Photoenergy biotransformation ecological regulation device

CN113149222BActive Publication Date: 2026-09-25HUACHUAN TECH CO LTD
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Patent Information

Application Number
CN202110330485.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-03-29
Publication Date
2026-09-25
Estimated Expiration
2041-03-29

AI Technical Summary

Technical Problem

[0002]对于受污染的水体,如养殖水体、景观水体、富营养化的河流、湖泊等,其上层水体死亡藻类等有机质下沉至水体底部,有机质降解需要消耗溶解氧,下层水体溶解氧逐渐下降,导致下层水体处于缺氧状态,进而沉积物磷等内源污染物释放增强,动植物遗体难以分解,水质进一步恶化,水体自我修复功能完全遭到破坏

Benefits of technology

1、本光能生物转化生态调控装置,分散装置通入的气体不仅提高光合作用效率,还增加生态槽内部水体流动,使光合产生的氧均匀分散,高溶氧水质加速生态槽底部死亡藻类、浮游动物尸体及粪便等的氧化分解。

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Abstract

The present application relates to a kind of photoenergy biological transformation ecological control device, including ecological zone, reef area, the ecological zone is connected with reef area by water outlet pipeline, water pipe joint, ecological zone is suspended and fixed on water surface, reef area is fixed in the bottom of water body below ecological zone, the ecological zone includes solar power supply system, buffer zone, fixed chain, fixed anchor, ecological tank, the reef area is composed of more than one ecological reef.Utilize the oxygen production of photosynthesis of algae, submerged plant in ecological tank, synergistic dispersion device, carry out high-efficiency oxygenation to the polluted aquaculture water, landscape water, eutrophication river, lake etc., evenly spread the water containing high dissolved oxygen, microorganism, algal cell to water body, improve water body self-cleaning capacity, achieve the purpose of purifying water quality, while photoenergy resource utilization, energy saving.
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Description

Technical Field

[0001] This invention relates to an ecological regulation device for photoenergy bioconversion. Background Technology

[0002] For polluted water bodies, such as aquaculture water bodies, landscape water bodies, eutrophic rivers, and lakes, organic matter such as dead algae in the upper layer sinks to the bottom. The degradation of this organic matter consumes dissolved oxygen, causing a gradual decrease in dissolved oxygen in the lower layers. This leads to an oxygen-deficient state in the lower water, resulting in increased release of endogenous pollutants such as phosphorus from sediments. Furthermore, the decomposition of plant and animal remains is difficult, further deteriorating water quality and completely destroying the water body's self-repair function. The key to treating polluted water bodies is increasing dissolved oxygen. However, existing water aeration equipment suffers from low aeration efficiency, high cost, and complex installation. Laying electrical circuits in the water also poses safety hazards. Summary of the Invention

[0003] The purpose of this invention is to address existing problems by providing a photoelectric bioconversion ecological regulation device. This device utilizes algae and submerged plants in an ecological tank to synergistically disperse photosynthetic oxygen production, thereby efficiently oxygenating polluted aquaculture water bodies, landscape water bodies, eutrophic rivers, and lakes. It evenly diffuses water containing high dissolved oxygen, microorganisms, and algal cells into the water body, improving the water body's self-purification capacity and achieving the goal of purifying water quality. At the same time, it utilizes photoelectric energy resources, saving energy.

[0004] This invention is achieved through the following technical solution: A photoelectric bioconversion ecological regulation device includes an ecological zone and a reef zone, connected by a water outlet pipe and a water pipe connector. The ecological zone is suspended and fixed on the water surface, while the reef zone is fixed to the bottom of the water body below the ecological zone. The ecological zone includes a solar power supply system, a buffer zone, a fixed chain, a fixed anchor, and an ecological trough. The solar power supply system includes solar panels, solar support rods, a control switch, and a battery pack. The ecological trough is divided into a submerged plant ecological trough and an algae ecological trough. The ecological trough includes an inlet pipe, a nutrient solution dosing pipe, pump b, a protective net, a dispersion device, a waterproof lamp, biological filler, a level sensor, a water inlet, and a nutrient solution dosing outlet. The biological filler includes biological filler a, biological filler b, and biological filler c. The reef zone includes ecological reefs, a microbial carrier, a diffusion device, and a load-bearing frame. The ecological zone is characterized by being divided into upper and lower parts by a horizontal plane. Above the horizontal plane is a solar-powered ecosystem fixed in the buffer zone, and below the horizontal plane is an ecological trough. Buffer zones are located on both sides of the ecological trough along the water flow. A fixed anchor is connected by a fixed chain and fixed to the bottom of the water body. A pump a is installed in the buffer zone, and pump a is connected to the water inlet pipe and nutrient solution dosing pipe. Floats are fixed to the outer surface of the ecological tank using fixed ropes. Waterproof lights a and b are installed along the support frame inside the ecological tank. Biological packing material a and b are fixed on the horizontal support frame above the ecological tank. Biological packing material c is placed on the water surface inside the ecological tank. The water inlet pipe and nutrient solution dosing pipe are located near the water surface inside the ecological tank. Submerged plants grow... The water inlet pipes and nutrient solution dosing pipes in the submerged plant ecological tank and algae ecological tank are equipped with water inlets and nutrient solution dosing outlets. Each side of the submerged plant ecological tank and algae ecological tank is equipped with a pump b. The pump b is connected to the reef area through a water outlet pipe. The reef area consists of one or more ecological reefs. Microbial solid carriers are pre-placed on the top of the ecological reefs. A load-bearing frame is provided below the ecological reefs. A water outlet pipe is connected to the middle of the top of the ecological reefs. The outlet of the water outlet pipe is vertically aligned with the diffusion device below. The diffusion device is stably fixed on the load-bearing frame.

[0005] Furthermore, submerged plants are planted in the submerged plant ecological tank, the ecological tank is closed on all sides, and the bottom is a groove structure. Algae are pre-placed in the algae ecological tank.

[0006] Furthermore, the water inlet and nutrient solution dispensing port are equipped with liquid level sensors.

[0007] Furthermore, the buffer zone is a triangular solid shape with one end of its edge facing outwards.

[0008] Furthermore, the solar support pole is a hollow structure with electrical wires installed inside, and is made of any one of stainless steel, fiberglass, carbon steel, or PVC.

[0009] Furthermore, the microbial solid carrier is composed of two or more types of materials, including sand, zeolite, diatomaceous earth, activated carbon, rice husk biochar, and porous ceramics.

[0010] Furthermore, the outer ring of the pump b is equipped with a protective net, and the pump b can be placed at any position on any side of the submerged plant ecological tank or the algae ecological tank.

[0011] Furthermore, the ecological reef has a permeable frame structure.

[0012] Furthermore, the bottom of the submerged plant ecological tank and the algae ecological tank is equipped with a dispersion device, and the gas introduced into the dispersion device is any one of O2, CO2, or air.

[0013] Furthermore, the number of solar energy ecosystems is two or more.

[0014] The beneficial effects of this invention are: 1. This photoelectric biological conversion ecological regulation device not only improves the efficiency of photosynthesis by introducing gas into the dispersion device, but also increases the water flow inside the ecological tank, so that the oxygen produced by photosynthesis is evenly dispersed. The high dissolved oxygen water quality accelerates the oxidation and decomposition of dead algae, zooplankton carcasses and feces at the bottom of the ecological tank.

[0015] 2. In this photoelectric biological conversion ecological regulation device, the outlet pipe and the diffusion device are 90° apart. This allows pressurized water containing high dissolved oxygen, microorganisms, and algae cells to collide with the diffusion device and accumulate work. The dissolved oxygen, microorganisms, and algae cells are pushed against each other by the water flow, spreading from the surface to the vertical three-dimensional diffusion. The water passes through the permeable ecological reef and spreads the water containing high dissolved oxygen, microorganisms, and algae cells to the surrounding water bodies, increasing the dissolved oxygen at the bottom of the water body and improving the water body's self-purification capacity.

[0016] 3. This photoelectric bio-conversion ecological regulation device utilizes photoelectric energy to convert it into electrical energy, saving energy and reducing unnecessary circuit laying. Attached Figure Description

[0017] Figure 1 This is a front view of Embodiment 1 of the photoenergy bioconversion ecological regulation device of the present invention.

[0018] Figure 2 This is a top view of Embodiment 1 of the photoenergy bioconversion ecological regulation device of the present invention.

[0019] Figure 3 This is a front view of Embodiment 2 of the photoenergy bioconversion ecological regulation device of the present invention.

[0020] Figure 4 This is a top view of Embodiment 2 of the photoenergy bioconversion ecological regulation device of the present invention.

[0021] Explanation of reference numerals in the attached diagram: 1. Solar panel; 2. Solar support rod; 3. Control switch; 4. Battery pack; 5. Solar power system; 6. Float; 7. Fixing rope; 8. Inlet pipe; 9. Nutrient solution dosing pipe; 10. Buffer zone; 11. Fixing chain; 12. Fixing anchor; 13. Pump b; 14. Protective net; 15. Biological packing material a; 16. Biological packing material b; 17. Biological packing material c; 18. Outlet pipe; 19. Submerged plant; 20. 21. Dispersion device, 22. Ecological reef, 23. Microbial solid carrier, 24. Diffusion device, 25. Support frame, 26. Waterproof lamp a, 27. Waterproof lamp b, 28. Pump a, 29. Water pipe connector, 30. Ecological zone, 31. Reef zone, 32. Ecological tank, 33. Biological filler, 34. Algae, 35. Liquid level sensor, 36. Water inlet, 37. Nutrient solution inlet, 38. Submerged plant ecological tank, 39. Algae ecological tank. Detailed Implementation

[0022] The present invention will be further described below with reference to the accompanying drawings, but this is not intended to limit the invention.

[0023] The photoelectric bioconversion ecological regulation device includes an ecological zone 30 and a reef zone 31. The ecological zone 30 and the reef zone 31 are connected by a water outlet pipe 18 and a water pipe connector 29. The ecological zone 30 is suspended and fixed on the water surface, while the reef zone 31 is fixed to the bottom of the water body below the ecological zone 30. The ecological zone 30 includes a solar power supply system 5, a buffer zone 10, a fixing chain 11, a fixing anchor 12, and an ecological tank 32. The solar power supply system 5 includes a solar panel 1, a solar support rod 2, a control switch 3, and a battery pack 4. The ecological tank 32 is divided into a submerged plant ecological tank 38 and an algae ecological tank 39. The ecological tank 32 includes a water inlet pipe 8, a nutrient solution dosing pipe 9, a pump b13, a protective net 14, a dispersion device 20, a waterproof lamp, and biological... The system includes a packing material 33, a level sensor 35, a water inlet 36, and a nutrient solution inlet 37. The biological packing material 33 includes biological packing material a15, biological packing material b16, and biological packing material c17. The reef area 31 includes ecological reefs 21, microbial carriers 22, a diffusion device 23, and a support frame 24. The ecological area 30 is characterized by being divided into upper and lower parts by a horizontal plane. Above the horizontal plane is a solar-powered ecosystem 5 fixed in a buffer zone 10. Below the horizontal plane is an ecological trough 32, with buffer zones 10 on both sides of the ecological trough 32 flowing with the water. The buffer zones 10 are connected to fixed anchors 12 via fixed chains 11, and the fixed anchors 12 are fixed to the bottom of the water body. A pump a28 is installed in the buffer zone 10. The pump a28 is connected to the water inlet pipe 8 and the nutrient solution inlet 37. The liquid addition pipe 9 is connected to the ecological tank 32. Floats 6 are fixed around the outer surface of the ecological tank 32 using fixing ropes 7. Waterproof lights a26 and b27 are installed along the support 25 inside the ecological tank 32. Biological filler a15 and b16 are fixed on the horizontal support 25 above the ecological tank 32. Biological filler c17 is placed on the water surface inside the ecological tank 32. The water inlet pipe 8 and nutrient solution addition pipe 9 are located near the liquid surface inside the ecological tank 32. The water inlet pipe 8 and nutrient solution addition pipe 9 in the submerged plant ecological tank 38 and algae ecological tank 39 are each equipped with a water inlet 36 and a nutrient solution inlet 37. A pump b13 is installed on one side of each of the submerged plant ecological tank 38 and algae ecological tank 39. The pump b13 is connected to the ecological tank 39 via an outlet pipe 18. The reef areas 31 are connected and each reef area 31 consists of one or more ecological reefs 21. A microbial carrier 22 is pre-placed on top of each ecological reef 21, and a load-bearing frame 24 is provided below each ecological reef 21. A water outlet pipe 18 is connected to the middle of the top of each ecological reef 21. The outlet of the water outlet pipe 18 is vertically aligned with a diffusion device 23 below, and the diffusion device 23 is stably fixed on the load-bearing frame 24. Submerged plants are planted in the submerged plant ecological trough 38. The ecological trough 32 is closed on all sides and has a groove structure at the bottom. Algae 34 is pre-placed in the algae ecological trough 39. Liquid level sensors 35 are provided on the water inlet 36 and the nutrient solution inlet 37. The buffer zone 10 is a triangular solid shape with one end of the edge facing outward to reduce the impact of water flow on the overall structure.The solar support rod 2 is a hollow structure with electrical wires installed inside. It is made of any one of stainless steel, fiberglass, carbon steel, or PVC. The microbial solid carrier 22 is composed of two or more of the following: sand, zeolite, diatomaceous earth, activated carbon, rice husk biochar, and porous ceramics. The pump b13 has a protective net 14 around its outer ring and can be placed at any position on any side of the submerged plant ecological trough 38 or the algae ecological trough 39. The ecological reef 21 has a permeable frame structure. The bottom of the submerged plant ecological trough 38 and the algae ecological trough 39 is equipped with a dispersion device 20, which allows the gas introduced into the dispersion device 20 to be any one of O2, CO2, or air. The number of solar energy ecosystems 5 is two or more.

[0024] Example 1 Specifically, such as Figure 1 , 2 As shown, the photoelectric bioconversion ecological regulation device includes an ecological zone 30 and a reef zone 31. The ecological zone 30 and the reef zone 31 are connected by a water outlet pipe 18 and a water pipe connector 29. The ecological zone 30 is suspended and fixed on the water surface, and the reef zone 31 is fixed at the bottom of the water body below the ecological zone 30.

[0025] Ecological zone 30 is divided into upper and lower parts by a horizontal plane. Above the horizontal plane is a solar power system 5 laid on buffer zone 10, with 4 systems on each side. The solar power system 5 converts solar energy into electrical energy, providing clean energy and avoiding safety hazards caused by electrical wiring. Below the horizontal plane is an ecological trough 32, with buffer zones 10 on both sides of the ecological trough 32 along the water flow. The buffer zones 10 are triangular solid-state shapes with one end facing outwards to reduce the impact of water flow on the overall structure. The buffer zones 10 are connected to fixed anchors 12 by fixed chains 11, and the fixed anchors 12 are fixed to the bottom of the water body. The ecological trough 32 includes a submerged plant ecological trough. 38. An algae ecological tank 39 is enclosed on all sides with a recessed bottom. Floats 6 are fixed to the outer surface of the ecological tank 32 using ropes 7. The combined action of the fixing chains 11 and the floats secures the ecological tank 32 to the water surface. An inlet pipe 8 and a nutrient solution dosing pipe 9 are installed inside the ecological tank 32. A pump a28 pumps water and nutrient solution into the ecological tank 32 through the inlet 36 and nutrient solution dosing port 37. Liquid level sensors 35 on the inlet 36 and nutrient solution dosing port 37 trigger an alarm and disconnect the power to pump a28 when the liquid level approaches the highest point to prevent overflow. The ecological tank 32 is horizontal. Waterproof lights a and b are fixed on the vertical support 25 to provide light for the submerged plants 19 in the submerged plant ecological tank 38 and the algae 34 in the algae ecological tank 39. The oxygen produced promotes the consumption of nutrients in the water and increases dissolved oxygen. Biological packing material a15, which is an elastic packing material, is fixed on the horizontal support 25. Biological packing material c17, which is a suspended packing material, is placed on the water surface in the ecological tank 32. Biological packing material 33 accumulates in-situ microorganisms by attaching a biofilm, which helps to purify the water. Pump b13 pumps the purified water containing high dissolved oxygen, microorganisms, and algae. Water from the cells is introduced into the reef area 31 through the outlet pipe 18 and the water pipe connector 19. The reef area 31 consists of one ecological reef 21. The outlet pipe 18 is at a 90° angle to the diffuser 23. The pressurized water containing high dissolved oxygen, microorganisms and algae cells impacts the diffuser 23 and accumulates work. Dissolved oxygen, microorganisms and algae cells push each other with the water flow, spreading from the surface to the vertical three-dimensional diffusion. It passes through the permeable ecological reef 21 and spreads to all sides, increasing the dissolved oxygen at the bottom of the water body, promoting the decomposition of microorganisms at the bottom of the water body, and improving the self-purification capacity of the water body. The ecological reef 21 contains a microbial solid carrier 22.

[0026] Preferably, the solar support pole 2 is a hollow structure with wires installed inside, and the material is fiberglass.

[0027] Preferably, the microbial solid carrier 22 is composed of sand, zeolite, rice husk biochar, and porous ceramics, and the fixed microorganisms help to purify the water.

[0028] Preferably, the outer ring of the water pump 13 is provided with a protective net 14 to prevent biological filler 33, submerged plant 19 residues, etc. from entering the water pump 13 and causing mechanical failure. The water pump 13 is located above one side of the ecological tank 32.

[0029] Preferably, the gas introduced into the dispersion device 20 is any one of O2, CO2, or air, and the number is 3, thereby increasing the water flow inside the ecological tank 32.

[0030] Example 2 Specifically, such as Figure 3 , 4 As shown, the photoelectric bioconversion ecological regulation device includes an ecological zone 30 and a reef zone 31. The ecological zone 30 and the reef zone 31 are connected by a water outlet pipe 18 and a water pipe connector 29. The ecological zone 30 is suspended and fixed on the water surface, and the reef zone 31 is fixed at the bottom of the water body below the ecological zone 30.

[0031] Ecological zone 30 is divided into upper and lower parts by a horizontal plane. Above the horizontal plane is a solar power system 5 laid on buffer zone 10, with 5 systems on each side. The solar power system 5 converts solar energy into electrical energy, providing clean energy and avoiding safety hazards caused by electrical wiring. Below the horizontal plane is an ecological trough 32, with buffer zones 10 on both sides of the ecological trough 32 along the water flow. The buffer zones 10 are triangular solid-state shapes with one end facing outwards to reduce the impact of water flow on the overall structure. The buffer zones 10 are connected to fixed anchors 12 by fixed chains 11, and the fixed anchors 12 are fixed to the bottom of the water body. The ecological trough 32 includes a submerged plant ecological trough. 38. An algae ecological tank 39 is enclosed on all sides with a recessed bottom. Floats 6 are fixed to the outer surface of the ecological tank 32 using ropes 7. The combined action of the fixing chains 11 and the floats secures the ecological tank 32 to the water surface. An inlet pipe 8 and a nutrient solution dosing pipe 9 are installed inside the ecological tank 32. A pump a28 pumps water and nutrient solution into the ecological tank 32 through the inlet 36 and nutrient solution dosing port 37. Liquid level sensors 35 on the inlet 36 and nutrient solution dosing port 37 trigger an alarm and disconnect the power to pump a28 when the liquid level approaches the highest point to prevent overflow. The ecological tank 32 is horizontal. Waterproof lights a and b are fixed on the vertical support 25 to provide light for the submerged plants 19 in the submerged plant ecological tank 38 and the algae 34 in the algae ecological tank 39. The oxygen produced promotes the consumption of nutrients in the water and increases dissolved oxygen. Biological packing material a15, which is an elastic packing material, is fixed on the horizontal support 25. Biological packing material c17, which is a suspended packing material, is placed on the water surface in the ecological tank 32. Biological packing material 33 accumulates in-situ microorganisms by attaching a biofilm, which helps to purify the water. Pump b13 pumps the purified water containing high dissolved oxygen, microorganisms, and algae. Water from the cells is introduced into the reef area 31 through the outlet pipe 18 and the water pipe connector 19. The reef area 31 consists of one ecological reef 21. The outlet pipe 18 is at a 90° angle to the diffuser 23. The pressurized water containing high dissolved oxygen, microorganisms and algae cells impacts the diffuser 23 and accumulates work. Dissolved oxygen, microorganisms and algae cells push each other with the water flow, spreading from the surface to the vertical three-dimensional diffusion. It passes through the permeable ecological reef 21 and spreads to all sides, increasing the dissolved oxygen at the bottom of the water body, promoting the decomposition of microorganisms at the bottom of the water body, and improving the self-purification capacity of the water body. The ecological reef 21 contains a microbial solid carrier 22.

[0032] Preferably, the solar support pole 2 is a hollow structure with wires installed inside, and is made of stainless steel.

[0033] Preferably, the microbial solid carrier 22 is composed of sand, zeolite, activated carbon, rice husk biochar, and porous ceramics, and the fixed microorganisms help to purify the water.

[0034] Preferably, the outer ring of the water pump 13 is provided with a protective net 14 to prevent biological filler 33, submerged plant 19 residues, etc. from entering the water pump 13 and causing mechanical failure. The water pump 13 is located above one side of the ecological tank 32.

[0035] Preferably, the gas introduced into the dispersion device 20 is any one of O2, CO2, or air, and the number is 3, thereby increasing the water flow inside the ecological tank 32.

[0036] The above are preferred embodiments of the present invention. The embodiments and descriptions in the specification are merely preferred examples of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made in accordance with the present invention shall fall within the protection scope of the present invention.

Claims

1. A photoelectric bioconversion ecological regulation device, comprising an ecological zone (30) and a reef zone (31), wherein the ecological zone (30) and the reef zone (31) are connected by a water outlet pipe (18) and a water pipe connector (29), the ecological zone (30) is suspended and fixed on the water surface, and the reef zone (31) is fixed at the bottom of the water body below the ecological zone (30), wherein the ecological zone (30) comprises a solar power supply system (5), a buffer zone (10), a fixed chain (11), a fixed anchor (12), and an ecological trough (32), wherein the solar power supply system (5) comprises a solar panel (1), a solar support rod (2), a control switch (3), and a battery pack (4), wherein the ecological zone (30 ... rod (3), and a battery pack (4), wherein the ecological zone (30) comprises a solar panel (1), a solar support rod (2), a control rod (3), and a battery pack (4), wherein the ecological The tank (32) is divided into a submerged plant ecological tank (38) and an algae ecological tank (39). The ecological tank (32) includes an inlet pipe (8), a nutrient solution dosing pipe (9), a pump b (13), a protective net (14), a dispersion device (20), a waterproof lamp, biological filler (33), a liquid level sensor (35), an inlet (36), and a nutrient solution dosing port (37). The biological filler (33) includes biological filler a (15), biological filler b (16), and biological filler c (17). The reef area (31) includes ecological reefs (21), microbial carriers (22), a diffusion device (23), and a support frame (24). Its characteristic is that... The ecological zone (30) is divided into upper and lower parts by the horizontal plane. Above the horizontal plane is a solar energy ecosystem (5) fixed in the buffer zone (10). Below the horizontal plane is an ecological tank (32). Buffer zones (10) are set on both sides of the ecological tank (32) with the water flow. The buffer zones (10) are connected to fixed anchors (12) by fixed chains (11). The fixed anchors (12) are fixed to the bottom of the water body. Pump a (28) is installed in the buffer zone (10). Pump a (28) is connected to the water inlet pipe (8) and the nutrient solution dosing pipe (9). Floats (6) are fixed around the outer surface of the ecological tank (32) by fixed ropes (7). Waterproof lamps a (26) and b (27) are installed along the support (25) inside the ecological tank (32). Biological filler a (15) and b (16) are fixed on the horizontal support (25) above the ecological tank (32). Biological filler c is placed on the water surface inside the ecological tank (32). (17) The water inlet pipe (8) and nutrient solution dosing pipe (9) are located near the liquid surface in the ecological tank (32). The water inlet pipe (8) and nutrient solution dosing pipe (9) in the submerged plant ecological tank (38) and algae ecological tank (39) are all equipped with water inlets (36) and nutrient solution dosing inlets (37). A pump b (13) is provided on one side of the submerged plant ecological tank (38) and algae ecological tank (39). The pump b (13) is connected to the water outlet pipe (18). It is connected to the reef area (31), which is composed of one or more ecological reefs (21). A microbial solid carrier (22) is pre-placed above the ecological reef (21), and a load-bearing frame (24) is provided below the ecological reef (21). A water outlet pipe (18) is connected to the middle of the top of the ecological reef (21). The outlet of the water outlet pipe (18) is vertically facing the diffusion device (23) below. The diffusion device (23) is stably fixed on the load-bearing frame (24).

2. The photoenergy bioconversion ecological regulation device according to claim 1, characterized in that: Submerged plants are planted in the submerged plant ecological trough (38). The ecological trough (32) is closed on all sides and has a groove structure at the bottom. Algae (34) are pre-placed in the algae ecological trough (39).

3. The photoenergy bioconversion ecological regulation device according to claim 1, characterized in that: The water inlet (36) and nutrient solution dispensing inlet (37) are equipped with liquid level sensors (35).

4. The photoenergy bioconversion ecological regulation device according to claim 1, characterized in that: The buffer zone (10) is a triangular solid shape with one end of its edge facing outward.

5. The photoenergy bioconversion ecological regulation device according to claim 1, characterized in that: The solar support pole (2) is a hollow structure with wires installed inside. The material is any one of stainless steel, fiberglass, carbon steel, or PVC.

6. The photoenergy bioconversion ecological regulation device according to claim 1, characterized in that: The microbial solid carrier (22) is composed of two or more types of materials, including sand, zeolite, diatomaceous earth, activated carbon, rice husk biochar, and porous ceramics.

7. The photoenergy bioconversion ecological regulation device according to claim 1, characterized in that: The outer ring of the pump b (13) is provided with a protective net (14), and the pump b (13) can be placed at any position on either side of the submerged plant ecological tank (38) or the algae ecological tank (39).

8. The photoenergy bioconversion ecological regulation device according to claim 1, characterized in that: The ecological reef (21) is a permeable frame structure.

9. The photoenergy bioconversion ecological regulation device according to claim 1, characterized in that: The bottom of the submerged plant ecological tank (38) and the algae ecological tank (39) is equipped with a dispersion device (20), and the gas introduced into the dispersion device (20) is any one of O2, CO2 or air.

10. The photoenergy bioconversion ecological regulation device according to claim 1, characterized in that: The number of solar energy ecosystems (5) is more than two.

Citation Information

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