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A Sensitive XRF Screening Method for Lead in Drinking Water

机译:一种敏感XRF筛选方法,用于饮用水中的铅

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摘要

A novel method for quickly and quantitatively measuring aqueous lead in drinking water has been developed. A commercially available activated carbon felt has been found to effectively capture lead from tap water, and partnered with X-ray fluorescence (XRF) spectrometry, it provides quantitative measurement of aqueous lead in drinking water. Specifically, for a 2 L volume of tap water, the linear range of detection was found to be from 1-150 ppb, encompassing the current EPA limit for lead in drinking water (15 ppb). To make a reproducible and easy to use method for filtering, a 2 L bottle cap with a 1.25 cm diameter hole was used for filtering. Utilizing this filtration method, 75 solutions from 0 to 150 ppb lead gave a 91% sensitivity, 97% specificity, and 93% accuracy, and all the misclassified samples fell between 10 and 15 ppb. This method has also proved reliable for detecting calcium as well as several other divalent metals in drinking water including copper, zinc, iron, and manganese.
机译:已经开发了一种新的饮用水中含水铅的新方法。已发现市售的活性炭毡有效捕获从自来水的铅,并与X射线荧光(XRF)光谱法合作,它提供了饮用水中含水铅的定量测量。具体地,对于2L体积的自来水,发现线性检测范围是1-150ppb,包括当前EPA限制饮用水(15 ppb)。为了使可再现且易于使用的过滤方法,使用具有1.25厘米直径的孔的2L瓶盖进行过滤。利用该过滤方法,75个溶液从0到150 ppb铅得到91%的敏感性,97%的特异性和93%的精度,并且所有错误分类的样品在10到15 ppb之间均为10%至15 ppb。该方法还证明了检测钙,以及在包括铜,锌,铁和锰的饮用水中的其他其他二价金属的可靠性。

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