Xin Fengxin, Li Jie, Guo Jinjia, Yang Dewang, Wang Yong, Tang Qiuhua, Liu Zhishen
Laser Institute, Qilu University of Technology (Shandong Academy of Sciences), Qingdao 266100, China.
Ocean Remote Sensing Institute, Ocean University of China, Qingdao 266003, China.
Sensors (Basel). 2021 Mar 2;21(5):1722. doi: 10.3390/s21051722.
Monitoring of CO column concentrations is valuable for atmospheric research. A mobile open-path system was developed based on tunable diode laser absorption spectroscopy (TDLAS) to measure atmospheric CO column concentrations. A laser beam was emitted downward from a distributed feedback diode laser at 2 μm and then reflected by the retroreflector array on the ground. We measured the CO column concentrations over the 20 and 110 m long vertical path. Several single-point sensors were distributed at different heights to provide comparative measurements for the open-path TDLAS system. The results showed that the minimum detection limit of system was 0.52 ppm. Some similarities were observed in trends from the open-path TDLAS system and these sensors, but the average of these sensors was more consistent with the open-path TDLAS system values than the single-point measurement. These field measurements demonstrate the feasibility of open-path TDLAS for measuring the CO column concentration and monitoring carbon emission over large areas.
监测一氧化碳柱浓度对大气研究具有重要价值。基于可调谐二极管激光吸收光谱技术(TDLAS)开发了一种移动开放路径系统,用于测量大气一氧化碳柱浓度。一束激光从一个波长为2μm的分布反馈二极管激光器向下发射,然后由地面上的后向反射器阵列反射。我们测量了20米和110米长垂直路径上的一氧化碳柱浓度。几个单点传感器分布在不同高度,为开放路径TDLAS系统提供对比测量。结果表明,该系统的最低检测限为0.52ppm。开放路径TDLAS系统与这些传感器的测量趋势存在一些相似之处,但这些传感器的平均值比单点测量值更与开放路径TDLAS系统的值一致。这些现场测量证明了开放路径TDLAS在测量一氧化碳柱浓度和大面积碳排放监测方面的可行性。