College of Information Science and Engineering, Ocean University of China, Qingdao 266100, China.
Sensors (Basel). 2021 Mar 2;21(5):1723. doi: 10.3390/s21051723.
Continuous observation of aquatic pCO2 at the ocean surface, with a sensitive response time and high spatiotemporal resolution, is essential for research into the carbon biogeochemical cycle. In this work, a portable tunable diode laser absorption spectroscopy (TDLAS) system for dissolved CO detection in surface seawater, coupled with a home-made headspace equilibrator, allowing real time underway measurements, is described. Both the optical detection part and sample extraction part were integrated together into a compact chamber. An empirical equation suitable for this system was acquired, which can convert the concentration from the gas-phase to the aqueous-phase. A monitoring precision of 0.5% was obtained with time-series measurement, and the detection limits of 2.3 ppmv and 0.1 ppmv were determined with 1 s and 128 s averaging time, respectively. Sampling device used in this work was ameliorated so that the response time of system reduced by about 50% compared to the traditional 'shower head' system. The fast response time reached the order of 41 s when the final concentration span was 3079 ppmv. For1902 ppmv, this figure was as short as 20 s. Finally, a field underway measurement campaign was carried out and the results were briefly analyzed. Our work proved the feasibility of the TDLAS system for dissolved CO rapid detection.
连续观测海洋表面的水 CO2,具有灵敏的响应时间和高时空分辨率,对研究碳生物地球化学循环至关重要。本工作介绍了一种用于检测表层海水中溶解 CO 的便携式可调谐二极管激光吸收光谱(TDLAS)系统,该系统与自制的顶空平衡器耦合,可实现实时现场测量。光学检测部分和样品提取部分都集成到一个紧凑的腔室中。获得了一个适用于该系统的经验公式,可以将浓度从气相转换到水相。通过时间序列测量获得了 0.5%的监测精度,分别用 1 s 和 128 s 平均时间确定了 2.3 ppmv 和 0.1 ppmv 的检测限。本工作中使用的采样装置得到了改进,与传统的“淋浴头”系统相比,系统的响应时间缩短了约 50%。当最终浓度跨度为 3079 ppmv 时,快速响应时间达到 41 s。对于 1902 ppmv,这个时间短至 20 s。最后,进行了现场现场测量活动,并对结果进行了简要分析。我们的工作证明了 TDLAS 系统用于快速检测溶解 CO 的可行性。