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Metal and metalloid speciation in plants: Overview, instrumentation, approaches and commonly assessed elements

机译:植物中的金属和准金属形态:概述,仪器,方法和常用评估元素

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The ability of plants to hyper-accumulate metals and metalloids from the surrounding environment may pose a significant health risk to both humans and animals since plants form a substantial component of diet. This attribute, however, has also been identified as a useful tool in bioremediation and biomonitoring studies; where assimilated metals and metalloids in plants often correlate to environmental exposure. Since the bioavailability and toxicity of these elements depend upon their chemical form, speciation studies are essential in determining their mobility and metabolic pathways. This can be done in a number of ways where sampling, pre-treatment and storage are all important factors affecting speciation. Appropriate analytical techniques for speciation studies can either be direct methods such as XAS, or indirect methods which require species separation prior to analysis. Separation techniques can either be in the form of sequential extractions or column separation and analyte detection often utilises instrumentation such as ESI-MS, ICP-MS and ICP-OES. (C) 2016 Elsevier B.V. All rights reserved.
机译:由于植物构成饮食的重要组成部分,因此植物从周围环境中过度积累金属和准金属的能力可能对人类和动物均构成重大健康风险。然而,这一特性也被认为是生物修复和生物监测研究中的有用工具。植物中被吸收的金属和准金属通常与环境暴露相关。由于这些元素的生物利用度和毒性取决于其化学形式,因此物种形成研究对于确定其迁移率和代谢途径至关重要。采样,预处理和存储都是影响物种形成的重要因素,可以通过多种方式来完成。用于物种研究的适当分析技术可以是直接方法,例如XAS,也可以是需要在分析之前进行物种分离的间接方法。分离技术可以采用顺序萃取或色谱柱分离的形式,分析物检测通常使用ESI-MS,ICP-MS和ICP-OES等仪器。 (C)2016 Elsevier B.V.保留所有权利。

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