WO2019093410A1 - 水耕栽培装置、および、水耕栽培方法 - Google Patents
水耕栽培装置、および、水耕栽培方法 Download PDFInfo
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- WO2019093410A1 WO2019093410A1 PCT/JP2018/041447 JP2018041447W WO2019093410A1 WO 2019093410 A1 WO2019093410 A1 WO 2019093410A1 JP 2018041447 W JP2018041447 W JP 2018041447W WO 2019093410 A1 WO2019093410 A1 WO 2019093410A1
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- nutrient solution
- plant
- storage container
- root
- main root
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01G—HORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
- A01G31/00—Soilless cultivation, e.g. hydroponics
- A01G31/02—Special apparatus therefor
-
- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01G—HORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
- A01G31/00—Soilless cultivation, e.g. hydroponics
- A01G31/02—Special apparatus therefor
- A01G31/06—Hydroponic culture on racks or in stacked containers
-
- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01G—HORTICULTURE; CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPS OR SEAWEED; FORESTRY; WATERING
- A01G31/00—Soilless cultivation, e.g. hydroponics
- A01G31/02—Special apparatus therefor
- A01G31/065—Special apparatus therefor with means for recycling the nutritive solution
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P60/00—Technologies relating to agriculture, livestock or agroalimentary industries
- Y02P60/20—Reduction of greenhouse gas [GHG] emissions in agriculture, e.g. CO2
- Y02P60/21—Dinitrogen oxide [N2O], e.g. using aquaponics, hydroponics or efficiency measures
Definitions
- the present invention relates to a hydroponic cultivation apparatus and a hydroponic cultivation method.
- a cultivation system collects the nutrient solution in the main mixing tank and the distribution supply path for supplying the treated nutrient solution from the piping to each cultivation container, and collects the waste liquid from each cultivation container and treats the waste liquid
- the system comprises as main elements the discharge channels to be supplied to the device and a plurality of cultivation containers for storing nutrient solution from the distribution supply channel and for individually growing plants of the same type and a predetermined number of strains.
- Each of the plurality of cultivation containers has a stretchable bellows portion as a water level adjusting means according to the growth of a plant formed around the entire circumference of a part of the trunk of the cultivation container.
- cultivation containers can be grown while making the root of the root vegetables hypertrophy by adjusting while observing the growth of plants in one common container.
- the present invention is a hydroponic cultivation apparatus and a hydroponic cultivation method, which can enhance the productivity per unit area in hydroponic cultivation, and further, the necessary nutrients It is an object of the present invention to provide a hydroponic cultivation apparatus capable of reducing the amount of liquid used and lowering the running cost of the apparatus, and a hydroponic cultivation method.
- the hydroponic cultivation apparatus comprises a nutrient solution storage unit for storing nutrient solution, a nutrient solution storage container for supplying nutrient solution in the nutrient solution storage unit, and cultivation.
- a lid member for supporting a plurality of plants the lid member fixed so as to face the liquid surface of the nutrient solution of the nutrient solution storage container at a constant distance, and supported by the lid member Only the tip of the main root of the plant having a main root longer than the length of the shoot of the plant is immersed in the nutrient solution in the nutrient solution storage container, and the air layer is a lid member and the nutrient solution storage container , And around the portion other than the tip of the main root.
- the nutrient solution storage container may be a pan or a distribution channel.
- the nutrient solution storage container may be an individual cultivation container provided corresponding to each plant.
- the root enlarged part of the plant may be formed in the space between the lid member and the nutrient solution storage container.
- the air layer between the lid member and the nutrient solution storage container may be surrounded by a sheet, for example, a transparent, translucent sheet.
- the distance between the lid member and the liquid surface of the nutrient solution in the nutrient solution storage container may be adjustable to any length according to the growth of the main root.
- the method of hydroponic cultivation comprises the steps of: cultivating a plant having a main root that is longer than the length of shoots of the plant in the first liquid storage container; Growing the plant grown in the container in a second nutrient solution storage container in which the air layer is formed around the portion other than the tip of the main root of the plant, and the tip of the main root in the plant It is characterized in that it is immersed in the nutrient solution in the first nutrient solution storage container and the second nutrient solution storage container.
- the tip of the main root in the plant is the first It may be immersed in the nutrient solution in the container for nutrient solution storage.
- the hydroponic cultivation apparatus and the hydroponic cultivation method of the present invention is a nutrient solution storage container to which the nutrient solution in the liquid storage unit is supplied, and a lid member for supporting a plurality of plants grown. And a lid member fixed so as to face the liquid surface of the nutrient solution of the nutrient solution storage container at a constant distance, and the main root having a length longer than the length of the shoots of the plant supported by the lid member.
- FIG. 1A is a view showing the steps of cultivating a plant as a seedling used in a plurality of examples of the hydroponic cultivation apparatus according to the present invention.
- FIG. 1B is a view schematically showing a container used for each step of cultivation of the plant together with the plant.
- FIG. 2 is a block diagram which shows roughly the structure of 1st Example of the hydroponic cultivation apparatus which concerns on this invention.
- FIG. 3A is a diagram for explaining the growth process of a plant.
- FIG. 3B is a diagram provided for explaining the growth process of a plant.
- FIG. 4 is a diagram showing the circulation path of the nutrient solution together with the plants when the bread in the example shown in FIG. 2 is applied to cultivating different types of plants.
- FIG. 1A is a view showing the steps of cultivating a plant as a seedling used in a plurality of examples of the hydroponic cultivation apparatus according to the present invention.
- FIG. 1B is a view schematically showing a container used for
- FIG. 5 is a block diagram which shows roughly the structure of 2nd Example of the hydroponic cultivation apparatus which concerns on this invention.
- FIG. 6A is a configuration diagram schematically showing a configuration of a third embodiment of the water culture apparatus according to the present invention.
- FIG. 6B is a diagram provided for explaining the growth process of a plant.
- FIG. 6C is a diagram provided for explaining the growth process of a plant.
- FIG. 7A is a view showing the steps of cultivating a plant as a seedling used in a plurality of examples of the hydroponic cultivation apparatus according to the present invention.
- FIG. 7B is a view schematically showing a plurality of sponges (urethane sponges etc. held on an artificial medium plate etc.) in one container used for each step of cultivation of the plants together with the growth of the plants.
- FIG. 2 schematically shows a first embodiment of the water culture apparatus according to the present invention.
- a plurality of hydroponic cultivation apparatuses are disposed, for example, on multistage cultivation racks (not shown) provided in a so-called solar plant factory or an artificial light closed plant factory.
- multistage cultivation racks not shown
- solar plant factory or an artificial light closed plant factory.
- FIG. 2 one hydroponic cultivation apparatus is shown representatively.
- the hydroponic cultivation apparatus is disposed, for example, in a tank 12 for storing a culture solution (hereinafter also referred to as a nutrient solution) LQ 1 as liquid fertilizer adjusted to a predetermined concentration, and disposed in the tank 12.
- a pump 12P for supplying LQ1 to a supply channel Du2 to be described later, and a nutrient solution storage container (hereinafter also referred to as a pan) 10B that forms a lower part of the culture planter 10 to be described later and stores a predetermined amount of nutrient solution LQ1;
- a lid member 14 forming the upper part of the cultivation planter 10, and a lid support member 10C which supports the lid member 14 from below and is detachably connected to the pan 10B are included as main elements.
- the plants 28 P1 , 28 P2 , 28 P3 , 28 P4 , and 28 P5 among the plurality of plants 28 P1 to 28 Pn are representatively shown.
- the plants 28 P 1 , 28 P 2 , 28 P 3 , 28 P 4 , 28 P 5 ... which are cultivated in such a hydroponic cultivation apparatus are, for example, carrots of a predetermined number of stocks, ginseng (Garion ginseng), licorice, olivine, touki Kinds of root vegetables such as yams, kabuki, burdock, dacon etc.
- the lid member 14 includes the tip of the main root 28a (including the root crown and the root meristem, respectively) of the plants 28 P1 , 28 P2 , 28 P3 , 28 P4 , 28 P5 ... 28 Pn of a predetermined number of strains of the same type. Portion) 28b is supported via a plant fixing stopper 14a as a plug member described later so that it is immersed in the nutrient solution LQ1 in the pan 10B. Each plant fixing stopper 14a is disposed at a position corresponding to each opening of the lid member 14 as shown in Patent Document 1, for example. The plurality of openings of the lid member 14 are formed vertically and horizontally at predetermined intervals.
- Each of the plant fixing stoppers 14a has, on the inside, a seal accommodating portion for accommodating a plurality of stacked seal members as shown in, for example, Patent Document 1.
- a material having flexibility and stretchability such as a urethane sponge mat may be used.
- shoots (shoots) 28c of the plants 28 P1 , 28 P2 , 28 P3 , 28 P4 and 28 P5 are supported by the lid member 14 by the plant fixing stoppers 14 a.
- the lid support member 10C has a growing plant 48 P1, 48 P2, 48 P3 , 48 P4, 48 P5 growing space 10A that can accommodate the root hypertrophy portion 48c of the inner side .
- Growth space (air layer) 10A for example, a plant 48 P1 grown, 48 P2, 48 P3, 48 P4, 48 height HA exceeding the length of the extending direction of the root hypertrophy portion 48c at harvest in P5 have.
- the height HA is set, for example, to a value of 50 cm or more in the case of a dip.
- height HA is not restricted to such an example, for example, according to the length in the extending direction of the root enlarged part at the time of harvest in different types of grown plants, to a predetermined height of less than 50 cm. It may be set. In the case of carrot, the height HA is set, for example, in the range of about 20 cm to 30 cm.
- height HA does not necessarily need to be fixed to a predetermined value during growth of a plant, for example, according to the growth of the main root length of a long root, holds the water surface of nutrient solution LQ1 and the root of seedling There is no problem if the cultivation planter 10 has a mechanism capable of adjusting the length of the space stepwise or steplessly.
- green algae may be generated in a wet place in or near the water tank.
- the air layer 10A between the lid member 14 and the nutrient solution storage container 10B may be surrounded by a sheet, for example, a transparent, translucent sheet, a light shielding sheet, or the like.
- a sheet for example, a transparent, translucent sheet, a light shielding sheet, or the like.
- the nutrient solution LQ1 is stored at a predetermined water level in the tank 12 as a nutrient solution storage unit. Further, in the tank 12, a pump 12P having a discharge port connected to one end of the supply path Du2 is provided. The pump 12P is driven and controlled by a control unit (not shown). Thus, when the pump 12P is activated, the nutrient solution LQ1 in the tank 12 is supplied into the reservoir of the pan 10B described later via the supply passage Du2. Therefore, when the pump 12P is activated, the nutrient solution LQ1 in the tank 12 is circulated through the supply passage Du2 and the return discharge passage Du1.
- the pan 10B has, on the inside, a storage portion in which a predetermined amount of nutrient solution LQ1 supplied from the tank 12 via the supply path Du2 is stored.
- the upper part of the storage part is opened toward the above-mentioned growth space 10A.
- the open end of the other end of the supply passage Du2 opens toward the liquid surface of the nutrient solution LQ1 in the reservoir.
- one open end of the discharge pipe 16 protrudes by a predetermined length into the nutrient solution LQ1 of the storage portion of the pan 10B.
- the protruding length of one open end of the discharge pipe 16 as the water level adjusting means is set to, for example, about 3 cm.
- the nutrient solution LQ1 rises, the nutrient solution LQ1 is discharged to the return discharge path Du1 communicating with the inside of the tank 12 through the discharge pipe 16, and the water level of the nutrient solution LQ1 is determined by the predetermined value of the main root 28a of the plant. It will be controlled by the predetermined water level LH corresponding to the length of.
- sowing step S 1 and germination step S 2 The plants 28 P1 , 28 P2 , 28 P3 , 28 P4 , 28 P5 ... 28 Pn are obtained through the seedling breeding step S3 sequentially.
- a sponge urethane sponge or the like held on an artificial culture medium plate etc. floated on the water surface in the container 20 filled with the nutrient solution LQA. ) 22 are scolded.
- the sprouted seedlings 26 are transferred to the container 30 filled with a predetermined amount of nutrient solution LQB.
- the depth of the container 30 is set to be larger than the depth of the container 20.
- the relative position between the tip 26b of the main root 26 of the sprouted seedling 26 and the water surface of the nutrient solution LQB is set such that only the tip 26b of the main root 26 of the sprouted seedling 26 is immersed in the nutrient solution LQB. Ru.
- the relative position between the tip 26b of the main root 26a of the seedling 26 and the water surface of the nutrient solution LQB is set so that the main root 26a can be held in a state capable of sufficiently absorbing the nutrient solution LQB.
- An air layer 30A is formed above the water surface of the nutrient solution LQB.
- the seedling 26 grown in the sponge 22 (or foamed polystyrene plate) in the container 30 has a main root 28a having a predetermined length longer than the length of the main root 26a (hereinafter also referred to as a plant). ) 28 P 1 , 28 P 2 , the seedlings 28 P 1 , 28 P 2 with the main root 28 a are transferred to a large container 40 with a sponge 22 deeper than the depth of the container 30.
- the relative position between the tip portion 28b of the main root 28a of the seedling 28 and the water surface of the nutrient solution LQC is set such that only the tip portion 28b of the main root 28a of the seedling 28 is immersed in the nutrient solution LQC. That is, the relative position between the tip 28b of the main root 28a of the seedling 28 and the water surface of the nutrient solution LQC is set so that the primary root 28a can be held in a state capable of sufficiently absorbing the nutrient solution LQC.
- seedlings 28 P1 and 28 P2 among a plurality of seedlings are representatively shown.
- the relative position of the water surface of the distal end portion 28b and the nutrient solution LQC the main root 28a seedlings 28 P1, 28 P2 depending on the growth of the main root 28a seedlings 28 P1, 28 P2 is adjusted.
- shoots (shoots) 28c are formed on the portions of the grown seedlings 28 P1 and 28 P2 supported by the sponge 22.
- the average diameter of the main roots 28a of the seedlings 28 P1 and 28 P2 is, for example, in the range of about 2 mm or more and 10 mm or less.
- the number and size of culture containers of different sizes are implemented in appropriate combinations according to the varieties to be grown.
- containers of different sizes are used in advance to prepare plants 28 P 1 , 28 P 2 , 28 P 3 , 28 P 4 , 28 P 5 ... 28 P n as seedlings having relatively long main roots. Seedlings having relatively long main roots were grown, but the present invention is not limited to such examples, for example, the growth of main roots in a state where the water level of the nutrient solution is kept constant using one cultivation container of the same size.
- a plurality of artificial culture media may be pulled up to the top of the culture vessel so that only the tip of the main root is immersed in the nutrient solution to grow long main root seedlings. In such a case, for example, as shown in FIG.
- plants 28 P1 , 28 P2 and so on are obtained through the sowing step S1, the germination step S2 and the seedling breeding step S3 sequentially.
- FIG. 7B showing seedlings 28 'P1 of the plurality of plants, the 28' P2, 28 P1, 28 P2 typically.
- a plurality of species 24 are sown, for example, by the first sponge 22 floated on the left end of the water surface in the container 60 filled with a nutrient solution LQD having a predetermined concentration.
- the seeds 24 germinate in the germination step S2
- the main roots 26a of the seedlings 26 extend to a predetermined length
- only the sprouted seedlings 26 are arranged on the water surface adjacent to the right side in FIG. 7B.
- the wire 62 wound by the raising-lowering mechanism (not shown) is each connected by four corners of each sponge 22 shown by FIG. 7B. Thereby, the distance between the sponge 22 and the water surface of the nutrient solution LQD can be adjusted by operating the elevating mechanism.
- the relative position between the tip 26b of the main root 26 of the sprouted seedling 26 and the water surface of the nutrient solution LQD is set such that only the tip 26b of the main root 26 of the sprouted seedling 26 is immersed in the nutrient solution LQD.
- Ru That is, the relative position between the tip 26b of the main root 26a of the seedling 26 and the water surface of the nutrient solution LQD is set so that the main root 26a can be held in a state capable of sufficiently absorbing the nutrient solution LQD.
- An air layer 60A is formed above the water surface of the nutrient solution LQD.
- the seedling 26 grown on the second sponge 22 (or foamed polystyrene plate) has a main root 28'a having a predetermined length longer than the length of the main root 26a (hereinafter referred to as plant)
- plant the main root 28'a having a predetermined length longer than the length of the main root 26a (hereinafter referred to as plant)
- the second sponge 22 is specified by the lifting mechanism with the seedlings 28' P1 having 28 ' P1 and 28' P2. It is raised to the position of.
- the relative position between the tip end 28'b of the main root 28'a and the water surface of the nutrient solution LQD is set to such an extent that only the tip end 28'b of the main root 28'a is immersed in the nutrient solution LQD. That is, the relative position between the tip portion 28'b of the main root 28'a and the water surface of the nutrient solution LQD is set so that the main root 28'a can be held in a state capable of sufficiently absorbing the nutrient solution LQC.
- the seedlings 28 'P1 is held by being raised to the maximum by a predetermined stopper by the second sponge 22 according to the growth of the main root 28a of 28' seedlings 28 P1 further grown than P2, 28 P2 is the lifting mechanism Ru.
- the relative position between the tip portion 28b of the main root 28a of the seedlings 28 P1 and 28 P2 and the water surface of the nutrient solution LQD is set such that only the tip portion 28b of the main root 28a is immersed in the nutrient solution LQD.
- shoots (shoots) 28c are formed on the portions of the grown seedlings 28 P1 and 28 P2 supported by the second sponge 22 as in the above-described example.
- the plants 28 P 1 , 28 P 2 , 28 P 3 , 28 P 4 , 28 P 5 ... 28 P n disposed in the cultivation planter 10 grow as they grow gradually, as shown in FIG. However, it is larger than the shoot (shoot) 28c described above. This is attributed to the drying stress in the growth space (air layer) 10A.
- FIG. 3A and FIG. 3B the same code is attached and shown about the component same as the component of the planter 10 for cultivation shown by FIG. 2,
- the duplication description is abbreviate
- a leaf 38 d grown on the upper part of the root enlarged part 38 c and a main root 38 a extend on the lower part of the root enlarged part 38 c.
- the tip 38b of the main root 38a is immersed in the nutrient solution LQ1. That is, the relative position between the tip portion 38b of the main root 38a of the seedling 38 and the water surface of the nutrient solution LQ1 is set so that the main root 38a can be held in a state capable of sufficiently absorbing the nutrient solution LQ1.
- the diameter and length of the root hypertrophy 48 c is, as shown in FIG.
- the diameter and length of the above-mentioned root enlarged part 38c also become large.
- a leaf 48 d grown on the upper part of the root enlarged part 38 c and a main root 48 a extend on the lower part of the root enlarged part 48 c.
- the tip 48b of the main root 48a is immersed in the nutrient solution LQ1.
- the relative position between the tip 48b of the main root 48a of the seedling 48 and the water surface of the nutrient solution LQ1 is set so that the main root 48a can be held in a state where it can sufficiently absorb the nutrient solution LQ1.
- root vegetable plants when root vegetable plants are grown by hydroponic culture, it has been considered necessary to have a water depth greater than the length of the root (50 cm for radish) in a large culture water tank.
- root growth can be enlarged while forming a root to form a long thick root. It can grow while maintaining a delicate balance of both elongation and hypertrophy.
- An example of the hydroponic cultivation method according to the present invention is, specifically, a cultivation method in which the root portion is cultivated to be thin and long, and then the elongated root portion is enlarged. The functions of elongation and hypertrophy were separated by going through the cultivation process of shifting the two growth functions in time.
- the cultivation experiment was actually conducted according to an example of the hydroponic cultivation method according to the present invention, it succeeded in cultivating a large amount of radish (root vegetable plant) which is long and thickened and thickened with stable quality.
- the plants 28 P 1 , 28 P 2 , 28 P 3 , 28 P 4 , 28 P 5 ... Cultivated in the above-mentioned cultivation planter 10 are, for example, root vegetables, but not limited to such examples, for example, FIG.
- FIG. 4 the same components as those of the planter 10 for cultivation shown in FIG. 2 are denoted by the same reference numerals, and the description thereof will be omitted.
- the lid member 14 and the lid support member 10C are removed from the bread 10B filled with the nutrient solution LQ2 having the same concentration as or a concentration different from that of the nutrient solution LQ1.
- FIG. 5 schematically shows a second embodiment of the water culture apparatus according to the present invention.
- the hydroponic cultivation apparatus is a group of plants 28 P1 instead. , 28 P 2 , 28 P 3 , 28 P 4 provided corresponding to the main root 28 a and storing a predetermined amount of nutrient solution LQ 1, and the main root 28 a of a group of plants 28 P 5 , 28 P 6 , 28 P 7 , 28 P 8
- a distribution path 44 is provided which is provided correspondingly and stores a prescribed amount of nutrient solution LQ1.
- FIG. 5 the same components as the components in the example shown in FIG. 2 are denoted by the same reference numerals, and the description thereof will be omitted. Moreover, although the illustration is abbreviate
- a plurality of hydroponic cultivation apparatuses are disposed, for example, on multistage cultivation racks (not shown) provided in a so-called solar plant factory or an artificial light closed plant factory.
- multistage cultivation racks not shown
- solar plant factory or an artificial light closed plant factory.
- FIG. 5 one hydroponic cultivation apparatus is shown representatively.
- distribution channels 42 and 44 have the same structure as each other, the distribution channel 42 will be described, and the description of the distribution channel 44 will be omitted.
- the distribution path 42 such as a pot has a storage portion in which a predetermined amount of nutrient solution LQ1 supplied from the tank 12 via the supply path Du2 is stored.
- the upper part of the storage part is opened toward the above-mentioned growth space 10A.
- the open end of the other end of the supply passage Du2 opens toward the liquid surface of the nutrient solution LQ1 in the reservoir.
- one open end of a discharge pipe protrudes by a predetermined length.
- the protruding length of one open end of the discharge pipe as the water level adjusting means is set to, for example, about 3 cm.
- the nutrient solution LQ1 rises, the nutrient solution LQ1 is discharged to the return discharge path Du1 communicating with the inside of the tank 12 through the discharge pipe, so the water level of the nutrient solution LQ1 is predetermined for the main root 28a of the plant. It will be controlled by the predetermined water level LH corresponding to the length.
- the plants 28 P1 , 28 P2 , 28 P3 , 28 P4 , 28 P5 ... 28 Pn can be grown, and the amount of nutrient solution LQ1 circulated in the distribution channels 42 and 44 is As compared with the amount of nutrient solution LQ1 circulated in the pan 10B shown in FIG. 2, the amount of nutrient solution LQ1 used can be saved.
- FIG. 6A, 6B and 6C schematically show a third embodiment of the hydroponic cultivation apparatus according to the present invention.
- a predetermined amount of nutrient solution LQ1 is filled in bread 10B in the example shown in FIG. 2, instead, in the example shown in FIG. 6A, a prescribed amount of nutrient solution LQ1 is a plant 28.
- the cultivation containers 50B1, 50B2, 50B3, 50B4 and 50B5 provided corresponding to the main roots 28a of P1 , 28 P2 , 28 P3 , 28 P4, 28 P4 and 28 P5 are to be filled.
- FIG. 6A the same components as the components in the example shown in FIG. 2 are denoted by the same reference numerals, and the description thereof will be omitted.
- a plurality of hydroponic cultivation apparatuses are disposed, for example, on multistage cultivation racks (not shown) provided in a so-called solar plant factory or an artificial light closed plant factory.
- multistage cultivation racks not shown
- FIG. 6A one hydroponic cultivation apparatus is representatively shown.
- the hydroponic cultivation apparatus is, for example, a tank 12 for storing a nutrient solution LQ1 as liquid fertilizer adjusted to a predetermined concentration, and a tank 12 which is disposed in the tank 12 and supplies the nutrient solution LQ1 in the tank 12 to a supply passage Du2 described later.
- a lid member 54 that forms the upper part of the cultivation planter 50 and a lid support member 50C that supports the lid member 54 from below are included as main elements.
- the lid member 54 is the same kind of predetermined number of plants 28 P 1 , 28 P 2 , 28 P 3 , 28 P 4 , 28 P 5 ... 28 Pn , respectively, the tip 28 b of the main root 28 a is the cultivation container 50 B 1, 50 B 2, 50 B 3, In order to be immersed in the nutrient solution LQ1 in 50B4 and 50B5, it supports via the plant fixing stopper 54a as a plug member described later. Each plant fixing stopper 54a is disposed at a position corresponding to each opening of the lid member 54, as shown in Patent Document 1, for example. The plurality of openings of the lid member 54 are formed vertically and horizontally at predetermined intervals.
- Each of the plant fixing stoppers 54a has, on the inside thereof, a seal accommodating portion for accommodating a plurality of stacked seal members as shown in Patent Document 1, for example.
- a material having flexibility and stretchability such as a urethane sponge mat may be used.
- shoots (shoots) 28c of the plants 28 P1 , 28 P2 , 28 P3 , 28 P4 and 28 P5 are supported by the lid member 54 by the plant fixing stoppers 54 a.
- the lid support member 50C as shown in FIG. 6C, have grown plants 48 P1, 48 P2, 48 P3 , 48 P4, 48 P5 growing space 50A that can accommodate the root hypertrophy portion 48c of the inner side .
- Growth space (air layer) 50A for example, a plant 48 P1 grown, 48 P2, 48 P3, 48 P4, 48 height HA exceeding the length of the extending direction of the root hypertrophy portion 48c at harvest in P5 have.
- the height HA is set, for example, to a value of 50 cm or more in the case of a dip.
- height HA is not restricted to such an example, for example, according to the length in the extending direction of the root enlarged part at the time of harvest in different types of grown plants, to a predetermined height of less than 50 cm. It may be set. In the case of carrot, the height HA is set, for example, in the range of about 20 cm to 30 cm.
- the pump 12P in the tank 12 as the nutrient solution storage unit is driven and controlled by a control unit (not shown) based on a detection output signal from the liquid level sensor LS provided in the sub tank 50T.
- the liquid level sensor LS includes, for example, three water level detection terminals having different lengths.
- the pump 12P is stopped by the control unit based on the detection output signal from the liquid level sensor LS. .
- the longest water level detection terminal serves as a common terminal.
- the reservoirs of the cultivation containers 50B1, 50B2, 50B3, 50B4, and 50B5 communicate with each other through the communication passage 50P, and the reservoirs of the cultivation container 50B5 communicate with the inside of the sub tank 50T through the communication passage 50P. ing.
- the upper part of each storage part is opened toward the above-mentioned growth space 50A.
- the open end of the other end of the supply passage Du2 opens toward the liquid surface of the nutrient solution LQ1 in the storage portion of the sub tank 50T. Therefore, the water level of the nutrient solution LQ1 in the storage section of the culture containers 50B1, 50B2, 50B3, 50B4 and 50B5 is controlled according to the water level in the sub tank 50T.
- the plants 28 P1 , 28 P2 , 28 P3 , 28 P4 , 28 P5 ... 28 Pn arranged in the cultivation planter 50 grow as they grow gradually, as shown in FIG. However, it is larger than the shoot (shoot) 28c described above. This is considered to be due to the drying stress in the growth space (air layer) 50A.
- the tip 38b of the main root 38a is immersed in the nutrient solution LQ1.
- the diameter and the length of the root hypertrophy 48 c are, as shown in FIG.
- the diameter and length of the above-mentioned root enlarged part 38c also become large.
- a leaf 48 d grown on the upper part of the root enlarged part 48 c and a main root 48 a extend on the lower part of the root enlarged part 48 c.
- the tip 48b of the main root 48a is immersed in the nutrient solution LQ1. As a result, the amount of nutrient solution supplied can be greatly reduced without the need for a drainage section.
- the water level adjusting means (container moving means) is also unnecessary, multi-stage cultivation can be easily performed, and therefore the productivity per unit area is increased.
- water can be sufficiently cultivated at a depth of about 3 cm deep of the water culture apparatus used for leaf vegetable (lettuce) cultivation, it is not necessary to newly develop a new cultivation apparatus exclusively for root vegetable type plants.
- root vegetable plants had been considered essential for large aquariums and large amounts of water, but could be eliminated.
- Root vegetable plants are also expected to produce active ingredients to be stored in roots such as medicinal herbs (Chinese herbs and herbal medicines) in addition to food crops, but by developing inexpensive cultivation methods, they are pesticide-free and have no cultivation environment. The control makes it possible to secure a stable content.
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- Life Sciences & Earth Sciences (AREA)
- Environmental Sciences (AREA)
- Hydroponics (AREA)
Abstract
Description
10B パン
10C 蓋支持部材
12 タンク
14 蓋部材
16 排出管
28P1、28P2、28P3、28P4、28P5 植物
38P1、38P2、38P3、38P4、38P5 植物
42,48 分配路
48P1、48P2、48P3、48P4、48P5 植物
50B1、50B2、50B3、50B4,50B5 栽培容器
Claims (10)
- 養液が貯留される養液貯留部と、
前記養液貯留部内の養液が供給される養液貯留用容器と、
栽培される複数の植物を支持する蓋部材であって、前記養液貯留用容器の養液の液面に対し一定の間隔をもって向き合うように固定される蓋部材と、を備え、
前記蓋部材に支持される前記植物の苗条の長さに比して長い主根を有する該植物における主根の先端部だけが、前記養液貯留用容器内の養液に浸されるとともに、空気層が、前記蓋部材と前記養液貯留用容器との間であって前記主根の先端部以外の部分の周囲に形成されることを特徴とする水耕栽培装置。 - 前記養液貯留用容器は、パンであることを特徴とする請求項1記載の水耕栽培装置。
- 前記養液貯留用容器は、分配路であることを特徴とする請求項1記載の水耕栽培装置。
- 前記養液貯留用容器は、各植物に対応して設けられた個別の栽培容器であることを特徴とする請求項1記載の水耕栽培装置。
- 前記植物の根部肥大部が、前記蓋部材と前記養液貯留用容器との間の空間内に形成される請求項1記載の水耕栽培装置。
- 前記蓋部材と前記養液貯留用容器との間の空気層は、透明、半透明シートで囲まれていることを特徴とする請求項1記載の水耕栽培装置。
- 前記蓋部材と前記養液貯留用容器との間の空気層が、シートで囲まれていることを特徴とする請求項1に記載の水耕栽培装置。
- 前記蓋部材と前記養液貯留用容器における前記養液の液面との間隔は、前記主根の生育に応じて任意の長さに調整可能であることを特徴とする請求項1記載の水耕栽培装置。
- 植物の苗条の長さに比して長い主根を有する植物を第1の養液貯留用容器内で栽培する工程と、
前記第1の養液貯留用容器内で栽培された前記植物を、空気層が該植物の前記主根の先端部以外の部分の周囲に形成される第2の養液貯留用容器内で生育させる工程とを含み、
前記植物における主根の先端部だけが、前記第1の養液貯留用容器および第2の養液貯留用容器内の養液に浸されることを特徴とする水耕栽培方法。 - 前記植物の苗条の長さに比して長い主根を有する植物を第1の養液貯留用容器内で栽培する工程において、前記主根の成長に応じて前記植物における主根の先端部だけが、前記第1の養液貯留用容器内の養液に浸されることを特徴とする請求項9記載の水耕栽培方法。
Priority Applications (6)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP18876180.3A EP3711477B1 (en) | 2017-11-13 | 2018-11-08 | Hydroponics apparatus and hydroponics method |
| JP2019552369A JP7276138B2 (ja) | 2017-11-13 | 2018-11-08 | 水耕栽培装置、および、水耕栽培方法 |
| KR1020207010800A KR102718193B1 (ko) | 2017-11-13 | 2018-11-08 | 수경 재배 장치, 및, 수경 재배 방법 |
| ES18876180T ES2984858T3 (es) | 2017-11-13 | 2018-11-08 | Dispositivo hidropónico y método hidropónico |
| CN201880073047.7A CN111343860B (zh) | 2017-11-13 | 2018-11-08 | 水培栽培装置以及水培栽培方法 |
| US16/868,725 US20200260672A1 (en) | 2017-11-13 | 2020-05-07 | Hydroponics device and hydroponics method |
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| JP2017-218319 | 2017-11-13 |
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| US16/868,725 Continuation US20200260672A1 (en) | 2017-11-13 | 2020-05-07 | Hydroponics device and hydroponics method |
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| WO2019093410A1 true WO2019093410A1 (ja) | 2019-05-16 |
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| US (1) | US20200260672A1 (ja) |
| EP (1) | EP3711477B1 (ja) |
| JP (1) | JP7276138B2 (ja) |
| KR (1) | KR102718193B1 (ja) |
| CN (1) | CN111343860B (ja) |
| ES (1) | ES2984858T3 (ja) |
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Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2021011269A1 (en) * | 2019-07-12 | 2021-01-21 | Harvest2o LLC | Hydroponic system with removable growing structures for multiple types of plants |
| JP2023093704A (ja) * | 2021-06-21 | 2023-07-04 | 株式会社エコタイプ次世代植物工場 | オタネニンジンの養液栽培用養液 |
Families Citing this family (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| EP4167340A4 (en) | 2020-07-08 | 2023-12-06 | LG Energy Solution, Ltd. | METHOD FOR MANUFACTURING A FULLY SOLID BATTERY COMPRISING A SOLID ELECTROLYTE MATERIAL |
| IL279007B2 (en) * | 2020-11-26 | 2023-04-01 | Green Bubble Ltd | Method and device for cultivating plants |
| CN114931090A (zh) * | 2022-06-01 | 2022-08-23 | 颜斌 | 一种可智能调控的栽培装置 |
| CN116076349B (zh) * | 2023-04-10 | 2023-06-23 | 山东世伟工贸有限公司 | 一种温室水槽 |
Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH0494960U (ja) * | 1991-01-14 | 1992-08-18 | ||
| JPH04258231A (ja) * | 1991-01-29 | 1992-09-14 | Kawashima Textile Manuf Ltd | 水耕栽培用繊維質シートおよび水耕栽培方法 |
| JP2007061002A (ja) * | 2005-08-31 | 2007-03-15 | Soatec Inc | 水耕栽培用の養液槽 |
| JP2015065828A (ja) * | 2013-09-26 | 2015-04-13 | パナソニックIpマネジメント株式会社 | 水耕栽培装置 |
| JP2017029144A (ja) | 2015-08-05 | 2017-02-09 | 凸版印刷株式会社 | 栽培用容器、および、それを備える栽培システム |
Family Cites Families (15)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US2189510A (en) * | 1938-06-16 | 1940-02-06 | Ellis Lab Inc | Hydroculture plant box |
| US3660933A (en) * | 1970-03-02 | 1972-05-09 | Weingarten & Wong Enterprises | Hydroponics system and method |
| US3868787A (en) * | 1971-12-29 | 1975-03-04 | Weingarten & Wong Enterprises | Apparatus for supporting hydroponically grown plants |
| US4059922A (en) * | 1976-01-12 | 1977-11-29 | Digiacinto Joseph A | Sprayer hydroponic grower |
| US4932158A (en) * | 1988-05-25 | 1990-06-12 | Roberts David S | Method and apparatus for hydroponic gardening |
| JP3477645B2 (ja) * | 2001-04-26 | 2003-12-10 | 株式会社生物機能工学研究所 | 露地水耕栽培用定植パネルの防雨カバー装置 |
| CN103039339A (zh) * | 2012-12-24 | 2013-04-17 | 何寒 | 一种植物水培生产装置 |
| JP5608799B1 (ja) * | 2013-09-12 | 2014-10-15 | パナソニック株式会社 | 水耕栽培装置 |
| JP2015139410A (ja) * | 2014-01-29 | 2015-08-03 | パナソニックIpマネジメント株式会社 | 水耕栽培装置 |
| NL2012234C2 (en) * | 2014-02-10 | 2015-08-17 | Vivi B V | Plant holder. |
| TW201543993A (zh) * | 2014-05-30 | 2015-12-01 | Yaskawa Denki Seisakusho Kk | 植物栽培單元、單元保持具、植物栽培單元的製造方法、及植物栽培方法 |
| JP6391004B2 (ja) * | 2014-09-03 | 2018-09-19 | パナソニックIpマネジメント株式会社 | 水耕栽培装置 |
| JP6604465B2 (ja) * | 2014-12-24 | 2019-11-13 | パナソニックIpマネジメント株式会社 | 水耕栽培装置 |
| US20170196176A1 (en) * | 2015-03-04 | 2017-07-13 | Jack Griffin | High density indoor farming apparatus, system and method |
| JP2016178887A (ja) * | 2015-03-24 | 2016-10-13 | 株式会社タムロン | 水耕栽培装置、植物工場、及び、水耕栽培方法 |
-
2018
- 2018-11-08 EP EP18876180.3A patent/EP3711477B1/en active Active
- 2018-11-08 ES ES18876180T patent/ES2984858T3/es active Active
- 2018-11-08 KR KR1020207010800A patent/KR102718193B1/ko active Active
- 2018-11-08 JP JP2019552369A patent/JP7276138B2/ja active Active
- 2018-11-08 WO PCT/JP2018/041447 patent/WO2019093410A1/ja not_active Ceased
- 2018-11-08 CN CN201880073047.7A patent/CN111343860B/zh active Active
-
2020
- 2020-05-07 US US16/868,725 patent/US20200260672A1/en not_active Abandoned
Patent Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JPH0494960U (ja) * | 1991-01-14 | 1992-08-18 | ||
| JPH04258231A (ja) * | 1991-01-29 | 1992-09-14 | Kawashima Textile Manuf Ltd | 水耕栽培用繊維質シートおよび水耕栽培方法 |
| JP2007061002A (ja) * | 2005-08-31 | 2007-03-15 | Soatec Inc | 水耕栽培用の養液槽 |
| JP2015065828A (ja) * | 2013-09-26 | 2015-04-13 | パナソニックIpマネジメント株式会社 | 水耕栽培装置 |
| JP2017029144A (ja) | 2015-08-05 | 2017-02-09 | 凸版印刷株式会社 | 栽培用容器、および、それを備える栽培システム |
Non-Patent Citations (1)
| Title |
|---|
| See also references of EP3711477A4 |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2021011269A1 (en) * | 2019-07-12 | 2021-01-21 | Harvest2o LLC | Hydroponic system with removable growing structures for multiple types of plants |
| US11337387B2 (en) | 2019-07-12 | 2022-05-24 | Rise Gardens Inc. | Hydroponic system and apparatus having removable growing structures for multiple types of plants |
| JP2023093704A (ja) * | 2021-06-21 | 2023-07-04 | 株式会社エコタイプ次世代植物工場 | オタネニンジンの養液栽培用養液 |
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| Publication number | Publication date |
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| EP3711477B1 (en) | 2024-07-17 |
| US20200260672A1 (en) | 2020-08-20 |
| JPWO2019093410A1 (ja) | 2020-11-19 |
| CN111343860B (zh) | 2022-07-08 |
| KR20200084326A (ko) | 2020-07-10 |
| EP3711477A1 (en) | 2020-09-23 |
| EP3711477A4 (en) | 2020-12-23 |
| CN111343860A (zh) | 2020-06-26 |
| ES2984858T3 (es) | 2024-10-31 |
| JP7276138B2 (ja) | 2023-05-18 |
| KR102718193B1 (ko) | 2024-10-17 |
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