分析和监测环境中重金属的方法

A. R. Tsygankova, S. A. Gulyaev, L. S. Adamenko, M. Shestopalov
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摘要

本综述介绍了现代仪器分析方法的能力,这些方法可对多种元素进行低检测限的分析。有些元素本身具有毒性,因此对它们的鉴定尤为重要。值得注意的是,用于测定这些重要生态毒物的仪器分析方法通常也用于测定其他重金属。分析对象包括:天然水、河水、海水、卤水、底层沉积物、植物(包括药用植物)、沉淀物、土壤、全血和血清、毛发和动物皮毛、动物器官和组织。特别注意消除基质影响,并利用浓缩程序降低检测限。考虑了各种类型的萃取、吸附、沉淀、化学转化(氢化物生成等),并将其应用于生物和环境对象。考虑并比较了测定重金属和重要生态毒物的现代仪器分析方法的能力--单元素(ETAAS、IVA 等)和多元素(ICP AES、ICP MS、XRF 等)。数据以表格的形式编排,其中列出了具体的分析方法,说明了样品制备方法和/或仪器测定的特点、待测定元素的清单以及检测限。
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Methods for analysis and monitoring of heavy metals in the environment
This review surveys capabilities of modern instrumental analytical methods that provide low limits of detection for a wide range of elements. Some elements have their own toxic forms, so their identification is of particular importance. Researchers pay increased attention to the content of cadmium and lead due to their high immediate and delayed toxicity.It should be noted that those instrumental methods of analysis that are used to determine these important ecotoxicants are often used to determine other heavy metals. The following objects of analysis are considered – natural, river, sea waters; brines; bottom sediments; plants, including medicinal ones; precipitation; soil; as well as whole blood and blood serum; hair and animal fur; animal organs and tissues. Special attention is paid to eliminating matrix influences and reducing limits of detection using concentration procedures. Various types of extraction, sorption, precipitation, chemical transformation (hydride generation, etc.) are considered and applied to biological and environmental objects.The capabilities of modern instrumental methods of analysis for the determination of heavy metals and important ecotoxicants are considered and compared – single‐element (ETAAS, IVA, etc.) and multi‐element (ICP AES, ICP MS, XRF, etc.). The data is structured in the form of a table, which shows specific analysis methods, indicating the method of sample preparation and/or features of instrumental determination, a list of elements to be determined and the limits of detection.
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