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A method for semi-continuous measurement of dissolved elemental mercury in industrial and natural waters

机译:半连续测量工业和天然水中溶解性元素汞的方法

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摘要

Mercury in aqueous systems can be present in different chemical forms. Of these, dissolved elemental Hg(0) (DEM) is of great importance because it can readily be partitioned between air and water. Analytical methods used for determining DEM are conventionally based on removal of Hg(0) by purging, pre-concentration on gold and detection by either cold vapour atomic absorption (CV-AAS) or atomic fluorescence spectrophotometry (CV-AFS). At present, there is no agreed protocol for the measurement of DEM in aqueous samples. A new method is described here, which is based on continuous stripping of DEM by mercury-free nitrogen in a flow injection mode and detection by CV-AAS. The partitioning of DEM between aqueous and gas phases is largely dependent on the composition of the former. Moreover, calibration using the standard addition method is not possible due to the reactivity of DEM introduced from calibration solutions. Calibration is therefore done by reference measurements using a manual method for DEM involving quantitative removal and CV-AFS detection. DEM is then determined in the water sample by applying the partitioning factor. The optimised method is precise, sensitive and linear over a wide concentration range. It has provided comparable results with the manual method when applied on board a research vessel in the Mediterranean Sea (0.02-0.05ngL(-1)) and during a pilot laboratory-scale experiment on industrial aqueous media from wet flue gas desulphurisation (WFGD) equipment (2-300ngL(-1)).
机译:水性系统中的汞可以不同的化学形式存在。其中,溶解的Hg(0)(DEM)元素非常重要,因为它很容易在空气和水之间分配。用于确定DEM的分析方法通常基于通过吹扫除去Hg(0),对金进行预浓缩以及通过冷蒸气原子吸收(CV-AAS)或原子荧光分光光度法(CV-AFS)进行检测。目前,尚无商定的协议来测量水性样品中的DEM。本文介绍了一种新方法,该方法基于在流动注射模式下通过无汞氮气连续汽提DEM并通过CV-AAS检测。 DEM在水相和气相之间的分配在很大程度上取决于前者的组成。此外,由于从校准溶液引入的DEM的反应性,因此无法使用标准添加方法进行校准。因此,通过参考测量,使用涉及定量去除和CV-AFS检测的DEM手动方法进行校准。然后通过应用分配因子确定水样品中的DEM。优化的方法在宽浓度范围内精确,灵敏且线性。当在地中海的研究船上使用(0.02-0.05ngL(-1))以及在湿法烟气脱硫(WFGD)的工业水性介质的实验室规模试验中进行试验时,它与手动方法提供了可比的结果。设备(2-300ngL(-1))。

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