Photosynthetic bacteria operation system
The photosynthetic bacteria operation system addresses inefficiencies by integrating a greenhouse cultivation system, aquarium tank, and renewable energy power generation, resulting in improved agricultural and environmental outcomes.
Patent Information
- Application Number
- JP2024041323
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-03-15
- Publication Date
- 2025-09-29
AI Technical Summary
Existing photosynthetic bacteria operations lack efficiency in various agricultural and environmental applications.
A system incorporating a greenhouse cultivation system, aquarium tank, far-infrared irradiation means, and renewable energy power generation facilities to enhance photosynthetic bacteria operation efficiency.
Enables efficient operation of photosynthetic bacteria, improving crop growth, aquaculture, and environmental purification through enhanced growth and productivity.
Smart Images

Figure 2025141408000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a photosynthetic bacteria operation system using photosynthetic bacteria. [Background technology]
[0002] Photosynthetic bacteria have been used for a long time in agricultural production such as paddy field, hydroponics and greenhouse cultivation, as well as for sewage purification, aquaculture and feed for egg production (Non-Patent Document 1). [Prior art documents] [Non-patent literature]
[0003] [Non-Patent Document 1] Photosynthetic bacteria (Academic Press Center, edited by Hiroshi Kitamura, Shigehiro Morita, and Nihei Yamashita) Summary of the Invention [Problem to be solved by the invention]
[0004] However, the operation of photosynthetic bacteria known from Non-Patent Document 1 has the problem that no mention is made of efficient operation.
[0005] Therefore, an object of the present invention is to provide a photosynthetic bacteria operation system that enables efficient operation of photosynthetic bacteria. [Means for solving the problem]
[0006] The photosynthetic bacteria operation system of the present invention is characterized by comprising a greenhouse cultivation system, an aquarium tank that supplies water to the greenhouse cultivation system, photosynthetic bacteria that are sprayed onto the greenhouse cultivation system, a far-infrared irradiation means that can irradiate the aquarium tank with far-infrared rays, and a power generation facility that uses renewable energy. [Effects of the Invention]
[0007] According to the present invention, a photosynthetic bacteria operation system that enables efficient operation of photosynthetic bacteria can be provided. [Brief explanation of the drawings]
[0008] [Figure 1] FIG. 1 is an explanatory diagram of a photosynthetic bacteria operation system in a first embodiment of the present invention. [Figure 2] FIG. 1 is a perspective view showing an outline of the photosynthetic bacteria operation system. [Figure 3] FIG. 1 is an overall perspective view of the photosynthetic bacteria operation system. [Figure 4] FIG. 1 is an explanatory diagram of greenhouse cultivation and hydroponic cultivation. [Figure 5] Same as above, an explanatory diagram of rice cultivation. [Figure 6] Same as above, explanatory diagram of outdoor cultivation. [Figure 7] FIG. 10 is an explanatory diagram showing fruit tree cultivation carried out in a flat field. [Figure 8] FIG. 1 is an explanatory diagram showing fruit cultivation in a terraced field. BEST MODE FOR CARRYING OUT THE INVENTION
[0009] Preferred embodiments of the present invention will be described with reference to the accompanying drawings. Note that the embodiments described below do not limit the content of the present invention as defined in the claims. Furthermore, not all of the configurations described below are necessarily essential requirements of the present invention. Example 1
[0010] Figures 1 to 8 show Example 1 of the present invention. As shown in Figure 1, the photosynthetic bacteria operation system of this example includes a water tank 1 in which a special natural mineral 1A is installed, a solar power generation facility 2 and a wind power generation facility 3 which are power generation facilities, a substation and charging facility 4 which transforms and charges the electricity from the power generation facilities, a solar hot water facility 5 which heats water supplied from the water tank using sunlight, a heater 6 which keeps the water warm using electricity from the substation and charging facility 4, and a hot water insulation tank 7 which stores the water heated by the solar hot water facility 5.
[0011] Water from the aquarium 1 is supplied via various pipes to the solar hot water facility 5, the management office 8, agricultural crop cultivation (hospital cultivation 14, hydroponic cultivation 15, open-field cultivation 16, and fruit cultivation 21, which will be described later), the photosynthetic bacteria cultivation room 10, the egg-laying chicken coop 22, and the aquaculture and fishing industry 23.
[0012] Electricity from the transformer and charging equipment 4 is supplied to aquariums 1, heaters 6, hot water insulation tanks 7, management office 8, laboratory 9, photosynthetic bacteria cultivation room 10, photosynthetic bacteria storage room 11, warehouse 12, seedling greenhouse 13, crop cultivation (greenhouse cultivation 14, hydroponic cultivation 15, open-field cultivation 16, fruit cultivation 21), egg-laying chicken coop 22, aquaculture 23, septic tank 19, and direct sales outlet 18.
[0013] Hot water from the hot water insulation tank 7 is supplied to a laboratory 9, a photosynthetic bacteria cultivation room 10, a cultured bacteria storage room 11, a seedling greenhouse 13, greenhouse cultivation 14, and hydroponic cultivation 15.
[0014] The water tank 1 uses groundwater and tap water, and a special natural mineral 1A is attached to the bottom of the water tank 1. Adding the special natural mineral to the water reduces the size of the water molecules, preventing the water from spoiling. Therefore, the water in the water tank 1 is suitable for raising seedlings and growing crops, and is also ideal for hydroponic cultivation, stimulating crop growth. Note that it is preferable to use a harmless natural mineral as the special natural mineral 1A in this embodiment, and for example, finely ground materials with high far-infrared radiation properties, such as quartz, feldspar porphyry, and magnetite (iron oxide), may be used.
[0015] The power generation facility is a facility that converts renewable energy such as solar, wind, geothermal, and hydroelectric power into electricity, and in this embodiment, electricity generated by the solar power generation facility 2 and wind power generation facility 3 is sent to the transformer and charging facility 4. The solar power generation facility 2 is installed on the roof of each facility in the photosynthetic bacteria operation system.
[0016] The transformer / charging equipment 4 is equipment that transforms and charges the electricity generated by the solar power generation equipment 2 and the wind power generation equipment 3, and supplies the charged electricity to each of the aforementioned equipment.
[0017] The solar water heater 5 is a hot water facility that uses the heat of sunlight, and when the hot water reaches a certain temperature, it is sent to the hot water insulation tank 7.
[0018] The heater 6 is an electric heater that receives heating energy from the transformer and charging equipment 4 and raises the set temperature of the hot water in the hot water insulation tank 7 by an amount that is insufficient.
[0019] When the temperature of the hot water in the hot water insulation tank 7 is insufficient, the hot water in the hot water insulation tank 7 is automatically sent from the hot water insulation tank 7 to the heater 6. Then, when the temperature rises to a certain level in the heater 6, the hot water is returned to the hot water insulation tank 7.
[0020] The hot water insulation tank 7 has a special natural ore 7A attached to the bottom of the hot water insulation tank 7. By adding the special natural ore 7A, the hot water is prevented from spoiling. Furthermore, it prevents contamination of the piping through which the hot water flows. Here, the special natural ore 7A is the same ore as the special natural ore 1A described above.
[0021] When the hot water from the solar water heater 5 reaches a certain temperature, it is sent to the hot water insulation tank 7. When the hot water in the hot water insulation tank 7 drops below a certain temperature, it automatically flows into the hot water heater as described above. This hot water from the hot water insulation tank 7 is sent to each of the aforementioned facilities.
[0022] Management Office 8 handles business-related administrative tasks.
[0023] The research objectives of Laboratory 9 include research into the relationship between photosynthetic bacteria and soil, the relationship between photosynthetic bacteria and vegetables, the relationship between photosynthetic bacteria and fruit trees, the relationship between photosynthetic bacteria and rice cultivation, the relationship between photosynthetic bacteria and fish, the relationship between photosynthetic bacteria and laying hens, and the purification of sludge and reservoir water using photosynthetic bacteria.
[0024] In the photosynthetic bacteria cultivation chamber 10, the photosynthetic bacteria are cultivated in a planned number.
[0025] In the photosynthetic bacteria storage room 11, the photosynthetic bacteria cultured in the photosynthetic bacteria culture room 10 are stored under constant light, temperature and humidity.
[0026] Warehouse 12 stores agricultural and other materials.
[0027] In the seedling raising house 13 (seedbed), the pH and salt concentration of the seedbed soil are adjusted, and organic fertilizer is used. The moisture and temperature in the soil of the seedling raising house 13 are also adjusted. The temperature and humidity are kept constant inside the seedling raising house 13, and vegetable seeds are sown.
[0028] In greenhouse cultivation 14, the pH and salt concentration of the soil in the main field are adjusted, and organic fertilizer is used. The moisture and temperature in the soil in greenhouse cultivation 14 are also adjusted. The temperature and humidity inside greenhouse cultivation 14 are kept constant, and it is the main field where the germinated vegetable seedlings from seedling house 13 are planted. The photosynthetic bacteria are sprayed for the first time at planting and several times from growth to before harvest. Photosynthetic bacteria are sprayed during the crop growth period.
[0029] For hydroponic cultivation 15, the temperature and humidity inside the greenhouse are adjusted, and water from tank 1 is used as the cultivation water for hydroponic cultivation 15, and the water quality of the cultivation water for hydroponic cultivation 15 is tested and the temperature is adjusted. Special natural minerals 15A are attached to the cultivation containers for hydroponic cultivation 15, and the hydroponic water is made to flow. A certain amount of photosynthetic bacteria is injected into the flowing water before planting the crops. The photosynthetic bacteria are injected into the flowing water in accordance with the growth of the crops.
[0030] In the field cultivation of crops 16, the pH and salt concentration of the soil in the field are inspected and the soil is adjusted. The moisture in the soil is also adjusted. Photosynthetic bacteria are suppressed by spraying a certain amount on the soil and also act as an activator. Organic fertilizer based on organic matter is used as fertilizer for field crops. Photosynthetic bacteria are used as fertilizer.
[0031] In rice cultivation17, the paddy field soil is inspected and adjusted. When tilling the soil before planting, approximately 600 to 800 kg of rice straw compost is added per 10 ares. A certain amount of photosynthetic bacteria is spread before planting. After planting, it is spread according to the rice growth conditions. In addition, photosynthetic bacteria are poured into the water intake of the paddy field, and the photosynthetic bacteria are used to activate the rice root stumps.
[0032] Direct sales outlets 18 sell freshly harvested, safe and fresh vegetables, fruits, eggs, fish, etc. directly to customers.
[0033] In the septic tank 19, a special natural mineral 19A is attached to the bottom of the septic tank 19. Photosynthetic bacteria are automatically dripped in at regular intervals.
[0034] In the reservoir 20 (and park ponds), rainwater temporarily flows into the reservoir 20 (or the pond). Photosynthetic bacteria are used to prevent the water in the reservoir 20 (or the pond) from spoiling. A fixed amount of photosynthetic bacteria flows into the reservoir 20 (or the pond) depending on the amount of water in the reservoir 20 (or the pond).
[0035] In fruit tree cultivation 21, soil in the orchard is tested and adjusted based on the test results. Organic matter is added to the fertilizer to improve its organic properties. Photosynthetic bacteria are sprayed around the fruit trees in March or April. In particular, the roots of fruit trees extend down to the root hairs, so it is preferable to spray the bacteria over an area that covers the flat projected area of the branches and leaves around the trunk of the fruit tree (the hatched area in Figures 7 and 8). Photosynthetic bacteria are then sprayed two to three times until harvest.
[0036] The egg-laying hens in the egg-laying hen house 22 can have an increased egg-laying rate by adding a small amount of photosynthetic bacteria to the feed for the laying hens.
[0037] In land-based aquaculture businesses 23, a certain amount of special natural ore 23A is attached to the bottom of the aquaculture tank, improving the water quality and creating favorable conditions for the growth of larval fish.
[0038] The system with the above configuration will be explained below. In the seedling greenhouse 13, the germination times vary depending on the crop species, but they grow well. By spraying photosynthetic bacteria several times into the soil of the seedling greenhouse 13, the roots of the crops can be strengthened and their vitality increased. The photosynthetic bacteria can suppress soil damage caused by continuous cropping in the greenhouse 14. Vegetables harvested in this greenhouse 14 are environmentally friendly and have improved safety as food.
[0039] The quality and quantity of crops harvested by the hydroponic cultivation 15 are significantly improved, and the freshness of the crops can be better preserved after harvest. In addition, the water used in the hydroponic cultivation 15 is purified in a septic tank and reused.
[0040] In open-field cultivation of crops, soil damage caused by continuous cropping is prevented, and the yield of crops is less variable, resulting in a significant improvement in quantity and quality. In addition, the soil environment is protected.
[0041] In paddy rice cultivation17, the rice roots are well established, the rice is activated, and the rice becomes resistant to disease. The harvest yield is higher quality than usual, and the yield also increases. In addition, the brown rice and white rice are environmentally friendly and safe, and can be eaten deliciously. The soil environment is also protected.
[0042] The purified water from the septic tank 19 is reused in other facilities.
[0043] In the case of the reservoir 20 (and park ponds), the natural environment of the reservoir 20 (or the pond) is improved.
[0044] In fruit cultivation, the germination period is accelerated, flower bud formation is promoted, and flower quality is improved, resulting in higher pigment content and sugar content, higher harvest quality and improved storage.
[0045] The egg-laying hens in egg-laying shed 22 do not lose their egg production rate even in bad weather. The increased carotene and vitamins in the egg yolks also help improve the quality of the eggs. Furthermore, the chicken manure can be fermented and reused as organic fertilizer for agricultural crops.
[0046] In land-based aquaculture businesses, the death of larvae after hatching, which is an important aspect of aquaculture, is a major problem. However, if photosynthetic bacteria are added to feed during this period, the number of larvae alive will increase significantly and the mortality rate will decrease. This will allow the larvae to mature faster, improving productivity, increasing the shipping volume and making them safe to eat. In addition, the water in the aquaculture tanks is purified in a septic tank and reused.
[0047] In the above embodiment, a photosynthetic bacteria operation system is provided that enables efficient operation of photosynthetic bacteria, by including a greenhouse cultivation system 14, an aquarium 1 that supplies water to the greenhouse cultivation system 14, photosynthetic bacteria that are sprayed onto the greenhouse cultivation system 14, a special natural mineral 1A as far-infrared radiation means that can irradiate far-infrared radiation onto the aquarium 1, and a solar power generation system 2 and a wind power generation system 3 that use renewable energy, thereby improving the growth of food grown in the greenhouse cultivation system 14.
[0048] In addition, this embodiment is provided with an open-field cultivation 16, an aquarium 1 that supplies water to the open-field cultivation 16, photosynthetic bacteria that are sprayed onto the open-field cultivation 16, and a special natural mineral 1A as far-infrared irradiation means that can irradiate far-infrared rays onto the aquarium 1, thereby providing a photosynthetic bacteria operation system that enables efficient operation of photosynthetic bacteria and can improve the growth of food in the open-field cultivation 16.
[0049] In addition, in this embodiment, by providing an egg-laying chicken coop 22 and photosynthetic bacteria that are mixed into the feed of the laying hens in the egg-laying chicken coop 22, a photosynthetic bacteria operation system is provided that enables efficient operation of photosynthetic bacteria, thereby improving the growth of food in the egg-laying chicken coop 22.
[0050] The present invention is not limited to the above-described embodiment, and various modifications can be made within the scope of the present invention. [Explanation of symbols]
[0051] 1 aquarium 1A Special natural ore (far infrared radiation means) 2. Solar power generation (power generation equipment) 3. Wind power generation (power generation facilities) 14 Greenhouse cultivation 16 Outdoor cultivation 22 Laying chicken house
Claims
1. Greenhouse cultivation and a water tank for supplying water to the greenhouse; Photosynthetic bacteria to be sprayed on the greenhouse; a far-infrared irradiation means capable of irradiating the water tank with far-infrared rays; Power generation facilities using renewable energy, A photosynthetic bacteria operation system comprising:
2. Open-field cultivation and a water tank for supplying water to the outdoor cultivation; Photosynthetic bacteria sprayed on the outdoor cultivation; a far-infrared irradiation means capable of irradiating the water tank with far-infrared rays; The photosynthetic bacteria operation system according to claim 1, characterized in that it comprises:
3. Laying chicken coops, Photosynthetic bacteria mixed into the feed of laying hens in the laying chicken house; The photosynthetic bacteria operation system according to claim 1, characterized in that it comprises: