Liu Luyin, Liu Ruzhang, Ma Guochao, Feng Shanshan, Mu Yuanhui, Meng Dexi, Wang Shuying, Cai Enlin
The School of Electronic Information, Qingdao University, Qingdao 266071, China.
Sensors (Basel). 2023 Jul 10;23(14):6273. doi: 10.3390/s23146273.
The ocean is one of the most extensive ecosystems on Earth and can absorb large amounts of carbon dioxide. Changes in seawater carbon dioxide concentrations are one of the most important factors affecting marine ecosystems. Excess carbon dioxide can lead to ocean acidification, threatening the stability of marine ecosystems and species diversity. Dissolved carbon dioxide detection in seawater has great scientific significance. Conducting online monitoring of seawater carbon dioxide can help to understand the health status of marine ecosystems and to protect marine ecosystems. Current seawater detection equipment is large and costly. This study designed a low-cost infrared carbon dioxide detection system based on molecular theory. Using the HITRAN database, the absorption spectra and coefficients of carbon dioxide molecules under different conditions were calculated and derived, and a wavelength of 2361 cm was selected as the measurement channel for carbon dioxide. In addition, considering the interference effect of direct light, an infrared post-splitting method was proposed to eliminate the interference of light and improve the detection accuracy of the system. The system was designed for the online monitoring of carbon dioxide in seawater, including a peristaltic pump to accelerate gas-liquid separation, an optical path structure, and carbon dioxide concentration inversion. The experimental results showed that the standard deviation of the gas test is 3.05, the standard deviation of the seawater test is 6.04, and the error range is within 20 ppm. The system can be flexibly deployed and has good stability and portability, which can meet the needs of the online monitoring of seawater carbon dioxide concentration.
海洋是地球上最广阔的生态系统之一,能够吸收大量二氧化碳。海水二氧化碳浓度的变化是影响海洋生态系统的最重要因素之一。过量的二氧化碳会导致海洋酸化,威胁海洋生态系统的稳定性和物种多样性。海水中溶解二氧化碳的检测具有重大科学意义。对海水二氧化碳进行在线监测有助于了解海洋生态系统的健康状况并保护海洋生态系统。目前的海水检测设备体积大且成本高。本研究基于分子理论设计了一种低成本的红外二氧化碳检测系统。利用HITRAN数据库,计算并推导了不同条件下二氧化碳分子的吸收光谱和系数,选择2361 cm的波长作为二氧化碳的测量通道。此外,考虑到直射光的干扰效应,提出了一种红外分光方法来消除光的干扰,提高系统的检测精度。该系统专为海水中二氧化碳的在线监测而设计,包括用于加速气液分离的蠕动泵、光路结构和二氧化碳浓度反演。实验结果表明,气体测试的标准偏差为3.05,海水测试的标准偏差为6.04,误差范围在20 ppm以内。该系统可灵活部署,具有良好的稳定性和便携性,能够满足海水中二氧化碳浓度在线监测的需求。