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Determination of inorganic arsenic in water by a quartz crystal microbalance

机译:石英晶体微量天平测定水中的无机砷

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A quartz crystal microbalance sensor has been developed for the determination of inorganic arsenic species in water. The gold electrode surface was modified by a self-assembled layer of dithiothreitol, and the frequency change of the modified crystal was proportional to the arsenic concentration from 0 to around 50 ??g La?’1, a range which spans the current US EPA maximum contaminent level of 10 ??g La?’1 in drinking water. As dithiothreitol is capable of reducing arsenate to arsenite, the sensor detects both species. The method was applied to the determination of arsenic in spiked rain, tap, pond and bottled water; recoveries not significantly different from 100% were obtained for a number of spike additions of less than 10 ??g La?’1. Arsenic was only detected in the bottled water sample, at a concentration of 8 ??g La?’1. This method is simple, fast, and inexpensive compared with other conventional arsenic detection methods, and has the potential to be used in the field.
机译:已经开发出一种石英晶体微天平传感器来测定水中的无机砷。金电极表面通过二硫苏糖醇的自组装层进行了修饰,修饰后的晶体的频率变化与砷浓度成正比,范围从0到大约50ΔgLa?'1,该范围跨越了当前的US EPA饮用水中的最高污染水平为10 ?? g La?'1。由于二硫苏糖醇能够将砷酸盐还原为亚砷酸盐,因此传感器可以检测到两种物质。该方法适用于尖峰雨,自来水,池塘和瓶装水中砷的测定。当添加的尖峰添加量少于10 ?? g La?1时,回收率与100%差异不显着。仅在瓶装水样品中检测到砷,其浓度为8 ?? g La?-1。与其他常规的砷检测方法相比,该方法简单,快速且便宜,并且具有在本领域中使用的潜力。

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