植え込み作業ができ、
     前記充填済み栽培用土及びブロック本体は栽培された植物を任意の生育段階まで生育させることができる土質及び土量である、
     ことを特徴とする栽培用土充填済みソイルブロック。
    In the soil block in which the molding soil is compression-molded into a block shape of arbitrary shape,
    The soil block is a soil block filled with cultivation soil in which a bottomed work hole is opened on the upper surface of the block main body, and the cultivation soil is filled in the work hole.
    The block body is hard to lose shape, the work hole is hard to close, and the shape after molding is solidified to a self-holding hardness.
    The working hole has a size and depth that makes it easy to plant sowing, transplanting, cuttings, grafting, etc., and sowing, transplanting, cuttings, grafting, etc. can be planted in filled cultivation soil,
    The filled cultivation soil and the block body are soil quality and soil volume capable of growing the cultivated plant to any growth stage,
    A soil filled soil block for cultivation.
  2.  請求項1記載の栽培用土充填済みソイルブロックにおいて、
     栽培用土が作業穴を自重で満たす程度に非圧縮充填されているか、又は、非圧縮充填された栽培用土が、穴あけ、溝付け、窪み作り等の後加工が容易にできる程度に押し固められている、
     ことを特徴とする栽培用土充填済みソイルブロック。
    In the soil-filled soil block according to claim 1,
    The soil for cultivation is uncompressed and filled to the extent that it fills the working hole with its own weight, or the soil for cultivation that has been uncompressed and filled is compacted to such an extent that post-processing such as drilling, grooving, and dent making can be easily performed Yes,
    A soil filled soil block for cultivation.
  3.  請求項1又は請求項2記載の栽培用土充填済みソイルブロックにおいて、
     ソイルブロックが、一個を基本単位とする単体形、二以上のソイルブロックが一体成形された一体形、又は、一体形であって単体又は二以上のソイルブロックに分割可能な分割部が形成された分割一体形、
     であることを特徴とする栽培用土充填済みソイルブロック。
    In the soil block filled with soil for cultivation according to claim 1 or claim 2,
    The soil block is a single unit with one unit as a basic unit, an integrated unit in which two or more soil blocks are integrally formed, or an integrated unit that can be divided into a single unit or two or more soil blocks. Split integral type,
    A soil block filled with soil for cultivation.
  4.  請求項3記載の栽培用土充填済みソイルブロックにおいて、
     栽培用土充填済みソイルブロックが、一体形又は分割一体形であって、
     隣接する栽培用土充填済みソイルブロックのブロック本体の外周面間に空間部を備え、
     前記空間部は、ブロック本体の外周面を空気に触れさせて、栽培用土からブロック本体内に伸びる植物の根が、ブロック本体外へ伸び出すのを抑制でき、ブロック本体の空気に触れる外周面からブロック本体内に、植物の栽培に必要な酸素を取り入れることが可能である、
     ことを特徴とする栽培用土充填済みソイルブロック。
    In the soil-filled soil block according to claim 3,
    The soil filled soil block for cultivation is an integral or divided integral,
    A space portion is provided between the outer peripheral surfaces of adjacent soil blocks filled with soil for cultivation,
    The space part allows the outer peripheral surface of the block main body to come into contact with air, and can prevent the roots of the plant extending from the cultivation soil into the block main body from extending out of the block main body. In the block body, it is possible to incorporate oxygen necessary for plant cultivation,
    A soil filled soil block for cultivation.
  5.  請求項1から請求項4のいずれか1項に記載の栽培用土充填済みソイルブロックにおいて、
     ブロック本体の成形用土と、作業穴へ充填済みの栽培用土の双方、又は、少なくとも成形用土が養分を含むものである、
     ことを特徴とする栽培用土充填済みソイルブロック。
    In the soil block filled with soil for cultivation according to any one of claims 1 to 4,
    Both the molding soil for the block body and the cultivation soil filled in the work holes, or at least the molding soil contains nutrients,
    A soil filled soil block for cultivation.
  6.  請求項1から請求項5のいずれか1項に記載の栽培用土充填済みソイルブロックにおいて、
     作業穴の全長又は底面側が、ブロック本体の上面側から底面側に向けて次第に細くなる、
     ことを特徴とする栽培用土充填済みソイルブロック。
    In the soil block filled with soil for cultivation according to any one of claims 1 to 5,
    The total length or bottom side of the work hole gradually becomes thinner from the top side of the block body toward the bottom side,
    A soil filled soil block for cultivation.
  7.  請求項1から請求項6のいずれか1項に記載の栽培用土充填済みソイルブロックにおいて、
     栽培用土充填済みソイルブロックの上面が、充填済み栽培用土の上から被覆材でカバーされて、充填済み栽培用土の脱落が防止されるようにした、
     ことを特徴とする栽培用土充填済みソイルブロック。
    In the soil filled soil block for cultivation according to any one of claims 1 to 6,
    The top of the soil block filled with the soil for cultivation was covered with a covering material from the top of the soil for filled cultivation so that the filled soil for cultivation was not dropped.
    A soil filled soil block for cultivation.
  8.  請求項1から請求項7のいずれか1項に記載の栽培用土充填済みソイルブロックの栽培用土に植物を栽培する植物栽培方法において、
     栽培用土充填済みソイルブロックの外周面を空気に触れさせて、作業穴内に充填済み栽培用土に栽培された植物の根を栽培用土からブロック本体内の全般に張らせ、前記外周面において伸びが困難な湿度の空気に触れさせて、根の伸びを当該空気との接触位置付近である外周面で停止させて、栽培中の栽培用土充填済みソイルブロックの外周面の外への伸びを抑制して、根の先端部が栽培用土充填済みソイルブロックの外周面までしか伸びず、栽培用土充填済みソイルブロックの外周面に根鉢が形成されないようにする、
     ことを特徴とする植物栽培方法。
    In the plant cultivation method of growing a plant on the soil for cultivation of the soil block filled with the soil for cultivation according to any one of claims 1 to 7,
    The outer peripheral surface of the soil block filled with the soil for cultivation is exposed to the air, and the roots of the plant cultivated in the soil for cultivation filled in the work hole are stretched from the soil for cultivation to the entire inside of the block body, and it is difficult to stretch on the outer peripheral surface. By touching air of moderate humidity, stopping the elongation of the root at the outer peripheral surface in the vicinity of the contact position with the air, and suppressing the outward expansion of the soil block filled with soil for cultivation during cultivation. The tip of the root extends only to the outer peripheral surface of the soil filled soil block, so that the root pot is not formed on the outer peripheral surface of the soil filled soil block.
    A plant cultivation method characterized by that.
  9.  請求項8記載の植物栽培方法において、
     栽培用土充填済みソイルブロックのブロック本体の外周面を空気に触れさせるか、栽培用土充填済みソイルブロックをそれよりも大きな容器に入れて栽培用土充填済みソイルブロックの外周面と容器の内周面の間に隙間を設けることによりブロック本体の外周面を空気に触れさせて、栽培用土充填済みソイルブロックの外周面に根鉢が形成されないようにする、
     ことを特徴とする植物栽培方法。
    In the plant cultivation method of Claim 8,
    Touch the outer peripheral surface of the block body of the soil filled soil block for cultivation to the air, or place the soil block filled with the soil for cultivation in a larger container, and the outer peripheral surface of the soil filled soil block and the inner peripheral surface of the container The outer peripheral surface of the block main body is exposed to air by providing a gap between them, so that no root pot is formed on the outer peripheral surface of the soil block filled with soil for cultivation.
    A plant cultivation method characterized by that.
  10.  請求項1から請求項7のいずれか1項に記載の栽培用土充填済みソイルブロックの作業穴に充填済みの栽培用土に植物が栽培され、
     根の先端が栽培用土充填済みソイルブロックの外周面までしか伸びず、栽培用土充填済みソイルブロックの外周面に根鉢が形成されていないが、根はブロック本体内の全般に張ってブロック本体が形崩れしないようにしてある、
     ことを特徴とするソイルブロック栽培植物。
    Plants are cultivated in the cultivation soil filled in the working holes of the soil block filled with the cultivation soil according to any one of claims 1 to 7,
    The tip of the root extends only to the outer peripheral surface of the soil block filled with soil for cultivation, and no root pot is formed on the outer peripheral surface of the soil block filled with soil for cultivation. So that it does n’t collapse,
    A soil block cultivation plant characterized by that.
  11.  請求項10記載のソイルブロック栽培植物において、
     植物が作業穴に充填済みの栽培用土に挿し木されて生育された挿し木苗、又は接ぎ木が挿し込みされて生育された接木苗である、
     ことを特徴とするソイルブロック栽培植物。
    In the soil block cultivation plant according to claim 10,
    It is a cutting seedling that has been planted and grown in the soil for cultivation in which the plant is filled in the working hole, or a grafting seedling that has been grown by inserting a graft.
    A soil block cultivation plant characterized by that.
PCT/JP2013/072459 2013-08-22 2013-08-22 Filled soil block for cultivation, plant cultivation method, and soil block-cultivated plant WO2015025407A1 (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
JP2014505445A JP5525666B1 (en) 2013-08-22 2013-08-22 Soil block filled with soil for cultivation, plant cultivation method, and soil block cultivation plant
PCT/JP2013/072459 WO2015025407A1 (en) 2013-08-22 2013-08-22 Filled soil block for cultivation, plant cultivation method, and soil block-cultivated plant

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/JP2013/072459 WO2015025407A1 (en) 2013-08-22 2013-08-22 Filled soil block for cultivation, plant cultivation method, and soil block-cultivated plant

Publications (1)

Publication Number Publication Date
WO2015025407A1 true WO2015025407A1 (en) 2015-02-26

Family

ID=51175731

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/JP2013/072459 WO2015025407A1 (en) 2013-08-22 2013-08-22 Filled soil block for cultivation, plant cultivation method, and soil block-cultivated plant

Country Status (2)

Country Link
JP (1) JP5525666B1 (en)
WO (1) WO2015025407A1 (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
NL2020943B1 (en) * 2018-05-17 2019-11-25 Duemmen Group Bv A rooting plug structure and a method
WO2022175715A1 (en) 2021-02-18 2022-08-25 Lucky Plants Bv Transplanting system and method for gradual transplanting and growing of plants

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5891266U (en) * 1981-12-17 1983-06-21 株式会社みかど育種農場 Seedling pine tree
JPS62139250U (en) * 1986-02-28 1987-09-02
JPH0174744U (en) * 1987-11-06 1989-05-22
JP2000139233A (en) * 1998-11-11 2000-05-23 Toppan Printing Co Ltd Container for cultivating plant
JP2005124512A (en) * 2003-10-24 2005-05-19 Daiei Bussan:Kk Pot for seedling, method for packaging pot for seedling and collective structure of pot for seedling

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5971621A (en) * 1982-10-15 1984-04-23 株式会社日立製作所 Plant supporting method
JP3059657U (en) * 1998-12-07 1999-07-13 英治 大朏 Nursery box device for flowers and vegetables
JP4814463B2 (en) * 2001-09-28 2011-11-16 サントリーホールディングス株式会社 Plant cultivation method and plant cultivation tool

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5891266U (en) * 1981-12-17 1983-06-21 株式会社みかど育種農場 Seedling pine tree
JPS62139250U (en) * 1986-02-28 1987-09-02
JPH0174744U (en) * 1987-11-06 1989-05-22
JP2000139233A (en) * 1998-11-11 2000-05-23 Toppan Printing Co Ltd Container for cultivating plant
JP2005124512A (en) * 2003-10-24 2005-05-19 Daiei Bussan:Kk Pot for seedling, method for packaging pot for seedling and collective structure of pot for seedling

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
NL2020943B1 (en) * 2018-05-17 2019-11-25 Duemmen Group Bv A rooting plug structure and a method
WO2022175715A1 (en) 2021-02-18 2022-08-25 Lucky Plants Bv Transplanting system and method for gradual transplanting and growing of plants

Also Published As

Publication number Publication date
JP5525666B1 (en) 2014-06-18
JPWO2015025407A1 (en) 2017-03-02

Similar Documents

Publication Publication Date Title
MX2014009710A (en) Plant growing system and methods of using the same.
JP5525666B1 (en) Soil block filled with soil for cultivation, plant cultivation method, and soil block cultivation plant
Landis et al. Native plant containers for restoration projects
CA2835468C (en) Container and method for raising a plant
KR101360222B1 (en) The connected pot for hydroponics and the method of raising seedlings using the same
Kashyap et al. Effect of media on hardening of in vitro multiplied plantlets of gloxinia and saintpaulia under low cost polytunnels
KR100731652B1 (en) The Pot for Growing Seedling
JP5400914B2 (en) Soil block and soil block cultivation plant
KR20180047634A (en) Formed culture soil for flowerpot
JP2007222111A (en) Cultivation soil for cell-formed seedling, and method for producing cell-formed seedling
JP2013172656A5 (en)
Zahreddine et al. Growing Pinus nigra seedlings in Spinout™-treated containers reduces root malformation and increases growth after transplanting
KR200405135Y1 (en) The Pot for Growing Seedling
JP3233838U (en) Seedling tools
KR200242369Y1 (en) Raising seedling mat
KR101410470B1 (en) Earthworm cast port using peat moss
KR20150117421A (en) Apparatus for raising seedlings having blockmat style seedbed and nursery Box
JP7231270B1 (en) Fertilizer for container seedlings
JP2017131196A (en) Tools and methods for filling soft pot with media efficiently
JP3172516U (en) Plant growing container
JP2003102264A (en) Method and implement for cultivating plant
JP7412943B2 (en) Container holder, seedling raising kit, and forest seedling production method
KR100446208B1 (en) Raising seedling mat
JP2017079700A (en) Methods of efficiently filling medium using soft seedling raising pot
JP5375887B2 (en) Seedling insertion method

Legal Events

Date Code Title Description
ENP Entry into the national phase

Ref document number: 2014505445

Country of ref document: JP

Kind code of ref document: A

121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 13891998

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 13891998

Country of ref document: EP

Kind code of ref document: A1