The development of atmospheric fine particles and ozone space-time detection laser radar system passed the acceptance test

[ China Instrument Network Instrument Development ] On March 11th, the project of “Development and Application of Atmospheric Fine Particles and Ozone Spatiotemporal Detection Lidar System” was successfully adopted by the National Institute of Materials Science and Technology of the Chinese Academy of Sciences. Comprehensive inspection and acceptance organized by the Ministry of Science and Technology. The project was strictly reviewed by nine review experts led by Academician Xu Zuyan, Academician of the Institute of Physics and Chemistry of the Chinese Academy of Sciences. The acceptance was chaired by Yang Fan, Science and Technology Evaluation Center of the Ministry of Science and Technology, and Director of Metabolism, Equipment Management Director of the Chinese Academy of Sciences, attended the meeting. .

The project leader Liu Wenqing introduced the overall completion of the project. Subsequently, the project executive director Zhang Tianshu reported the detailed implementation of the project and broadcasted the results report of the project implementation and industrialization implementation process.
The acceptance expert group conducted a remote video connection to the project industrialization base Wuxi Zhongke Optoelectronics Co., Ltd. and the representative user Xiamen Atmospheric Super Station, to assess the construction of the production line and the on-site application of the instrument. The acceptance expert group also applied the on-board particulate matter lidar and on-board ozone laser. The radar system was field-checked and the project results were carefully reviewed. The acceptance expert group fully affirmed the achievements of the project, and after careful discussion, agreed that the project passed the acceptance.
(Original title: National Major Scientific Instruments and Equipment Development Special Project "Development and Application Demonstration of Atmospheric Fine Particles and Ozone Spatiotemporal Detection Lidar System" Successfully Passed Comprehensive Acceptance)

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