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A simple in-house dry ashing chamber for the rapid ietermimation of total mercury in organic-rich solid materials by oxidative pyrolysis followed by CVAAS and FI-CPMS detection

机译:一个简单的室内干燥灰化室,用于通过氧化热解,CVAAS和FI-CPMS检测快速测定富有机固体材料中的总汞

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摘要

A simple in-house pyrolysis chamber made of quartz materia! is described for the determination of total mercury content in a wide variety of organic-rich solid materials (plant, fish tissues and polymer based) by oxidative pyrolysis and cold vapour atomic absorption spectrometry (CVAAS). Oxidative pyrolysis was carried out by means of a Bunsen burner in the presence of an oxygen stream. Mercury liberated from the sample was collected in 0.1% KMnO4 trapping solution. Determination of mercury was achieved by CVAAS. Under optimal conditions, the limit of detection (LOD), calculated as the concentration of mercury yielding a signal equivalent to three times of the standard deviation of the blank value (3σ), obtained for CVAAS in conjunction with the oxidative pyrolysis method was found to be 0.08 ng g~(-1). Flow injection inductively coupled plasma mass spectrometry (FI-ICPMS) was used to validate the developed method. The results obtained for several reference materials, such as mussel tissue (CE-278), tuna fish (CE-463), tuna fish (464), polyethylene (EC-681), plankton (CRM-414), lichen (CRM-482) and human hair (CRM-397), by the developed method agreed well with the certified values. These studies clearly demonstrate the capabilities of the pyrolysis set-up that can potentially be used for the rapid determination of total mercury in a wide variety of organic-rich matrices.
机译:一个简单的内部由石英材料制成的热解室!用氧化热解和冷蒸气原子吸收光谱法(CVAAS)测定各种富含有机物的固体材料(植物,鱼类组织和聚合物基)中的总汞含量。氧化热解是借助于本生灯在氧气流的存在下进行的。从样品中释放出来的汞收集在0.1%KMnO4捕集溶液中。汞的测定通过CVAAS进行。在最佳条件下,发现CVAAS结合氧化热解法得出的检测限(LOD)是汞浓度,产生的信号等于空白值(3σ)的标准偏差的三倍。为0.08 ng g〜(-1)。流动注射电感耦合等离子体质谱(FI-ICPMS)用于验证所开发的方法。使用多种参考材料获得的结果,例如贻贝组织(CE-278),金枪鱼(CE-463),金枪鱼(464),聚乙烯(EC-681),浮游生物(CRM-414),地衣(CRM- 482)和人发(CRM-397),通过开发的方法与认证值非常吻合。这些研究清楚地表明了热解装置的功能,可以将其用于快速测定各种富含有机物的基质中的总汞。

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