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Considerations in As analysis and speciation

机译:砷分析和物种形成中的注意事项

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Several problems with commonly used techniques that analyze for arsenic are reported, and solutions are proposed. Analytical techniques can accurately detect < 0.5 μg/L total arsenic if certain conditions are met: iron, nitrate, and other interferences are overcome in hydride generation techniques, poor recoveries are overcome in graphite furnace atomic adsorption techniques, and chloride interferences are accounted for in inductively coupled plasma mass spectrometry techniques. Because no techniques adequately preserve arsenic species during storage, a speciation protocol that is fast (about 5 min/sample), relatively inexpensive (about $10/resin column), and user-friendly and that can be applied in the field was developed. Particulate arsenic represents a significant fraction of total arsenic in drinking water.
机译:报道了分析砷的常用技术的几个问题,并提出了解决方案。如果满足某些条件,则分析技术可以准确检测<0.5μg/ L的总砷:在氢化物生成技术中克服了铁,硝酸盐和其他干扰,在石墨炉原子吸附技术中克服了较差的回收率,并且氯离子干扰被认为是电感耦合等离子体质谱技术。由于没有任何技术能够在存储过程中充分保存砷物质,因此开发了一种能够快速进行(约5分钟/样品),相对便宜(约10美元/树脂柱)且易于使用且可在现场使用的物种形成方案。砷在饮用水中占总砷的很大一部分。

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