System Introduction
Governments at all levels face significant assessment pressures in their efforts to prevent and control atmospheric pollution (including rankings, particulate matter levels, and failing to meet criteria for good air quality days). With the myriad tasks involved in atmospheric pollution prevention, there is an urgent need for professional guidance and precise measures to achieve air quality standards and alleviate assessment pressures. Leveraging our company's self-developed instruments such as atmospheric Aerosol LiDAR and atmospheric ozone LiDAR, combined with our proprietary LiDAR big data application platform, we conduct analysis of pollution source causes, trace pollution sources, generate daily, weekly, monthly, and occasional special reports, and oversee and report on these findings. This enables scientific and dynamic guidance for atmospheric pollution prevention and control efforts. The big data platform integrates with the equipment to provide real-time monitoring and dynamic data display, enabling the timely discovery of pollution sources and real-time alerts. It also facilitates management and scheduling tasks such as registration, inspection, and handling. Staff are assigned based on regions and tasks, allowing for the simultaneous handling of multiple tasks and ensuring timely response to identified pollution sources and real-time viewing and processing of reported incidents. Issues can be identified and resolved promptly, enhancing work efficiency while reducing workload, and ensuring continuous improvement in air quality.
System Functions
Comprehensive pollution investigation within the scanning range to identify polluted areas and pollution sources.
Rapid investigation of illegal emissions and leaks by enterprises.
Emergency monitoring for unexpected incidents.
Determination of local production and external transport of pollutants.
Organic integration of data analysis, routine inspections, emergency monitoring, and expert guidance.