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Applications of arsine evolution methods to environmental analyses.

机译:砷化氢进化方法在环境分析中的应用。

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摘要

Because of its biological activity, arsenic is involved in an active global geochemical cycle. Arsenic has been found to be transferred to the atmosphere, at least in part, by evolution of trimethyl arsine and similar methyl arsenic compounds. Because of the environmental importance of the several arsenic forms [inorganic arsenic (III) and (V), methylarsonic acid, dimethylarsenic acid, trimethylarsine, methylarsine, and dimethylarsine], chemical methods for their analysis are needed. Sensitive methods are required because environmental concentrations encountered are generally in the range of 0.01 (or lower) to 3 ppb for natural waters and 1-6 ng As/m3 for arsenic in air. Arsine evolution by pH selective reduction permits specific analyses for inorganic As (III) and As (V). Methylarsenic acids may be reduced to corresponding methylarsines with sodium borohydride after which separation permits specific detection of these arsenic compounds. The most sensitive and selective methods combine reduction, separation, and emission type detectors. The intensity of arsenic atomic emission lines is observed. This type of detector provides a lower limit of detection down to 0.02 ng As per sample. The methods have been applied to a variety of environmental samples.
机译:由于其生物活性,砷参与了活跃的全球地球化学循环。已经发现砷至少部分地通过三甲基a和类似的甲基砷化合物的释放而转移到大气中。由于几种砷形式(无机砷(III)和(V),甲基)酸,二甲基ar酸,三甲基ar,甲基ar和二甲基ar)对环境的重要性,因此需要化学方法对其进行分析。需要灵敏的方法,因为天然水遇到的环境浓度通常在0.01(或更低)至3 ppb的范围内,而空气中的砷通常在1-6 ng As / m3的范围内。通过pH选择性还原产生的砷化氢可以对无机As(III)和As(V)进行特定分析。可以用硼氢化钠将甲基砷酸还原为相应的甲基ar,然后分离即可特异性检测这些砷化合物。最灵敏,选择性最高的方法结合了还原,分离和发射型检测器。观察到砷原子发射谱线的强度。这类检测器的检测下限为每个样品低至0.02 ng。该方法已应用于多种环境样品。

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