WO2002032214A1 - Injecteur de frai liquide - Google Patents

Injecteur de frai liquide Download PDF

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Publication number
WO2002032214A1
WO2002032214A1 PCT/JP2001/009171 JP0109171W WO0232214A1 WO 2002032214 A1 WO2002032214 A1 WO 2002032214A1 JP 0109171 W JP0109171 W JP 0109171W WO 0232214 A1 WO0232214 A1 WO 0232214A1
Authority
WO
WIPO (PCT)
Prior art keywords
inoculum
opening
closing
container
lid
Prior art date
Application number
PCT/JP2001/009171
Other languages
English (en)
Japanese (ja)
Inventor
Yuichi Maruyama
Original Assignee
Nippon Seiki Co.,Ltd
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 Nippon Seiki Co.,Ltd filed Critical Nippon Seiki Co.,Ltd
Priority to KR1020027007176A priority Critical patent/KR20020064921A/ko
Publication of WO2002032214A1 publication Critical patent/WO2002032214A1/fr

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Classifications

    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G18/00Cultivation of mushrooms
    • A01G18/60Cultivation rooms; Equipment therefor
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G18/00Cultivation of mushrooms
    • A01G18/60Cultivation rooms; Equipment therefor
    • A01G18/64Cultivation containers; Lids therefor
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01GHORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
    • A01G18/00Cultivation of mushrooms
    • A01G18/50Inoculation of spawn
    • CCHEMISTRY; METALLURGY
    • C12BIOCHEMISTRY; BEER; SPIRITS; WINE; VINEGAR; MICROBIOLOGY; ENZYMOLOGY; MUTATION OR GENETIC ENGINEERING
    • C12NMICROORGANISMS OR ENZYMES; COMPOSITIONS THEREOF; PROPAGATING, PRESERVING, OR MAINTAINING MICROORGANISMS; MUTATION OR GENETIC ENGINEERING; CULTURE MEDIA
    • C12N1/00Microorganisms, e.g. protozoa; Compositions thereof; Processes of propagating, maintaining or preserving microorganisms or compositions thereof; Processes of preparing or isolating a composition containing a microorganism; Culture media therefor
    • C12N1/14Fungi; Culture media therefor

Definitions

  • the present invention relates to an inoculum inoculation device for inoculating a culture medium filled in a mushroom culture container with a mushroom inoculum.
  • a culture medium is filled in a cultivation container, sterilized, and the enoki mushroom is placed in the filled cultivation container. After inoculation of mushrooms such as maitake and mushrooms, the mouth of the cultivation container is covered by shaking, and the bacteria are cultivated under predetermined temperature and humidity conditions for industrial cultivation. Is being done.
  • the inoculum itself is the one in which the inoculum itself is propagated in the inoculum bottle in a culture medium in which nutrients are mainly composed of sawdust and rice bran.
  • the inoculum containing the inoculum is mounted upside down on the body frame side, and the inoculum is rotated in this state, and the extraction shaft provided with an extraction blade from the mouth of the inoculum is rotated.
  • the seeds are introduced into the germ vial, and the seeds are ejected by the ejection blade while rotating the ejection shaft and gradually ascending. It is configured to be filled with the inoculated fungus.
  • the filling amount of the inoculum generally sets the rotation time of the spreading shaft depending on the type of the mushroom to be cultivated. Depending on the difference between the diameter of the seed and the outer diameter of the capital, the amount of seed to be extracted may be different.In addition, since the seed in the seed bottle itself is solid, The size of inoculum (sawdust) that comes out may fluctuate. As a result, the amount of inoculum may vary. If the amount is less than the amount, it is expected that the mycelium of the inoculum will not easily propagate in the cultivation container, and the culturing will take a long time.
  • the present invention is to solve the above-mentioned problem of the conventional example, and aims to improve the efficiency of inoculation work while maintaining a stable supply of the inoculum to be supplied to the cultivation container while keeping the supply amount substantially constant. It is an object of the present invention to provide a liquid inoculum inoculation device capable of performing inoculum filling. Disclosure of the invention
  • a container in which cultivation containers are arranged and stored in a plurality of rows and a transport mechanism for supplying the container from a loading side, and transporting the container to an unloading side while intermittently transporting the cultivation containers in a horizontal row unit.
  • an opening / closing mechanism for opening and closing the cultivation containers in the container transferred to the inoculum inoculation position by this transport mechanism in a single-row unit; and a cultivation container in a row-unit opened by the open-close mechanism.
  • a seed-supply nozzle mechanism for supplying a predetermined amount of liquid seed to the cultivation container with respect to the container.
  • the lid of the cultivation container in the container opens and closes in a horizontal row.
  • the lid is opened by the opening and closing mechanism, and the lid is opened by the lid opening and closing mechanism.
  • a predetermined amount of liquid inoculum against growing container row units been inoculated is supplied through the seed supply nozzle mechanism into the culture vessel, said after the inoculation lid
  • the lid is closed by the opening / closing mechanism at the mouth of the cultivation container in a row unit in which the lid is opened by the opening / closing mechanism, and the cultivation container in the container is successively united by the transport mechanism based on the repetition. Is intermittently transferred to the unloading side.
  • the opening operation of the lid opening and closing mechanism and the operation of moving the inoculum supply nozzle mechanism over the mouth of the cultivation container are operated in synchronization with each other, and the closing operation of the opening and closing mechanism and the inoculum supply nozzle mechanism are performed.
  • the inoculum supply nozzle mechanism is located on the mouth of the cultivation container unlike the opening operation of the lid by the opening and closing mechanism.
  • the opening / closing drive mechanism for reciprocating the lid opening / closing mechanism between the closed position and the open position of the cultivation container in accordance with the opening / closing operation of the lid opening / closing mechanism; and
  • the nozzle drive mechanism that reciprocates between the position that is separated from the mouth of the cultivation container and the position above the mouth of the cultivation container stably performs a series of operations such as opening and closing the lid and inoculating the liquid inoculum. be able to.
  • the lid opening / closing drive mechanism and the nozzle drive mechanism are each provided with a coupling mechanism for operating in synchronization with each other, so that the operation timing of both can be easily adjusted.
  • the inoculum storage container for storing the liquid inoculum is provided for supplying the liquid inoculum to the inoculum supply nozzle mechanism, the liquid inoculum can be sequentially supplied from the inoculum storage container.
  • FIG. 1 is a schematic diagram showing the overall configuration of a liquid inoculum inoculation apparatus showing a first embodiment of the present invention
  • FIG. 2 is a front view showing a main part of the liquid inoculum inoculation apparatus shown in FIG. L.
  • FIG. 3 shows the operating state of the lid opening / closing mechanism and the inoculum supply nozzle mechanism of the liquid inoculum inoculation device S shown in FIG.
  • FIG. 4 is a front view of the main part, showing a state where the liquid inoculum is sprayed after the inoculum supply nozzle mechanism of FIG. 3 is moved downward toward the cultivation container side.
  • FIG. 5 is a right side view showing a main part of the nozzle mechanism when the lid is closed in FIG. 2, and FIG.
  • FIG. 6 is a left side view showing a main part of the nozzle mechanism when the lid is closed in FIG.
  • FIG. 7 is a left side view showing the main part of the nozzle mechanism when the nozzle mechanism is opened as shown in FIG. 3
  • FIG. 8 is a view showing the state of spraying of liquid seed bacteria by the nozzle mechanism shown in FIG.
  • FIG. 9 is a side view showing a main part of the opening / closing mechanism in FIG. 2
  • FIG. 10 is an operation of a movable clamping member in the lid opening / closing mechanism in FIG.
  • FIG. 11 is a side view showing a state (* clamped state).
  • FIG. 11 is a side view showing a state in which * is removed from the cultivation container from the lid clamped state shown in FIG. FIG.
  • FIG. 12 is a front view showing a main part of a liquid inoculum inoculation apparatus according to a second embodiment of the present invention
  • FIG. 13 is a nozzle mechanism of FIG.
  • FIG. 14 is a front view showing an injection state of the liquid inoculum according to the present invention.
  • FIG. 14 is a block diagram showing a control form of the liquid inoculum inoculating apparatus according to the second embodiment of the present invention.
  • a transport mechanism 2 consisting of a conveyor is provided over almost the entire length of the machine frame 1 of the liquid inoculum inoculation device main body, and this transport mechanism 2 is provided so that it can be started and stopped by operating a switch of an operation panel 3.
  • a plurality of sprocket wheels 4 are respectively supported on both ends of the machine frame 1, and an endless chain 5 is extended in parallel between the sprocket wheels 4 provided at both ends of the machine frame 1. The rotational force of the motor 6 is transmitted to the sprocket wheel 4 on the drive source side.
  • a cultivation container 8 filled with a culture medium such as sawdust or rice bran and sealed with a lid 7 is stored in a plastic container 9 containing, for example, four columns and four rows.
  • the container 9 in which the cultivation containers 8 are arranged in a plurality of rows is transferred from the loading side to the seed inoculation position, and the container 9 is transferred at the seed inoculation position.
  • the transport mechanism 2 is configured to intermittently transfer the cultivation containers 8 in one horizontal row unit in the direction. In this case, when the cultivation container 8 reaches an appropriate inoculum inoculation position, the transport mechanism 2 is stopped, and the container is positioned while taking out the center of the horizontal row of cultivation containers 8 stored in the container 9.
  • a positioning mechanism 10 is provided, and a lid opening / closing mechanism 11 for opening and closing the lids 7 of the cultivation vessels 8 arranged in a horizontal line at the seed inoculation position by the container positioning mechanism 10 is provided. Have been.
  • the lid 7 of the cultivation container 8 is opened by the lid opening / closing mechanism 11, the liquid inoculum is supplied in a row unit to the culture medium in the cultivation container 8 in a horizontal row with the lid 7 opened by the inoculum supply nozzle mechanism 12.
  • the cultivation container 8 which is sprayed is filled with a liquid inoculum and is inoculated.
  • the inoculum supply nozzle mechanism 12 for supplying the liquid inoculum of the present invention into the cultivation container 8 is located on the upper side through which the cultivation container 8 passes, and includes the four cultivation containers 8 in the horizontal row.
  • Pipes 14 are connected to each of the nozzles 13 of the same number, and a pipe 14 is connected to each of the nozzles 13.
  • a jet opening / closing valve (not shown) for supplying and shutting off the liquid inoculum is provided inside the spray nozzle 13 for opening and closing the jet opening / closing valve.
  • a tube 16 for supplying air is attached to and fixed to the injection nozzle 13.
  • the four nozzles 13 provided on the inoculum supply nozzle mechanism 12 are detachably fixed to and held by a nozzle mounting member 17, respectively, and the nozzle mounting member 17 is connected via a blade 18.
  • the cylinder 19 is fixed to a cylinder support plate 20 while being attached to and fixed to a cylinder 19 movably provided in a vertical direction.
  • the cylinder support plate 20 is provided on the body frame ⁇ side. It is arranged so as to be able to reciprocate along the designated guideway 21.
  • the opening and closing mechanism 11 for opening and closing the sandalwood 7 of the cultivation containers 8 arranged in a horizontal line at the inoculum inoculation position is disclosed in Japanese Patent Application Laid-Open No.
  • HEI 5-110354 which was previously proposed by the present applicant.
  • JP-A No. 2 (KOKAI) No. 2 and the like a pair of fixed holding members 2 2 that enable the lids 7 of the cultivation containers 8 arranged in a horizontal row to be held from the upper surface side and the lower surface side thereof.
  • a movable clamping member 23 composed of a clamping shaft, and the movable clamping member 23 is made movable forward and backward, and each of the lids is arranged in a horizontal row between the movable clamping member 23 and the fixed clamping member 22.
  • Air cylinders 24 are provided, each serving as a holding member opening / closing means for holding and releasing the 7.
  • Each of the cylinders 24 is mounted and fixed on a cylinder holding plate 25 provided along the width direction of the machine frame 1 of the inoculation device main body, and is attached to an end of the cylinder holding plate 25 by a link arm member.
  • the fixed holding member 22, the movable holding member 23, and the air cylinder 24 attached to the cylinder holding plate 25 are fixedly attached to the transmission moving means 26.
  • the cultivation container 8 is provided so as to be movable between a lid closing position and an open-end position of the cultivation container 8 via the means 26).
  • the link arm member 26 is It is rotatably provided via a support shaft 27 provided in 1.
  • a drive cylinder 28 is provided below the transport mechanism 2, and a distal end of a rod 29 provided on the drive cylinder 28 is pivotally attached to an end of the link arm member 26. While being connected and fixed, a connection port is provided between an end of the link arm member 26 and a cylinder support plate 20 which is reciprocally movable along the guide port 21. Both ends of the door 30 are pivotally connected and fixedly connected.
  • the lid opening / closing mechanism 11 is reciprocated between the lid closing position of the cultivation container 8 and the open position by the drive cylinder 28 in response to the opening / closing operation of the lid opening / closing mechanism 11.
  • Lid opening / closing drive means also serves as nozzle drive means for reciprocatingly moving the inoculum supply nozzle mechanism 12 between a position where the inoculum supply nozzle mechanism 12 is separated from the mouth position of the cultivation container 8 and a position on the mouth of the cultivation container 8.
  • the closing operation of the opening / closing mechanism 11 and the moving operation of detaching the inoculum supply nozzle mechanism 12 from the mouth of the cultivation container 8 are operated in synchronization with each other.
  • the operation of the liquid inoculum inoculation device in the above-described configuration will be described. First, a container 9 containing a predetermined number of cultivation containers 8 with lids 7 is placed on the transport mechanism 2 to transfer the containers 9, and it is detected that the cultivation containers 8 in the front row have reached the seed inoculation position.
  • the transport mechanism 2 stops, and then the cultivation container 8 is moved to the seed inoculation position while the vertical position and the center position of the cultivation container 8 are regulated by the container positioning mechanism 10. Positioning and fixing.
  • the operation of the cylinder 24 shifts from the state shown in FIG. 9 to the state shown in FIG. 10, and the lids 7 of the cultivation containers 8 positioned and arranged in a horizontal line move the movable clamping member 2.
  • the lid 7 is pressed from above by the upper surface side, and the lid 7 is clamped and held between the fixed clamping member 22 provided on the lower surface side and the movable clamping member 23.
  • the positioning by the container positioning mechanism 10 is performed, and after the holder 7 is clamped and held, the link arm member 26 is attached to the rod 29 with the support shaft 27 as a starting point along with the operation of the drive cylinder 28.
  • the lid 7 is rotated to the lid open position by the lid opening / closing mechanism 11 attached to the link arm member 26, and the end of the link arm member 26 is synchronized with the opening operation.
  • the cylinder support plate 20 moves along a guide rod 21 provided on the main body frame 1 side via a connection port 30 attached to the portion, and the cylinder support plate 20 moves.
  • the four injection nozzles 13 provided in the seed-bacteria supply nozzle mechanism 12 are moved to the position of the mouth of the cultivation container 8, that is, right above the cultivation container 8 from which the lid 5 is removed. (Refer to Fig.3, Fig.7, Fig.11) Then, by the operation of the cylinder 19, the radiating throat 13 approaches the mouth of the cultivation container 8 or is inserted into the mouth. Is done.
  • the internal pressure in the panicle storage container 15 increases, and in this embodiment, the liquid inoculum is transferred to the pipe 14 on the injection nozzle 13 side.
  • the tube 16 is opened and closed to open and shut off the injection on-off valve provided inside the injection nozzle 13.
  • the liquid inoculum is injected from the injection nozzle 13 by supplying air and opening the injection on-off valve.
  • the injection nozzle 13 After the liquid inoculum has been filled in a predetermined amount by the injection nozzle 13, the injection nozzle 13 is separated from the mouth position of the cultivation container 8 by the return operation of the cylinder 19, and then the rod 29 of the drive cylinder 28 is returned. At the same time, the nozzles 13 retract and move back from the position of the cultivation container 8 and return. * The rotation return operation of the opening / closing mechanism 11 covers the cultivation containers 8 in a horizontal row inoculated with the liquid inoculum. Is done.
  • the cultivation containers 8 are intermittently transferred by the transfer mechanism 2 in a single-row unit with respect to the transfer direction of the container 9 at the inoculum inoculation position, and in a horizontal single-row unit.
  • the cultivation container 8 in the container 9 can be sequentially inoculated with the liquid inoculum.
  • FIGS. 12 to 14 show a second embodiment of the present invention.
  • the basic configuration of the first embodiment is almost the same as that of the first embodiment.
  • a movable clamping member 2 comprising a pair of a stationary clamping member 22 and a clamping shaft which enable the * 7 of the cultivation containers 8 positioned and arranged in a horizontal row to be clamped from the upper surface side and the lower surface side.
  • the movable clamping member 23 is made movable forward and backward, and each of the movable clamping members 23 and the fixed clamping member 22 is clamped for clamping and releasing each piece 7 in a horizontal row.
  • Air cylinders 24 serving as opening and closing members are provided, and each of the cylinders 24 is mounted and fixed on a cylinder holding plate 25 provided along the width direction of the machine frame 1 of the inoculation device main body. I have.
  • a vertical moving means 26 A connected to the upper end of the cylinder 24 and comprising a cylinder for detaching the lid 7 from the cultivation container 8 is provided.
  • a lid opening / closing drive means 28 comprising a cylinder which is provided and which reciprocates the lid 7 which has been detached by the operation of the celestial body vertical movement means 26 A between the lid closed position and the lid open position of the cultivation container 8.
  • a nozzle comprising a cylinder in this embodiment is used as a means for reciprocating the inoculum supply nozzle mechanism 12 between a position where the inoculum supply nozzle mechanism 12 is detached from the position of the mouth of the cultivation container 8 and a position on the mouth of the cultivation container 8.
  • the driving means 28B is provided separately. Accordingly, the lid vertical movement moving means 26A, the opening / closing driving means 28A, and the The chirping drive means 28 B are driven in synchronization with each other via the control unit 31, thereby increasing the efficiency of inoculation of the liquid inoculum and increasing the efficiency of the cultivation container 8.
  • the opening time can be reduced as much as possible to suppress the invasion of various bacteria.
  • the injection nozzle 1 on the side that supplies the liquid inoculum for maintenance, inspection, or sterilization treatment is used. 3 and pipes 14 and tubes 16 need to be replaced (or if necessary) by washing or disinfecting, so they can be easily and manually replaced by the detachment knob. I have.
  • the cultivation container 8 is provided. 8 can be inoculated by spraying a liquid inoculum well.
  • the tube is connected to the inoculum storage container 15 filled with the liquid inoculum by switching a tube pipe or the like. Replacement work can be performed satisfactorily.
  • multiple seed storage containers 15 can be prepared, and when liquid seeds in the seed storage container 15 are exhausted, switching can be easily performed by switching valves. It is.
  • the lid opening / closing mechanism 11 is used as a cultivation container.
  • the driving cylinder 28 is used also as a nozzle driving means for reciprocating movement to and from the position, the driving cylinder 28 may be used to operate using a driving means such as a cam mechanism or a motor. Opening and closing the injection nozzle 13 It goes without saying that the opening and closing of the injection on-off valve may be electromagnetically performed.
  • a liquid inoculum injecting device comprising: a seed inoculation nozzle mechanism for supplying a predetermined amount of liquid inoculum to the cultivation container, respectively, to the cultivation container, wherein the cultivation containers are arranged in a plurality of rows and stored.
  • the transported container is intermittently transported to the seed inoculation position by the transport mechanism, and at this seed inoculation position, the lids of the cultivation containers in the container are opened and closed in a horizontal row.
  • a predetermined amount of liquid inoculum is supplied to the open cultivation container in a row unit via the inoculum supply nozzle mechanism and is inoculated into the cultivation container, and after the inoculation, the lid is opened by the opening and closing mechanism.
  • the lid of the cultivation container in a row unit is closed by the lid opening / closing mechanism, and the cultivation container in the container is sequentially arranged in a row unit by the transport mechanism based on the repetition. Is intended to be deleted to transfer to the carry-out side, there is an effect that it is possible to enhance the inoculation efficiency to cultivation vessel.
  • the inoculum supply nozzle mechanism moves in synchronization with the opening of the cultivation container along with the opening operation of the lid by the lid opening / closing mechanism, and then the liquid inoculum is supplied to the cultivation container by the inoculum supply nozzle mechanism.
  • the inoculation work efficiency of the liquid inoculum can be improved.
  • the opening time of the lid of the cultivation container can be shortened as much as possible to suppress the invasion of various bacteria.
  • a lid opening / closing drive mechanism for reciprocating the lid opening / closing mechanism between the closed position and the open position of the cultivation container in accordance with the lid opening / closing operation of the lid opening / closing mechanism; and
  • the nozzle drive mechanism that reciprocates between the position separated from the mouth of the cultivation container and the position above the mouth of the cultivation container stably performs a series of operations such as opening and closing and inoculation of liquid inoculum. There is an effect that can be.
  • the lid opening / closing drive mechanism and the nozzle drive mechanism are each provided with a connection mechanism for synchronizing and operating in conjunction with each other, so that the operation timing of both can be easily adjusted. Inoculation work efficiency can be improved:
  • the inoculum storage container storing the liquid inoculum is provided.
  • the present invention relates to an inoculum inoculation device that inoculates a culture medium inside a cultivation container arranged in a container with a mushroom inoculum.

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  • Life Sciences & Earth Sciences (AREA)
  • Mycology (AREA)
  • Environmental Sciences (AREA)
  • Mushroom Cultivation (AREA)

Abstract

L"invention concerne un injecteur de frai liquide offrant une efficacité élevée en termes d"injection dans des récipients de culture (8). Un compartiment (9) destiné à stocker de façon ordonnée les récipients de culture (8) en plusieurs rangées est transporté de manière intermittente vers une position d"injection de frai au moyen d"un mécanisme de transport (2), les couvercles de ces récipients de culture étant ouverts par un mécanisme d"ouverture et de fermeture de couvercle (11) ouvrant et refermant les couvercles latéralement pour chaque rangée. Une quantité spécifiée de frai liquide est injectée latéralement pour chaque rangée dans les récipients de culture non couverts via un mécanisme de buse d"alimentation en frai (12). Les couvercles sont appliqués sur les parties de bouche des récipients de culture latéralement pour chaque rangée par le mécanisme d"ouverture et de fermeture de couvercle après l"injection. On réitère cette opération en vue d"acheminer les récipients de culture logés dans le compartiment vers la sortie au moyen du mécanisme de transport tout en injectant le frai latéralement et de manière intermittente dans les récipients de culture logés dans ce compartiment.
PCT/JP2001/009171 2000-10-18 2001-10-18 Injecteur de frai liquide WO2002032214A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
KR1020027007176A KR20020064921A (ko) 2000-10-18 2001-10-18 액상 종균접종장치

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2000-323298 2000-10-18
JP2000323298A JP2002125461A (ja) 2000-10-18 2000-10-18 液状種菌接種装置

Publications (1)

Publication Number Publication Date
WO2002032214A1 true WO2002032214A1 (fr) 2002-04-25

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Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/JP2001/009171 WO2002032214A1 (fr) 2000-10-18 2001-10-18 Injecteur de frai liquide

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Country Link
JP (1) JP2002125461A (fr)
KR (1) KR20020064921A (fr)
CN (1) CN1392770A (fr)
WO (1) WO2002032214A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ES2235622A1 (es) * 2003-09-30 2005-07-01 Miconatur, S.L. Procedimiento para el cultivo de hongos, setas y similares.

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KR100523121B1 (ko) * 2004-01-08 2005-10-19 주식회사파멕스 버섯종균 등의 고속접종기
CN102972203A (zh) * 2012-08-30 2013-03-20 上海雪榕生物科技股份有限公司 降低栽培瓶污染率的接种操作方法
CN103141304B (zh) * 2013-03-26 2014-05-14 连云港国鑫食用菌成套设备有限公司 袋栽食用菌菌包全自动液体接种机
CN103548573A (zh) * 2013-11-06 2014-02-05 漳州益利食用菌科技有限公司 全自动食用菌接种机
CN103858678B (zh) * 2014-04-09 2015-09-09 北京市正兴隆生物科技有限公司 一种瓶栽食用菌液体菌种接种设备
CN104982223B (zh) * 2015-06-18 2017-09-15 江苏食品药品职业技术学院 一种多功能食用菌接种器
CN105165406B (zh) * 2015-10-14 2017-11-14 漳州市兴宝机械有限公司 食用菌液体接种插棒机
KR102469596B1 (ko) * 2020-07-02 2022-11-22 주식회사 도은이엔지 버섯 종균 자동 접종장치

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0257124A (ja) * 1988-08-22 1990-02-26 Babcock Hitachi Kk 液体種菌接種装置
JPH05103542A (ja) * 1991-10-11 1993-04-27 Nippon Seiki Co Ltd きのこ種菌接種装置
JP2000125660A (ja) * 1998-10-16 2000-05-09 Compex Co Ltd 茸の自動植菌方法
JP2000175559A (ja) * 1998-12-15 2000-06-27 Ogiwara Seiki Kk 液体状種菌接種機

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0257124A (ja) * 1988-08-22 1990-02-26 Babcock Hitachi Kk 液体種菌接種装置
JPH05103542A (ja) * 1991-10-11 1993-04-27 Nippon Seiki Co Ltd きのこ種菌接種装置
JP2000125660A (ja) * 1998-10-16 2000-05-09 Compex Co Ltd 茸の自動植菌方法
JP2000175559A (ja) * 1998-12-15 2000-06-27 Ogiwara Seiki Kk 液体状種菌接種機

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ES2235622A1 (es) * 2003-09-30 2005-07-01 Miconatur, S.L. Procedimiento para el cultivo de hongos, setas y similares.

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JP2002125461A (ja) 2002-05-08
KR20020064921A (ko) 2002-08-10
CN1392770A (zh) 2003-01-22

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