Li Yinhao, Liao Zhibo, Lin Xindong, Ding Jiawang, Qin Wei
CAS Key Laboratory of Coastal Environmental Processes and Ecological Remediation, Yantai Institute of Coastal Zone Research (YIC), Shandong Key Laboratory of Coastal Environmental Processes, YICCAS, Chinese Academy of Sciences (CAS), Yantai, Shandong 264003, P. R. China.
University of Chinese Academy of Sciences, Beijing 100049, P. R. China.
ACS Sens. 2023 Apr 28;8(4):1568-1578. doi: 10.1021/acssensors.2c02690. Epub 2023 Mar 16.
Salinity is crucial for understanding the environmental and ecological processes in estuarine and coastal sediments. In situ measurements in sediments are scarce due to the low water content and particulate adsorption. Here, a new potentiometric sensor principle is proposed for the real-time in situ measurement of salinity in sediments. The sensor system is based on paper sampling and two all-solid electrodes, a cation-selective electrode (copper hexacyanoferrate, CuHCF) and an anion-selective electrode (Ag/AgCl). The spontaneous aqueous electrolyte extraction and redox reaction can produce a Nernstian response on both electrodes that is directly related to salinity. This potentiometric sensor allows for salinity acquisition in a wide salinity range (1-50 ppt), with high resolution (<1 ppt), and at a low water content (<30%), and it has been applied for the in situ measurement of salinity and the interpretation of cycling processes of metals in estuarine and coastal sediments. Moreover, the sensor coupled to a wireless monitoring system exhibited remote-sensing capability and successfully captured the salinity dynamic processes of the overlying water and pore water during the tidal period. This sensor with its low cost, versatility, and applicability represents a valuable tool to advance the comprehension of salinity and the salinity-driven dissolved-matter variations in estuarine and coastal sediments.
盐度对于理解河口和海岸沉积物中的环境与生态过程至关重要。由于沉积物含水量低且存在颗粒吸附,沉积物原位测量较为匮乏。在此,提出了一种新的电位传感器原理,用于沉积物盐度的实时原位测量。该传感器系统基于纸质采样以及两个全固态电极,一个阳离子选择性电极(铁氰化铜,CuHCF)和一个阴离子选择性电极(Ag/AgCl)。自发的水性电解质萃取和氧化还原反应可在两个电极上产生与盐度直接相关的能斯特响应。这种电位传感器能够在较宽的盐度范围(1 - 50 ppt)内、高分辨率(<1 ppt)且低含水量(<30%)的情况下获取盐度,并且已应用于河口和海岸沉积物盐度的原位测量以及金属循环过程的解释。此外,与无线监测系统耦合的该传感器展现出遥感能力,并成功捕捉了潮汐期间上覆水和孔隙水的盐度动态过程。这种成本低、通用性强且适用性广的传感器是推进对河口和海岸沉积物盐度以及盐度驱动的溶解物质变化理解的宝贵工具。