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Trace-level automated mercury speciation analysis

机译:痕量汞自动形态分析

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An automated system for methyl Hg analysis by purge and trap gas chromatography (GC) was evaluated, with comparison of several different instrument configurations including chromatography columns (packed column or capillary), detector (atomic fluorescence, AFS, or inductively coupled plasma mass spectrometry, ICP-MS, using quadrupole and sector field ICP-MS instruments). Method detection limits (MDL) of 0.042 pg and 0.030 pg for CH3Hg~+ were achieved with the automated Hg analysis system configured with AFS and ICP-MS detection, respectively. Capillary GC with temperature programming was effective in improving resolution and decreasing retention times of heavier Hg species (in this case C3H7Hg~+) although carryover between samples was increased. With capillary GC, the MDL for CH3Hg~+ was 0.25 pg for AFS detection and 0.060 pg for ICP-MS detection. The automated system was demonstrated to have high throughput (72 samples analyzed in 8 h) requiring considerably less analyst time than the manual method for CH3Hg~+ analysis described in EPA 1630.
机译:评估了通过吹扫捕集气相色谱(GC)进行甲基汞分析的自动化系统,并比较了几种不同的仪器配置,包括色谱柱(填充柱或毛细管),检测器(原子荧光,AFS或电感耦合等离子体质谱法, ICP-MS,使用四极和扇区现场ICP-MS仪器)。使用配置有AFS和ICP-MS检测的自动汞分析系统,对CH3Hg〜+的方法检测限(MDL)分别为0.042 pg和0.030 pg。尽管增加了样品之间的残留,但采用温度编程的毛细管气相色谱可以有效地提高分离度并减少重质汞物种(在这种情况下为C3H7Hg〜+)的保留时间。使用毛细管气相色谱仪,用于AFS检测的CH3Hg〜+的MDL为0.25 pg,用于ICP-MS检测的MDL为0.060 pg。与EPA 1630中描述的用于CH3Hg +分析的手动方法相比,该自动化系统具有较高的通量(在8小时内分析了72个样品),所需的分析时间更少。

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