首页> 美国卫生研究院文献>Journal of Analytical Methods in Chemistry >Simultaneous Determination of Dissolved Organic Carbon and TotalDissolved Nitrogen on a Coupled High-Temperature Combustion Total Organic Carbon-Nitrogen Chemiluminescence Detection (HTC TOC-NCD) System
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Simultaneous Determination of Dissolved Organic Carbon and TotalDissolved Nitrogen on a Coupled High-Temperature Combustion Total Organic Carbon-Nitrogen Chemiluminescence Detection (HTC TOC-NCD) System

机译:同时测定溶解有机碳和总碳高温燃烧全有机碳氮化学发光检测(HTC TOC-NCD)耦合系统上的溶解氮

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摘要

The marine biogeochemistries of carbon and nitrogen have come under increased scrutiny because of their close involvement in climate change and coastal eutrophication. Recent studies have shown that the high-temperature combustion (HTC) technique is suitable for routine analyses of dissolved organic matter due to its good oxidation efficiency, high sensitivity, and precision. In our laboratory, a coupled HTC TOC-NCD system with a sample changer was used for the automated and simultaneous determination of dissolved organic carbon (DOC) and total dissolved nitrogen (TDN) in seawater samples. TOC control software was used for TOC instrument control, DOC data acquisition, and data analysis. TDN data acquisition and manipulation was undertaken under LabVIEW. The combined system allowed simultaneous determination of DOC and TDN in the same sample using a single injection and provided low detection limits and excellent linear ranges for both DOC and TDN. The risk of contamination has been remarkably reduced due to the minimal sample manipulation and automated analyses. The optimised system provided a reliable tool for the routine determination of DOC and TDN in marine waters.
机译:由于碳和氮的海洋生物地球化学与气候变化和沿海富营养化密切相关,因此受到了越来越多的审查。最近的研究表明,高温燃烧(HTC)技术具有良好的氧化效率,高灵敏度和精度,因此适合于溶解有机物的常规分析。在我们的实验室中,将带有样品更换器的HTC TOC-NCD耦合系统用于自动化,同时测定海水样品中的溶解有机碳(DOC)和总溶解氮(TDN)。 TOC控制软件用于TOC仪器控制,DOC数据采集和数据分析。 TDN数据采集和处理是在LabVIEW下进行的。组合系统允许使用一次进样同时测定同一样品中的DOC和TDN,并为DOC和TDN提供了低检测限和出色的线性范围。由于最少的样品处理和自动化分析,显着降低了污染的风险。优化的系统为常规测定海水中的DOC和TDN提供了可靠的工具。

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