Equipment-level carbon accounting device for power generation enterprise
Through the extraction, temperature difference compensation and analysis components of equipment-level carbon accounting devices of power generation enterprises, the problems of large detection errors and unintuitive results are solved, and the accuracy and convenience of carbon accounting are achieved.
Patent Information
- Application Number
- CN202510465006.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2025-07-29
AI Technical Summary
During the detection process, the existing carbon accounting devices have large detection errors due to gas heat, and the accounting results are not intuitive enough, which wastes manpower.
A equipment-level carbon accounting device for power generation enterprises is designed, including extraction components, temperature difference compensation components, detection components and analysis components. Through extraction components, exhaust gas is introduced into the detection box, the temperature difference compensation components reduce the gas temperature, the detection components detect gas composition, analyze components to calculate carbon content and display the results.
It realizes the accuracy and intuitiveness of carbon accounting results, simplifies the assembly and maintenance of equipment, and reduces labor waste.
Smart Images

Figure CN120385791A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of carbon accounting, and specifically to a device-level carbon accounting device for power generation enterprises. Background Art
[0002] Fossil fuels such as coal, oil, and natural gas still play an important role in the world's primary energy consumption. As of 2018, the world's major energy sources included oil (34%), coal (27%), and natural gas (24%). In 2022, a report by the International Energy Agency showed that global coal consumption would increase. The use of fossil energy will inevitably bring extreme carbon emissions;
[0003] Carbon emissions generally refer to the emissions of greenhouse gases (such as CO2, CH4, etc.). The emissions of greenhouse gases will have a great impact on the climate and ecosystem. In order to limit the carbon emissions brought about by the combustion of fossil fuels, new energy power generation based on renewable energy such as photovoltaic power generation, hydropower generation, and biomass power generation has gradually been put on the agenda;
[0004] Existing accounting devices directly conduct detections. During the detections, a large amount of heat in the gas will lead to large detection errors. At the same time, the accounting results are not intuitive enough and require personnel to calculate again, wasting manpower. Therefore, we designed a device-level carbon accounting device for power generation enterprises. Summary of the Invention
[0005] To achieve the above objectives, the present invention is realized through the following technical solutions: A device-level carbon accounting device for power generation enterprises, comprising: a base, a bracket, and a carbon accounting structure; the carbon accounting structure is installed on the bracket, and the bracket is installed on the base;
[0006] The carbon accounting structure includes: an extraction component, a temperature difference compensation component, a detection component, and an analysis component;
[0007] The extraction component is installed on the bracket, the temperature difference compensation component is installed on the extraction component, the detection component is installed on the extraction component, and the analysis component is installed on the extraction component;
[0008] The extraction component includes: a solenoid valve, an extraction pipeline, an air pump, a detection valve, and a detection box;
[0009] The detection box is installed on the base, the extraction pipeline is installed on the bracket and is connected to the detection box, the solenoid valve is installed on the extraction pipeline, the detection valve is installed on the extraction pipeline, the air pump is installed on the bracket and is connected to the extraction pipeline.
[0010] Preferably, the detection box is provided with a sealed exhaust port.
[0011] Preferably, the temperature difference compensation component includes: a condensation box, a condensation pipe, a temperature sensor, and a controller;
[0012] The condensation box is installed on the bracket, the condensation pipe is sleeved on the extraction pipe and connected to the condensation box, the temperature sensor is installed inside the pipe, and the controller is installed on the bracket.
[0013] Preferably, a support block is provided at the lower end of the condensation pipe.
[0014] Preferably, the detection assembly includes: a spray head, a connecting pipe, and a treatment liquid tank;
[0015] The treatment liquid tank is installed on the base, the connecting pipe is installed on the treatment liquid tank, the spray head is installed inside the detection box and connected to the connecting pipe.
[0016] Preferably, a sealed drain opening is provided inside the detection box.
[0017] Preferably, the analysis assembly includes: a protective box, a processor, a gas pressure detector, and a display;
[0018] The protective box is installed on the base, the processor is installed inside the protective box, the gas pressure detector is installed inside the detection box, and the display is installed on the protective box.
[0019] Beneficial effects
[0020] The present invention provides a device-level carbon accounting device for power generation enterprises. Compared with existing technical means, it has the following beneficial effects:
[0021] The present invention is provided with a carbon accounting structure. Through the mutual cooperation of the extraction assembly, the temperature difference compensation assembly, the detection assembly and the analysis assembly, the result of carbon accounting can be obtained more simply and accurately. At the same time, the structure is simple, which is convenient for personnel to assemble, disassemble and repair. At the same time, the structure is more intuitive, which is convenient for personnel to record and account. Description of the drawings
[0022] Figure 1 It is a front view structural schematic diagram of a device-level carbon accounting device for power generation enterprises of the present invention.
[0023] Figure 2 It is a sectional view structural schematic diagram of a device-level carbon accounting device for power generation enterprises of the present invention.
[0024] In the figure: 1, base; 2, bracket; 3, solenoid valve; 4, extraction pipe; 5, air pump; 6, detection valve; 7, detection box; 8, condensation box; 9, condensation pipe; 10, temperature sensor; 11, controller; 12, spray head; 13, connecting pipe; 14, treatment liquid tank; 15, protective box; 16, processor; 17, gas pressure detector; 18, display. Detailed implementation manners
[0025] Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0026] Please refer to Figure 1-2 , the present invention provides a technical solution.
[0027] Embodiment 1:
[0028] Please refer to the appendix Figure 1-2 , in the specific implementation process: a device-level carbon accounting device for power generation enterprises
[0029] , including: a base 1, a bracket 2, and a carbon accounting structure; the carbon accounting structure is installed on the bracket 2, and the bracket 2 is installed on the base 1;
[0030] The carbon accounting structure includes: an extraction component, a temperature difference compensation component, a detection component, and an analysis component;
[0031] The extraction component is installed on the bracket 2, the temperature difference compensation component is installed on the extraction component, the detection component is installed on the extraction component, and the analysis component is installed on the extraction component;
[0032] The extraction component includes: a solenoid valve 3, an extraction pipeline 4, an air pump 5, a detection valve 6, and a detection box 7;
[0033] The detection box 7 is installed on the base 1, the extraction pipeline 4 is installed on the bracket 2 and is connected to the detection box 7, the solenoid valve 3 is installed on the extraction pipeline 4, the detection valve 6 is installed on the extraction pipeline 4, and the air pump 5 is installed on the bracket 2 and is connected to the extraction pipeline 4.
[0034] It should be noted that the extraction pipeline 4 is connected to the power generation equipment, and the solenoid valve 3 installed on the extraction pipeline 4 is controlled to start, so as to start the air pump 5 to introduce the tail gas generated by the power generation equipment into the extraction pipeline 4, and enter the detection box 7 through the extraction pipeline 4. During the process of gas flow, the volume of the gas entering the detection box 7 is detected through the detection valve 6, which is convenient for subsequent detection.
[0035] As a preferred solution, further, the detection box 7 is provided with a sealed exhaust port.
[0036] It should be noted that the detection box 7 is provided with a sealed exhaust port, which is convenient for exhausting the detected gas in the detection box 7, making the detection result more accurate.
[0037] As a preferred solution, further, the temperature difference compensation component includes: a condensation box 8, a condensation pipe 9, a temperature sensor 10, and a controller 11;
[0038] The condensation box 8 is installed on the bracket 2. The condensation pipe 9 is sleeved on the extraction pipe 4 and is connected to the condensation box 8. The temperature sensor 10 is installed inside the pipe, and the controller 11 is installed on the bracket 2.
[0039] It should be noted that since the exhaust gas of the power generation equipment has a certain amount of heat, direct detection will result in inaccurate data. The temperature of the gas is detected by the temperature sensor 10 installed inside the extraction pipe 4, and at the same time, the detected data is transmitted into the controller 11. The controller 11 starts the operation of the condensation box 8 installed on the bracket 2, so that the condensation pipe 9 sleeved on the extraction pipe 4 cools down the gas, thereby making the detection result more accurate.
[0040] As a preferred solution, further, a support block is provided at the lower end of the condensation pipe 9.
[0041] It should be noted that a support block is provided at the lower end of the condensation pipe 9, which effectively strengthens the support force and protects the condensation pipe 9.
[0042] As a preferred solution, further, the detection assembly includes: a spray head 12, a connecting pipe 13, and a treatment liquid tank 14;
[0043] The treatment liquid tank 14 is installed on the base 1, the connecting pipe 13 is installed on the treatment liquid tank 14, and the spray head 12 is installed inside the detection box 7 and is connected to the connecting pipe 13.
[0044] It should be noted that carbon accounting mainly detects the carbon content in the exhaust gas, generally mostly carbon monoxide and carbon dioxide. Therefore, the accounting method of this equipment is to treat and adsorb all the carbon-containing gases in the exhaust gas. The liquid in the treatment liquid tank 14 installed on the base 1 is supplied to the nozzle through the connecting tank, and the treatment liquid is evenly sprayed into the exhaust gas through the nozzle, so that all the carbon-containing gases are absorbed.
[0045] As a preferred solution, further, a sealed drain port is provided inside the detection box 7.
[0046] It should be noted that a sealed drain port is provided inside the detection box 7, which is convenient for discharging the internal treatment liquid and ensuring the accuracy of the next test result.
[0047] As a preferred solution, further, the analysis assembly includes: a protection box 15, a processor 16, a gas pressure detector 17, and a display 18;
[0048] The protection box 15 is installed on the base 1, the processor 16 is installed inside the protection box 15, the gas pressure detector 17 is installed inside the detection box 7, and the display 18 is installed on the protection box 15.
[0049] It should be noted that under the action of the detection component, the carbon-containing gas will undergo a chemical reaction, resulting in a reduction in the gas, which will cause a change in the air pressure in the detection box 7. Therefore, the air pressure detector 17 installed in the detection box 7 detects the change in the air pressure in the detection box 7 in real time, and transmits the signal to the processor 16 installed in the protection box 15 on the base 1 for analysis and processing, so as to obtain the carbon content in the exhaust gas. At the same time, the result is displayed on the display 18 on the protection box 15, which is convenient for personnel to observe and record.
[0050] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An equipment-level carbon accounting device for power generation enterprises, comprising: Base (1), bracket (2), and carbon accounting structure; The carbon accounting structure is installed on the bracket (2), and the bracket (2) is installed on the base (1); The carbon accounting structure includes: a pumping component, a temperature difference compensation component, a detection component, and an analysis component; Characterized in that the pumping component is installed on the bracket (2), the temperature difference compensation component is installed on the pumping component, the detection component is installed on the pumping component, and the analysis component is installed on the pumping component; The pumping component includes: a solenoid valve (3), a pumping pipe (4), an air pump (5), a detection valve (6), and a detection box (7); The detection box (7) is installed on the base (1), the pumping pipe (4) is installed on the bracket (2) and is connected to the detection box (7), the solenoid valve (3) is installed on the pumping pipe (4), the detection valve (6) is installed on the pumping pipe (4), and the air pump (5) is installed on the bracket (2) and is connected to the pumping pipe (4).
2. The device for equipment-level carbon accounting of a power generation enterprise according to claim 1, wherein The detection box (7) is provided with a sealed exhaust port.
3. The device for equipment-level carbon accounting of a power generation enterprise according to claim 1, wherein, The temperature difference compensation component includes: a condensation box (8), a condensation pipe (9), a temperature sensor (10), and a controller (11); The condensation box (8) is installed on the bracket (2), the condensation pipe (9) is sleeved on the pumping pipe (4) and is connected to the condensation box (8), the temperature sensor (10) is installed inside the pipe, and the controller (11) is installed on the bracket (2).
4. The device for equipment-level carbon accounting of a power generation enterprise according to claim 1, wherein, A support block is provided at the lower end of the condensation pipe (9).
5. The device for equipment-level carbon accounting of a power generation enterprise according to claim 1, wherein The detection component includes: a sprinkler head (12), a connecting pipe (13), and a treatment liquid tank (14); The treatment liquid tank (14) is installed on the base (1), the connecting pipe (13) is installed on the treatment liquid tank (14), and the sprinkler head (12) is installed inside the detection box (7) and is connected to the connecting pipe (13).
6. The device for equipment-level carbon accounting of a power generation enterprise according to claim 1, wherein, A sealed drain port is provided inside the detection box (7).
7. The device-level carbon accounting device for power generation enterprises according to claim 1, wherein, The analysis component includes: a protection box (15), a processor (16), a pressure detector (17), and a display (18); The protection box (15) is installed on the base (1), the processor (16) is installed inside the protection box (15), the pressure detector (17) is installed inside the detection box (7), and the display (18) is installed on the protection box (15).