一种新型节能温室气体监测站房
By adopting an integrated steel structure and photovoltaic power generation system in the greenhouse gas monitoring station, combined with intelligent control and real-time monitoring, the problems of energy conservation, emission reduction and safety hazards in the existing station have been solved, and efficient energy management and safety assurance have been achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- BEIJING MUNICIPAL ENVIRONMENTAL MONITORING CENT
- Filing Date
- 2025-06-17
- Publication Date
- 2026-07-17
AI Technical Summary
Existing modular greenhouse gas monitoring stations are inadequate in terms of energy conservation and emission reduction, and lack functional zoning, resulting in high energy consumption, poor insulation, and failure to meet urban energy conservation and carbon reduction requirements.
A novel energy-saving greenhouse gas monitoring station is designed, featuring an integrated steel structure. The interior is divided into a cylinder room, a work area, and a buffer room. It is equipped with a photovoltaic power generation system, a central controller, a standard gas leak detection device, and smart meters. It optimizes energy use by utilizing clean energy and reduces mains power consumption by combining intelligent temperature control and real-time monitoring systems.
It has achieved energy conservation and emission reduction, reduced energy consumption, improved work efficiency, reduced the workload of operation and maintenance personnel, and reduced safety hazards through real-time monitoring and alarm systems.
Smart Images

Figure CN224514847U_ABST
Abstract
Claims
1. A new energy-saving greenhouse gas monitoring station building, comprising a station building main body, characterized in that: The main body of the station building is divided into a gas cylinder room, a work room, and a buffer room by a first partition wall and a second partition wall, respectively. The main body of the station building has a first door leading to the buffer room and a second door leading to the gas cylinder room. The second partition wall has a third door leading from the buffer room to the work room. A photovoltaic power generation system is installed on the top of the main body of the station building. A standard gas leak detection device is installed in the gas cylinder room. A central controller and an alarm are installed in the work room. A power distribution box, an inverter, and an energy storage battery are installed in the buffer room. The power distribution box supplies power to the standard gas leak detection device, the central controller, and the alarm. The photovoltaic power generation system charges the energy storage battery. The energy storage battery is connected to the power distribution box through the inverter. The standard gas leak detection device and the alarm are both electrically connected to the central controller.
2. The new energy saving greenhouse gas monitoring station house according to claim 1, characterized in that: It also includes a first exhaust fan installed on the main body of the station building and electrically connected to the central controller. The power distribution box supplies power to the first exhaust fan, which is used to exhaust the gas in the cylinder room to the outside.
3. The new energy saving greenhouse gas monitoring station house according to claim 1, characterized in that: It also includes a first temperature and humidity sensor installed in the cylinder room and a second temperature and humidity sensor installed in the work room. Both the first and second temperature and humidity sensors are electrically connected to the central controller, and the power distribution box supplies power to the first and second temperature and humidity sensors.
4. The new energy saving greenhouse gas monitoring station house of claim 3, wherein: It also includes a second exhaust fan installed on the main body of the station building and electrically connected to the central controller. The power distribution box supplies power to the second exhaust fan, which is used to exhaust the gas in the work room to the outside.
5. The new energy saving greenhouse gas monitoring station house according to claim 3, characterized in that: The cylinder room is equipped with a first air conditioner, and the work area is equipped with a second air conditioner. The first air conditioner and the second air conditioner are electrically connected to the central controller through an air conditioning control device, and the distribution box supplies power to the first air conditioner and the second air conditioner.
6. The new energy saving greenhouse gas monitoring station house of claim 5, wherein: The buffer room is equipped with a third exhaust fan electrically connected to the central controller. The power distribution box supplies power to the third exhaust fan, which is used to transport the gas in the work area to the buffer room.
7. The new energy saving greenhouse gas monitoring station house of claim 1, wherein: Surveillance cameras are installed on the top of the main station building, in the cylinder room, and in the work room. The power distribution box supplies power to the surveillance cameras.
8. The new energy saving greenhouse gas monitoring station house of claim 1, wherein: An outdoor temperature and humidity sensor is installed on the top of the main station building, and the power distribution box supplies power to the outdoor temperature and humidity sensor.
9. The new energy saving greenhouse gas monitoring station house of claim 1, wherein: Both the cylinder room and the work area are equipped with fire detectors that are electrically connected to the central controller, and the distribution box supplies power to the fire detectors.
10. The new energy saving greenhouse gas monitoring station house of claim 1, wherein: The exterior wall of the station building is equipped with a ladder leading to the top of the station building.