Institute of Eco-Environmental Forensics, Qingdao Institute of Humanities and Social Sciences, Shandong University, China.
Institute of Oceanographic Instrumentation, Qilu University of Technology (Shandong Academy of Sciences), Shandong Key Laboratory of Ocean Environmental Monitoring Technology, Qingdao City, Shandong Province, 266001, China.
Talanta. 2021 Jan 1;221:121464. doi: 10.1016/j.talanta.2020.121464. Epub 2020 Jul 28.
A sandwich temperature control membrane inlet system based on a miniature mass spectrometer is presented that demonstrates improved analytical performance for the measurement of dissolved gases and volatile organic compounds (VOCs) in aqueous solution. Aqueous solution is directly brought to the monolayer flat membrane interface at a constant flow rate. A heating resistor and a thermocouple are fixed on the side of the membrane and aqueous solution respectively. This new strategy allows for a temperature compensation method, affording an improvement of sensitivity and a reduction of response time compared with the conventional heating solution temperature control strategy. Furthermore, a static heating mode is applied to effectively remove the memory effect. Automatic sampling and measurement are achieved by using the membrane inlet system with silicone sheeting of 50 μm thickness. The vacuum is below 3 × 10 Torr, which can make the instrument work normally. A good linear response is observed for benzene in the range of 0.1 ppm-10 ppm and the detection limit is 50 ppb. The analytical capacity of this system is demonstrated by the on-line analysis of VOCs in aqueous solution, in which the dominant ions are detected rapidly. The results indicate that the sandwich temperature control membrane inlet mass spectrometer (STC-MIMS) has a potential application for on-line analyzing organic pollution in aquatic environments.
基于微型质谱仪的三明治温度控制膜进样系统,用于改善对水溶液中溶解气体和挥发性有机化合物(VOCs)的测量分析性能。水溶液以恒定流速直接输送到单层扁平膜界面。加热电阻和热电偶分别固定在膜的一侧和水溶液中。与传统的加热溶液温度控制策略相比,这种新策略允许使用温度补偿方法,从而提高了灵敏度并缩短了响应时间。此外,采用静态加热模式可以有效去除记忆效应。使用厚度为 50 μm 的硅橡胶片的膜进样系统实现了自动采样和测量。真空度低于 3×10-10 托,可以使仪器正常工作。在 0.1 ppm-10 ppm 范围内,苯呈现出良好的线性响应,检测限为 50 ppt。该系统的分析能力通过在线分析水溶液中的 VOCs 得到了验证,其中快速检测到主要离子。结果表明,三明治温度控制膜进样质谱仪(STC-MIMS)具有在线分析水生环境中有机污染的潜在应用。