WO2018110798A1 - Procédé de production en masse d'halophyte - Google Patents

Procédé de production en masse d'halophyte Download PDF

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Publication number
WO2018110798A1
WO2018110798A1 PCT/KR2017/009411 KR2017009411W WO2018110798A1 WO 2018110798 A1 WO2018110798 A1 WO 2018110798A1 KR 2017009411 W KR2017009411 W KR 2017009411W WO 2018110798 A1 WO2018110798 A1 WO 2018110798A1
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WO
WIPO (PCT)
Prior art keywords
salt
plants
soil
salinity
prepared
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Application number
PCT/KR2017/009411
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English (en)
Korean (ko)
Inventor
조영기
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농업회사법인 주식회사 백산
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Application filed by 농업회사법인 주식회사 백산 filed Critical 농업회사법인 주식회사 백산
Priority claimed from KR1020170109104A external-priority patent/KR20180069670A/ko
Publication of WO2018110798A1 publication Critical patent/WO2018110798A1/fr

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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G27/00Self-acting watering devices, e.g. for flower-pots
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G31/00Soilless cultivation, e.g. hydroponics
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G9/00Cultivation in receptacles, forcing-frames or greenhouses; Edging for beds, lawn or the like

Definitions

  • the present invention relates to a mass production method of salt plants.
  • the present invention comprises the steps of germinating the seeds in a constant temperature incubator seed seed germination; Growing germinated seeds into seedlings at the growth pot; Planting the grown seedling pot into reclaimed land; Giving the planted seedlings with a nitrogen source, phosphoric acid and mineral fertilizers; And it relates to a mass production method of growing salt plants, including the step of maintaining the salinity at all times.
  • Salt plants are plants that grow in the seashore and rock salt ( ⁇ ) area, the development of the reservoir tissue plump leaves and stems of salt plants. In addition, by controlling the osmotic pressure by lowering the high salt concentration of the cells with the water stored in the saltwater tissue of the salt plants.
  • Salt plants absorb various minerals present in seawater and contain many beneficial ingredients such as calcium, protein, potassium, choline, selenium, zinc, magnesium, iron, and various minerals.
  • the seaweed contains 8 times more calcium than milk and 12 times more potassium than tribal bananas, which is effective in treating waste in the body and energy metabolism.
  • young shoots of seaweed herbs are known to have a calming effect as herbs.
  • salty plants which are local foods that have been ingested in the coastal region for a long time, have recently been re-examined for edible and medicinal use, starting with seaweed.
  • saline plants Due to this change in the physicochemical properties of the soil, saline plants are suitable for neutral to weakly alkaline soils as growing soils, but the salted soils do not grow well due to strong alkalinity.
  • the present inventors have invented a method for mass production of salt plants that can be produced by cultivating in large quantities in water or in soil to continuously produce salt plants.
  • Republic of Korea Patent Publication No. 10-0694828 describes the salt planting method of salt plants.
  • the method of producing a salt plant is characterized by protecting plants of tidal flats, salt marshes and coastal sand dunes by producing plants with excellent salt tolerance by sequentially increasing the salt concentration during plant seed or seedling growth.
  • it is different from the present invention by the enhancement and mass production of nutritional components for the commercialization of salt plants.
  • the present inventors have completed the present invention by developing a method for mass production of salt plants to produce salt plants of a certain quality.
  • the technical problem of the present invention is to enhance the nutrition by the active ingredient of the salt plants by the mass production method of the salt plants, and to provide commercialization by mass-producing the production of salt plants of a certain quality.
  • the technical problem of the present invention is to provide high quality salt plants by enhancing the content of various minerals that are characteristic of salt plants through the mass production method of salt plants.
  • the present invention comprises the steps of germinating the seeds in a constant temperature incubator seed seed germination; Growing germinated seeds into seedlings at the growth pot; Planting the seedling pots grown in soil pH 6-7, 1-2% salinity with soil softened with reclaimed soil and reclaimed land made under the above conditions; Giving the planted seedlings with a nitrogen source, phosphoric acid and mineral fertilizers; And to provide water prepared by the salt of the sea salt of 1 ⁇ 2% to the reclaimed land, to provide a method for mass production of salt plants, including the step of maintaining the salt of 1 to 2% always to solve the technical problem.
  • the present invention provides a salt plant, characterized in that the germination by providing the water of 1 ⁇ 2% salinity prepared by the temperature 20 ⁇ 30 °C, sun salt in the step of germinating the seed in a constant temperature incubator seed seed germination pot
  • the technical problem is solved by providing a production method.
  • the present invention is characterized in that the germinated seeds of the salt plants grow in the salinity of 1 ⁇ 2%, pH 6.0 ⁇ 6.5 of the soil at the stage of growth in the growth port, and provides a salt of 1 ⁇ 2% of the salt prepared with sun salt By providing a method for mass production of salt plants to solve the technical problem.
  • the present invention is the soil for the growth of the salt plants are planted in the soil prepared by the above conditions and gently reclaimed soil prepared by the above conditions by providing water of 1 ⁇ 2% salinity prepared by pH 6 ⁇ 7, sun salt, It is intended to solve the technical problem by providing a method for mass production of salt plants, characterized in that the soil is maintained.
  • the present invention to solve the technical problem by providing a method for mass production of salt plants, characterized in that the addition of nitrogen source, phosphoric acid and minerals 5 ⁇ 15kg / 10a in the step of adding nitrogen, phosphoric acid and mineral fertilizer to the growing salt plants. do.
  • the present invention provides a method for mass production of salt plants, characterized by maintaining the salinity of 1 to 2% by providing water of 1 to 2% of salinity prepared by the salt of the soil and reclaimed land of the salt plants of the growing plants. To solve the technical problem by providing.
  • the present invention seeks to solve the technical problem by providing a salt plant produced by the method described above.
  • the method according to the present invention has the effect that can be produced by cultivating a large amount of salt plants.
  • the mass production method of the salt plant according to the present invention can provide a quality salt plant by improving the content of various minerals that are characteristic of the salt plant.
  • 1 is a view showing the change of minerals in plants according to the salinity of salt plants.
  • FIG. 2 is a view showing the growth of plants according to the nitrogen, phosphorus, mineral fertilizer application of salt plants.
  • the salted plants used in this experiment proceeded to seaweed, tribale, gut brush, haeche body, and haemul herb, but not limited thereto.
  • the germination rate according to salt concentration and temperature condition is very large.
  • the temperature was found to germinate most of the 5th day at about 20 ⁇ 30 °C.
  • the germination rate was very fast by showing the maximum germination rate at about 3 days at the temperature of 30 °C.
  • the temperature of 10 °C most germination occurred at 15 days after 10 days. Therefore, it is judged that it is desirable for the temperature to germinate at about 30 ° C.
  • salt concentration is 1 ⁇ 2% and germination of salt plants shows maximum germination rate in about 2 ⁇ 5 days at 20 ⁇ 30 °C.
  • 1 is a view showing the change of minerals in plants according to the salinity of salt plants.
  • Nitrogen source, phosphoric acid and mineral amounts were treated with 0, 5, 10, 15 kg / 10a.
  • FIG. 2 is a view showing the growth of plants according to the nitrogen source, phosphoric acid and mineral fertilizer application of salt plants.
  • Salt plants are plants that grow on the shores of salt lakes and rock salt on the seashore and inland.
  • the present invention proceeds to salt plants, trichophytium, trichola sulphate, haemulche, haemulmul, but not limited thereto.
  • Germination Pot This is a pot to allow seeds to germinate, and filter paper and seeds are added.
  • thermo-hygrostat incubator capable of temperature control or temperature / humidity is characterized by germinating seeds for 5-10 days by maintaining a temperature of 20-30 ° C. to germinate the seeds in the germination pot.
  • Seeds of saline plants were incubated at 0-2% salinity and 20-30 [deg.] C. in a constant temperature incubator. Sea salt with a salt level of 0 to 2% was prepared using sun salt and germinated.
  • the germinated seeds were grown in growth ports for growth, and soil pH conditions were about 6.0-7.0 and salinity 1-2%. Seedlings grown for 2 to 3 weeks were planted in reclaimed land.
  • Saline plants generally suffer from invasion of brine and the evaporation of soil moisture, which causes the plant to grow, and the salinity is very high. Because of this, the ecosystem is changed due to the change in the physicochemical properties of the soil, and neutral to weakly alkaline soils are suitable for the growth of salt plants, but the salty soils do not grow well due to the strong alkalinity.
  • the present inventors In order to grow salt plants well, the present inventors piled up or positioned banks to prevent invasion of brine in reclaimed land, and homogenized the soil by selecting the ground of the soil, and the soil ph 6.0 to 7 and salinity of 1 to 2%. Maintained.
  • the salt was also provided to the salt plants by providing 1 to 2% of the salt prepared by the natural salt.
  • the saline plant culture provides water prepared with salt of 1 to 2% of salt in soil, and always maintains 1 to 2% of salt.
  • the main invention is to create a mass production system and a growing environment for growing salt plants, and proceeded as follows.
  • the germinated seeds of the salt plants were grown to 1 ⁇ 2% of the salinity of soil, pH 6.0 ⁇ 6.5 at the stage of growth in the growth pot, and the salt prepared by the sun salt was also germinated by providing 1 ⁇ 2% of water.
  • the soil for the growth of the salt plants is planted in soil softly prepared by the leveling and reclaimed soil prepared by the above conditions by providing water of 1 to 2% salinity prepared by pH 6 ⁇ 7, sun salt, and the soil Maintained and grown.
  • Nitrogen, phosphoric acid and minerals were added by adding 5 to 15 kg / 10a in the step of adding nitrogen source, phosphoric acid and mineral fertilizer to the growing salt plants.
  • the salinity of the growing saline plants and the salinity of the reclaimed land was prepared by maintaining the salinity of 1 to 2% by providing water of 1 to 2% of the salinity prepared with sun salt.

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Water Supply & Treatment (AREA)
  • Cultivation Of Plants (AREA)
  • Fertilizers (AREA)

Abstract

La présente invention concerne un procédé de production en masse d'un halophyte, comprenant les étapes consistant à : mettre des graines d'halophyte dans un pot de germination afin de faire germer les graines dans un incubateur ; cultiver les graines germées pour obtenir des plantules dans un pot de culture ; planter, dans un sol ameubli par nivellement d'un sol ayant un pH de sol compris entre 6 et 7 et une salinité de 1 à 2 % et dans une terre amendée préparée dans ces conditions, le pot de plantules qui a été cultivé ; apporter une source d'azote, de l'acide phosphorique et un engrais minéral aux plantules plantées ; apporter, à la terre amendée, de l'eau préparée avec un sel séché par le soleil ayant une salinité de 1 à 2 %, et maintenir la salinité à 1-2 % tout le temps ; et cultiver un halophyte par ces étapes. La présente invention augmente les ingrédients actifs d'un halophyte au moyen du procédé de production en masse d'un halophyte de façon à renforcer celui-ci en termes de nutrition, et permet la production en masse d'un halophyte ayant une qualité prédéterminée afin de le commercialiser.
PCT/KR2017/009411 2016-12-14 2017-08-29 Procédé de production en masse d'halophyte WO2018110798A1 (fr)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
KR20160170827 2016-12-14
KR10-2016-0170827 2016-12-14
KR10-2017-0109104 2017-08-29
KR1020170109104A KR20180069670A (ko) 2016-12-14 2017-08-29 염생식물의 대량 생산방법

Publications (1)

Publication Number Publication Date
WO2018110798A1 true WO2018110798A1 (fr) 2018-06-21

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PCT/KR2017/009411 WO2018110798A1 (fr) 2016-12-14 2017-08-29 Procédé de production en masse d'halophyte

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WO (1) WO2018110798A1 (fr)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20020066938A (ko) * 2001-02-14 2002-08-21 전라남도 퉁퉁마디의 재배방법
KR20060001169A (ko) * 2004-06-30 2006-01-06 주식회사 하이닉스반도체 인시튜 단계적 플러그 이온주입을 이용한 반도체 소자의콘택 플러그 형성 방법
KR100694827B1 (ko) * 2005-12-29 2007-03-13 주식회사 시내 & 들 염해지 식재용 염생식물의 생산 방법
KR20100066609A (ko) * 2008-12-10 2010-06-18 바이오샐리코영농조합법인 퉁퉁마디의 재배 방법
KR101036423B1 (ko) * 2010-12-02 2011-05-23 김현철 해수를 이용한 함초의 재배방법 및 이에 의해 재배된 함초

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20020066938A (ko) * 2001-02-14 2002-08-21 전라남도 퉁퉁마디의 재배방법
KR20060001169A (ko) * 2004-06-30 2006-01-06 주식회사 하이닉스반도체 인시튜 단계적 플러그 이온주입을 이용한 반도체 소자의콘택 플러그 형성 방법
KR100694827B1 (ko) * 2005-12-29 2007-03-13 주식회사 시내 & 들 염해지 식재용 염생식물의 생산 방법
KR20100066609A (ko) * 2008-12-10 2010-06-18 바이오샐리코영농조합법인 퉁퉁마디의 재배 방법
KR101036423B1 (ko) * 2010-12-02 2011-05-23 김현철 해수를 이용한 함초의 재배방법 및 이에 의해 재배된 함초

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