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海水和海洋大气中二甲基硫和二甲基亚磺丙酸盐的 onboard 测量用高灵敏度监测设备。

High Sensitivity Monitoring Device for Onboard Measurement of Dimethyl Sulfide and Dimethylsulfoniopropionate in Seawater and an Oceanic Atmosphere.

机构信息

Department of Chemistry , Kumamoto University , 2-39-1 Kurokami , Kumamoto 860-8555 , Japan.

Mitsubishi Chemical Analytech , 7-10-1 Chuo-Rinkan , Yamato , Kanagawa 242-0007 , Japan.

出版信息

Anal Chem. 2019 Aug 20;91(16):10484-10491. doi: 10.1021/acs.analchem.9b01360. Epub 2019 Aug 7.

Abstract

An automated device has been developed to measure aqueous dimethyl sulfide (DMSaq), its precursor dimethylsulfoniopropionate (DMSP), and atmospheric gaseous dimethyl sulfide (DMSg). In addition to having a role in the oceanic atmosphere, DMS and DMSP have recently gained substantial interest within the biosciences and are suspected as chemoattractants for predators searching for prey. To provide the spatial resolution relevant for biogeochemical functions, fast and on-site analysis of these compounds is an important technique. The system described measures the dimethyl sulfur compounds by sequential vaporization of DMSaq and DMSP to their gas phase, which is then analyzed by chemiluminescence detection (SVG-CL). The device has five analysis modes (full, DMS, water, gas, and DMSP mode) that can be selected by the user depending on the required analyte or desired sampling rate. Seawater analyses were performed by the developed SVG-CL system and, simultaneously, by an ion molecule reaction-mass spectrometer and a gas chromatograph-flame photometric detector to verify quantitative analysis results. Results obtained by the new method/device agreed well with those by the other methods. Detection limits of the SVG-CL system are 0.02 ppbv and 0.04 nM for DMSg and DMSaq/DMSP, respectively, which are much better than those of the mass spectrometer. The SVG-CL system can be easily installed and operated on a boat. Spatial variability in DMS and DMSP off the coast of Japan were obtained, showing significant changes in the concentrations of the components at the brackish/saline water interface and at the channel between the closed and open seas.

摘要

已经开发出一种自动化设备来测量水相二甲硫(DMSaq)、其前体二甲基磺丙酯(DMSP)和大气气态二甲硫(DMSg)。除了在海洋大气中具有作用外,DMS 和 DMSP 最近在生物科学领域引起了广泛关注,并被怀疑是捕食者寻找猎物的化感物质。为了提供与生物地球化学功能相关的空间分辨率,对这些化合物进行快速现场分析是一项重要技术。所描述的系统通过顺序蒸发 DMSaq 和 DMSP 到气相来测量二甲基硫化合物,然后通过化学发光检测(SVG-CL)对其进行分析。该设备具有五种分析模式(全、DMS、水、气和 DMSP 模式),用户可以根据所需分析物或所需采样率进行选择。通过开发的 SVG-CL 系统同时对海水进行了分析,并通过离子分子反应质谱仪和气相色谱-火焰光度检测器进行了分析,以验证定量分析结果。新方法/设备获得的结果与其他方法的结果吻合良好。SVG-CL 系统对 DMSg 和 DMSaq/DMSP 的检测限分别为 0.02 ppbv 和 0.04 nM,远优于质谱仪的检测限。SVG-CL 系统可以轻松安装并在船上操作。获得了日本沿海 DMS 和 DMSP 的空间变异性,显示出在咸水/盐水界面和封闭海与开放海之间的通道处各成分浓度的显著变化。

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