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Improvement of quantification and identification of atmospheric reactive mercury

机译:改进量化和鉴定大气反应汞

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The mercury (Hg) research community is in need of a method to quantify reactive, gaseous oxidized, and particulate-bound Hg compounds. The University of Nevada, Reno-Reactive Mercury Active System (UNRRMAS) was designed to quantify reactive Hg, as well as identify compounds present in the atmosphere. This system has undergone significant improvements and is now designated as UNR-RMAS 2.0. The system physical design, flow management, and sample analytical methods have been improved. A new sample manifold increased reliability and consistency of air flow. The thermal desorption method for identification of gaseous oxidized Hg compounds was improved with respect to temporal resolution and temperature management. A statistical method was developed that allows for quantifying reactive Hg (RM) compounds. In addition, analyses of anions on nylon membranes was investigated as means of understanding air mass chemistry and potential RM compounds. The results of these improvements are demonstrated through comparison of a year of UNR-RMAS 2.0 sample data collected in 2018-2019 with that collected in 2014-2015. Implemented changes resulted in improved sample replication and resolution of RM quantification and speciation.
机译:汞(HG)研究界需要一种用于量化反应性,气态氧化和颗粒状HG化合物的方法。内华达大学,雷诺反应汞活性系统(UNRRARMA)设计用于量化反应性HG,以及鉴定大气中存在的化合物。该系统经历了显着的改进,现在被指定为令人无法rsrmas 2.0。系统物理设计,流量管理和样本分析方法得到了改进。新的样品歧管增加了空气流量的可靠性和一致性。关于时间分辨率和温度管理,改善了用于鉴定气态氧化HG化合物的热解吸方法。开发了统计方法,其允许定量反应性Hg(RM)化合物。此外,研究了尼龙膜上的阴离子的分析作为了解空气质量化学和潜在的RM化合物的方法。通过比较2018-2019在2014 - 2015年收集的一年收集的UnR-MAS 2.0样本数据的比较,通过比较了这些改进的结果。实施的改变导致改进的样本复制和RM量化和物种的分辨率。

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