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首页> 外文期刊>Journal of environmental monitoring: JEM >Development of a simple extraction cell with bi-directional continuous flow coupled on-line to ICP-MS for assessment of elemental associations in solid samples
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Development of a simple extraction cell with bi-directional continuous flow coupled on-line to ICP-MS for assessment of elemental associations in solid samples

机译:开发了一种简单的萃取池,该萃取池具有双向连续流在线耦合至ICP-MS的方法,用于评估固体样品中的元素缔合

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摘要

A continuous-flow system comprising a novel, custom-built extraction module and hyphenated with inductively coupled plasma-mass spectrometric (ICP-MS) detection is proposed for assessing metal mobilities and geochemical associations in soil compartments as based on using the three step BCR (now the Measurements and Testing Programme of the European Commission) sequential extraction scheme. Employing a peristaltic pump as liquid driver, alternate directional flows of the extractants are used to overcome compression of the solid particles within the extraction unit to ensure a steady partitioning flow rate and thus to maintain constant operationally defined extraction conditions. The proposed flow set-up is proven to allow for trouble-free handling of soil samples up to 1 g and flow rates <= 10 mL min(-1). The miniaturized extraction system was coupled to ICP-MS through a flow injection interface in order to discretely introduce appropriate extract volumes to the detector at a given time and with a given dilution factor. The proposed hyphenated method demonstrates excellent performance for on-line monitoring of major and trace elements (Ca, Mn, Fe, Ni, Pb, Zn and Cd) released when applying the various extracting reagents as addressed in the BCR scheme, that is, 0.11 M CH3COOH, 0.1 NH2OH . HCl and 30% H2O2, even when a well recognized matrix-sensitive detector, such as ICP-MS, is used. As a result of the enhanced temporal resolution of the ongoing extraction, insights into the breaking down of phases and into the kinetics of the metal release are obtained. With the simultaneous multielement detection capability of ICP-MS, the dynamic fractionation system presents itself as an efficient front-end for evaluation of actual elemental association by interelement comparison of metals leached concurrently during the extraction time. Thus, the intimate elemental association between Cd and Zn in contaminated soils could be assessed.
机译:基于三步BCR,提出了一种连续流系统,该系统包括新颖的定制提取模块并通过电感耦合等离子体质谱(ICP-MS)检测进行连接,用于评估土壤室内的金属迁移率和地球化学缔合(现在是欧洲委员会的测量和测试计划)顺序提取方案。采用蠕动泵作为液体驱动器,萃取剂的交替定向流用于克服萃取单元中固体颗粒的压缩,以确保稳定的分配流速,从而维持恒定的操作确定的萃取条件。事实证明,所提出的流量设置可轻松处理高达1 g的土壤样品,并且流量<= 10 mL min(-1)。微型化的萃取系统通过流动注射接口与ICP-MS耦合,以便在给定的时间和给定的稀释倍数下,将合适的萃取量离散地引入检测器。所建议的联用方法在应用BCR方案中规定的各种提取试剂时,对在线释放的主要和痕量元素(Ca,Mn,Fe,Ni,Pb,Zn和Cd)的监测表现出优异的性能,即0.11 M CH 3 COOH,0.1 NH 2 OH。 HCl和30%H2O2,即使使用公认的基质敏感检测器(如ICP-MS)也是如此。由于正在进行的萃取的时间分辨率提高,因此获得了有关相分解和金属释放动力学的见解。借助ICP-MS的同时多元素检测功能,动态分馏系统通过萃取期间同时浸出的金属的元素间比较,将其自身作为评估实际元素缔合的有效前端。因此,可以评估污染土壤中Cd和Zn之间的紧密元素联系。

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