Energy supply device of microbial soil and underground water remediation equipment

By using solar photovoltaic panels and photothermal panels in microbial soil groundwater repair equipment, combined with angle adjustment brackets and controllers, the problems of high energy consumption and large carbon dioxide emissions during the heating process are solved, and clean and continuous energy supply and cost reduction are achieved.

CN120034087APending Publication Date: 2025-05-23CHINA CONSTRUCTION EIGHTH BUREAU ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD +1
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Patent Information

Application Number
CN202510196020.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2025-05-23

AI Technical Summary

Technical Problem

Existing microbial soil groundwater repair equipment consumes a lot of energy during heating, resulting in large carbon dioxide emissions and high energy use costs.

Method used

Design an energy supply device for groundwater restoration equipment for microbial soil, using a combination of containers, spreading wings, solar photovoltaic panels and solar photothermal panels, using solar energy to supply power and heat, and maximize solar energy utilization through angle adjustment brackets and controllers.

Benefits of technology

Without generating carbon dioxide emissions, the continuous supply of electrical and thermal energy required for groundwater restoration equipment in microbial soils has been achieved, reducing the cost of energy use and improving energy utilization efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to an energy supply device for microbial soil and groundwater remediation equipment, which is used for storing the microbial soil and groundwater remediation equipment and providing energy required by the microbial soil and groundwater remediation equipment. The energy supply device comprises a container, a wing, a solar photovoltaic panel and a solar photo-thermal panel; the two sides of the container are rotationally connected with the two unfolding wings. The solar photovoltaic panel is mounted at the top of the container; on the basis that the container is used for external protection of the microbial soil and underground water remediation equipment, the solar photovoltaic panel for power supply and the solar photo-thermal panel for heat supply are arranged outside the microbial soil and underground water remediation equipment, and continuous supply of electric energy and heat energy needed by the microbial soil and underground water remediation equipment is achieved under the condition that carbon dioxide emission is not generated; the technical problems that a large amount of energy needs to be consumed, a large amount of carbon dioxide is generated and the energy use cost is high when traditional microbial soil groundwater remediation equipment is continuously used are solved.
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Description

Technical Field

[0001] The invention relates to the technical field of bioremediation, and in particular to an energy supply device for microbial soil and groundwater remediation equipment. Background Art

[0002] Bioremediation is a promising technology for transforming or degrading toxic chemicals in different environmental media. Compared with physical and chemical methods, bioremediation is safe, economical, and environmentally friendly, and has become one of the current research hotspots. Thermally enhanced bioremediation is a new concept proposed in recent years. This technology combines heat treatment with bioremediation to solve the problems of low efficiency and long duration of bioremediation.

[0003] Although thermally enhanced microbial remediation technology has obvious technical advantages, it still faces many challenges in achieving in situ warming of the site, such as: 1. Consumption of large amounts of energy: Conventional heating technology requires a large amount of gas or diesel to heat the soil, which will lead to a large amount of carbon emissions and energy waste; 2. Large carbon dioxide emissions: Due to the use of a large amount of gas or diesel, in situ heating technology will produce a large amount of carbon dioxide emissions, which will have adverse effects on the environment; 3. High cost: In situ heating technology requires a large amount of energy and adsorbents, resulting in high costs. Summary of the invention

[0004] The purpose of the present invention is to overcome the defects of the prior art and provide an energy supply device for microbial soil and groundwater remediation equipment to solve the problems in the prior art that microbial soil and groundwater remediation equipment consumes a lot of energy, emits large amounts of carbon dioxide and has high energy use costs.

[0005] To achieve the above-mentioned purpose, the present invention provides an energy supply device for microbial soil groundwater remediation equipment and a preparation method thereof, which is used to store microbial soil groundwater remediation equipment and provide energy required by the microbial soil groundwater remediation equipment; the energy supply device includes a container, a wing, a solar photovoltaic panel and a solar thermal panel;

[0006] The wings are rotatably connected to two sides of the container;

[0007] The solar photovoltaic panel is installed on the top of the container;

[0008] The solar thermal panel is installed on a side surface of the wing away from the container.

[0009] By adopting this technical solution, based on the use of containers for external protection of microbial soil and groundwater remediation equipment, solar photovoltaic panels for power supply and solar thermal panels for heating are set on the outside of containers to fully utilize solar energy. Without generating carbon dioxide emissions, the continuous supply of electricity and heat energy required for microbial soil and groundwater remediation equipment can be achieved, solving the technical problems that the continuous use of traditional microbial soil and groundwater remediation equipment requires large amounts of energy consumption, generates a large amount of carbon dioxide, and has high energy usage costs.

[0010] Furthermore, the energy supply device also includes angle adjustment brackets respectively arranged between the top of the container and the solar photovoltaic panel and between the wing and the solar thermal panel;

[0011] The angle adjustment bracket disposed between the top of the container and the solar photovoltaic panel is used to adjust the angle of the solar photovoltaic panel on the top of the container;

[0012] The angle adjustment bracket arranged between the wing and the solar thermal panel is used to adjust the angle of the solar thermal panel on the wing.

[0013] By adopting this technical solution, the angle adjustment bracket is used as the connecting part of the solar thermal panel and the solar photovoltaic panel, so that the solar photovoltaic panel and the solar thermal panel have the ability to adjust the angle. By adjusting the supporting angle of the angle adjustment bracket, it can adapt to the direct angle of the sun to increase the utilization rate of solar energy, thereby maintaining the power and heat supply of the microbial soil groundwater remediation equipment.

[0014] Furthermore, the energy supply device also includes a controller and a battery;

[0015] The controller controls the support angle of the angle adjustment bracket according to the direct angle of the sun;

[0016] The storage battery stores the electric energy generated by the solar photovoltaic panel and provides the electric energy required by the angle adjustment bracket.

[0017] By adopting this technical solution, a controller is set to realize the automation of angle adjustment bracket adjustment, which provides the prerequisite for solar photovoltaic panels and solar thermal panels to maintain direct sunlight; the battery can store surplus electricity, which can meet other electricity needs in addition to the electricity needs of microbial soil and groundwater remediation equipment.

[0018] Furthermore, the energy supply device further comprises a first electric telescopic rod disposed between the container and the wings, the first electric telescopic rod being electrically connected to the controller and the battery respectively;

[0019] The two ends of the first electric telescopic rod are rotatably connected to the container and the wing respectively, and the wing is driven to rotate relative to the container through the telescopic control of the first electric telescopic rod.

[0020] By adopting this technical solution, the setting of the first electric telescopic rod makes the adjustment of the wing spread automated in coordination with the controller. At the same time, the solar thermal panel can be roughly adjusted to adapt to the direct sunlight angle by adjusting the wing spread, and then the angle of the solar thermal panel can be fine-tuned through the angle adjustment bracket, so as to ensure the maximum utilization of solar energy.

[0021] Further, the angle adjustment bracket includes a bottom frame, a second electric telescopic rod and a top frame;

[0022] wherein the top frame is rotatably connected to the bottom frame;

[0023] Both ends of the second electric telescopic rod are rotatably connected to the bottom frame and the top frame respectively, and the top frame is driven to rotate relative to the bottom frame through the telescopic control of the second electric telescopic rod.

[0024] By adopting this technical solution, after the second electric telescopic rod is extended and retracted, it can drive the top frame to rotate on the bottom frame, so as to achieve the purpose of changing the supporting angle.

[0025] Furthermore, when the wing is rotated to be flush with the top surface of the container, the orientation of the solar thermal panel on the wing is consistent with the orientation of the solar photovoltaic panel on the container.

[0026] By adopting this technical solution, the initial angles of the solar photovoltaic panels and the solar thermal panels are the same when they are in the same plane, so that the angle of the base can be controlled to adjust the bracket to adapt to the direct angle of the sun, thereby reducing the control difficulty.

[0027] Compared with the prior art, the present invention has the following beneficial effects:

[0028] 1. Based on the use of containers for external protection of microbial soil and groundwater remediation equipment, solar photovoltaic panels for power supply and solar thermal panels for heating are set on the outside to make full use of solar energy. Without generating carbon dioxide emissions, the continuous supply of electricity and heat energy required for microbial soil and groundwater remediation equipment can be achieved, solving the technical problems that the continuous use of traditional microbial soil and groundwater remediation equipment requires large amounts of energy consumption, generates a large amount of carbon dioxide, and has high energy use costs.

[0029] 2. Solar photovoltaic panels and solar thermal panels are installed through angle adjustment brackets. The angle adjustment brackets can be collectively controlled by a controller to automatically adjust the angles of solar photovoltaic panels and solar thermal panels to suit the direct angle of the sun, thereby maximizing the use of solar energy.

[0030] 3. A battery connected to the solar photovoltaic panel is provided. In addition to being directly used in the soil and groundwater remediation equipment, the electricity generated by the solar photovoltaic panel can also be stored for continuous supply of electricity during periods when solar energy is not abundant, so as to realize the all-day operation of the equipment and supply power to other electrical appliances. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] Figure 1 This is a three-dimensional schematic diagram of the energy supply device of the microbial soil groundwater remediation equipment in the present invention;

[0032] Figure 2 This is a schematic diagram of the angle adjustment bracket of the energy supply device of the microbial soil groundwater remediation equipment in the present invention.

[0033] Explanation of the reference numerals: 1. container; 2. wings; 3. solar photovoltaic panel; 4. solar thermal panel; 5. bottom frame; 6. adapter; 7. second electric telescopic rod; 8. top frame; 9. connector. DETAILED DESCRIPTION

[0034] The present invention will be further described below in conjunction with the accompanying drawings and specific embodiments.

[0035] Please see attached Figure 1 The present invention provides an energy supply device for microbial soil and groundwater remediation equipment, which is used to store microbial soil and groundwater remediation equipment and provide energy required by the microbial soil and groundwater remediation equipment; the energy supply device includes a container 1, a wing 2, a solar photovoltaic panel 3 and a solar thermal panel 4; wherein the wing 2 is rotatably connected to two sides of the container 1; the solar photovoltaic panel 3 is installed on the top of the container 1; the solar thermal panel 4 is installed on the side surface of the wing 2 away from the container 1; based on the use of the container 1 for external protection of the microbial soil and groundwater remediation equipment, a solar photovoltaic panel 3 for power supply and a solar thermal panel 4 for heating are arranged on the outside of the container 1, so as to make full use of solar energy and realize the continuous supply of electric energy and thermal energy required by the microbial soil and groundwater remediation equipment without generating carbon dioxide emissions, so as to solve the technical problems that the continuous use of traditional microbial soil and groundwater remediation equipment requires a large amount of energy consumption, generates a large amount of carbon dioxide and has high energy use costs.

[0036] Furthermore, the energy supply device also includes angle adjustment brackets respectively arranged between the top of the container 1 and the solar photovoltaic panel 3 and between the wing 2 and the solar thermal panel 4; the angle adjustment bracket arranged between the top of the container 1 and the solar photovoltaic panel 3 is used to adjust the angle of the solar photovoltaic panel 3 on the top of the container 1; the angle adjustment bracket arranged between the wing 2 and the solar thermal panel 4 is used to adjust the angle of the solar thermal panel 4 on the wing 2; the angle adjustment bracket is used as a connecting piece between the solar photovoltaic panel 4 and the solar photovoltaic panel 3, so that the solar photovoltaic panel 3 and the solar thermal panel 4 have the ability of angle adjustment, and by adjusting the supporting angle of the angle adjustment bracket, it can adapt to the direct angle of the sun to increase the utilization rate of solar energy, thereby maintaining the power and heat supply of the microbial soil groundwater remediation equipment.

[0037] For further information, please see the attached Figure 2 The angle adjustment bracket includes a bottom frame 5, an adapter seat 6, a second electric telescopic rod 7, a top frame 8 and a connector 9; wherein the top frame 8 is rotatably connected to the bottom frame 5 through the adapter seat 6; the two ends of the second electric telescopic rod 7 are rotatably connected to the bottom frame 5 and the top frame 8 respectively, and the top frame 8 is driven to rotate relative to the bottom frame 5 through the telescopic control of the second electric telescopic rod 7; the connector 9 is connected to the top frame 8, and is used to provide a connection position for the solar photovoltaic panel 3 or the solar thermal panel 4;

[0038] Specifically, when installing the solar photovoltaic panel 3, first fix the base frame 5 of the angle adjustment bracket on the top of the container 1, and then connect the solar photovoltaic panel 3 to the top frame 8 on the base frame 5 through the connector 9 to complete the installation of the solar photovoltaic panel 3; when installing the solar thermal panel 4, first fix the base frame 5 of the angle adjustment bracket on the wing 2, and then connect the solar thermal panel 4 to the top frame 8 on the base frame 5 through the connector 9 to complete the installation of the solar thermal panel 4.

[0039] Furthermore, the energy supply device also includes a first electric telescopic rod arranged between the container 1 and the wing 2; both ends of the first electric telescopic rod are rotatably connected to the container 1 and the wing 2 respectively, and the wing 2 is driven to rotate relative to the container 1 through the telescopic control of the first electric telescopic rod; the setting of the first electric telescopic rod makes the adjustment of the wing 2 automatic, and at the same time, the solar thermal panel 4 can be roughly adjusted to adapt to the direct sunlight angle by adjusting the wing 2, and then the angle of the solar thermal panel 4 can be finely adjusted through the angle adjustment bracket, so as to ensure the maximum utilization of solar energy.

[0040] Furthermore, the energy supply device also includes a controller and a battery; the controller controls the second electric telescopic rod 7 in the angle adjustment bracket to change its support angle according to the direct sunlight angle, and controls the first electric telescopic rod to change the unfolding angle of the wing 2; the battery stores the electric energy generated by the solar photovoltaic panel 3, and provides the required electric energy for the first electric telescopic rod and the second electric telescopic rod; realizes the automation of adjustment of the solar photovoltaic panel 3, the solar thermal panel 4 and the wing 2, and provides a basis for realizing that the solar photovoltaic panel 3 and the solar thermal panel 4 maintain direct sunlight; the battery can realize the storage of surplus electricity, and in addition to the electricity demand of the microbial soil groundwater remediation equipment, it can also meet other electricity demands.

[0041] Furthermore, in order to maximize the utilization rate of solar energy, the controller can be configured with an intelligent control terminal to automatically retrieve the latitude and longitude, weather and climate conditions of the equipment according to different application scenarios and locations, and use this to deduce the direct angle of the sun every day, and then use this to control the angles of the solar photovoltaic panels 3 and the solar thermal panels 4 to maximize the utilization rate of solar energy.

[0042] Furthermore, when the wing 2 rotates to be level with the top surface of the container 1, the orientation of the solar thermal panel 4 on the wing 2 is consistent with the orientation of the solar photovoltaic panel 3 on the container 1; this makes the solar photovoltaic panel 3 and the solar thermal panel 4 have the same initial angle when they are in the same plane, so that the angle of the base can be controlled to adjust the bracket to adapt to the direct angle of the sun, thereby reducing the control difficulty.

[0043] The present invention is described in detail above in conjunction with the embodiments of the accompanying drawings. A person skilled in the art can make various variations of the present invention according to the above description. Therefore, certain details in the embodiments should not constitute a limitation of the present invention, and the scope of protection of the present invention shall be defined by the scope of the attached claims.

Claims

1. A microbial soil groundwater remediation equipment energy supply device, used to store microbial soil groundwater remediation equipment and provide the energy required by the microbial soil groundwater remediation equipment; characterized in that: The energy supply device includes a container, a wing, a solar photovoltaic panel and a solar thermal panel; The wings are rotatably connected to two sides of the container; The solar photovoltaic panel is installed on the top of the container; The solar thermal panel is installed on a side surface of the wing away from the container.

2. The energy supply device for microbial soil and groundwater remediation equipment according to claim 1, characterized in that: The energy supply device also includes angle adjustment brackets respectively arranged between the top of the container and the solar photovoltaic panel and between the wing and the solar thermal panel; The angle adjustment bracket disposed between the top of the container and the solar photovoltaic panel is used to adjust the angle of the solar photovoltaic panel on the top of the container; The angle adjustment bracket arranged between the wing and the solar thermal panel is used to adjust the angle of the solar thermal panel on the wing.

3. The energy supply device for microbial soil and groundwater remediation equipment according to claim 2, characterized in that: The energy supply device also includes a controller and a battery; The controller controls the support angle of the angle adjustment bracket according to the direct angle of the sun; The storage battery stores the electric energy generated by the solar photovoltaic panel and provides the electric energy required by the angle adjustment bracket.

4. The energy supply device for microbial soil and groundwater remediation equipment according to claim 3 is characterized by: The energy supply device further comprises a first electric telescopic rod disposed between the container and the wings, the first electric telescopic rod being electrically connected to the controller and the battery respectively; The two ends of the first electric telescopic rod are rotatably connected to the container and the wing respectively, and the wing is driven to rotate relative to the container through the telescopic control of the first electric telescopic rod.

5. The energy supply device for microbial soil and groundwater remediation equipment according to claim 2, characterized in that: The angle adjustment bracket comprises a bottom frame, a second electric telescopic rod and a top frame; wherein the top frame is rotatably connected to the bottom frame; Both ends of the second electric telescopic rod are rotatably connected to the bottom frame and the top frame respectively, and the top frame is driven to rotate relative to the bottom frame through the telescopic control of the second electric telescopic rod.

6. The energy supply device for microbial soil and groundwater remediation equipment according to claim 1, characterized in that: When the wing is rotated to be flush with the top surface of the container, the orientation of the solar thermal panel on the wing is consistent with the orientation of the solar photovoltaic panel on the container.