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用于评估潜在环境中有毒元素暴露情况的便携式X射线荧光光谱仪的评估

Evaluation of portable XRF instrumentation for assessing potential environmental exposure to toxic elements.

作者信息

McIntosh Kathryn G, Guimarães Diana, Cusack Matthew J, Vershinin Alexei, Chen Z W, Yang Karl, Parsons Patrick J

机构信息

Laboratory of Inorganic and Nuclear Chemistry, Wadsworth Center, New York State Department of Health, Albany NY, USA.

Department of Environmental Health Sciences, School of Public Health, State University of New York at Albany, Albany NY, USA.

出版信息

Int J Environ Anal Chem. 2016;96(1):15-37. doi: 10.1080/03067319.2015.1114104. Epub 2015 Dec 21.

Abstract

Portable instruments based on X-Ray Fluorescence Spectrometry (XRF) have the potential to assist in field-based studies provided the data produced are reliable. In this study, we evaluate the performance of two different types of XRF instrument (XOS prototype, and Thermo Niton XL3t). These two XRF analyzers were evaluated in a laboratory setting, and data were reported for 17 elements (As, Ba, Cd, Co, Cr, Cu, Fe, Hg, Mn, Ni, Pb, Se, Sn, Sr, Ti, V, and Zn). Samples analyzed (n=38) included ethnic herbal medicine products (HMP), ethnic spices (ES), and cosmetic products (CP). Comparison analyses were carried out using Inductively Coupled Plasma Optical Emission Spectrometry (ICP-OES). In general, results reported for Cd, Cu and Pb by the XOS prototype analyzer, and based on the instrument's non-metal mode, were negatively biased (5 % to 95 %) compared to ICP-OES. In contrast, results reported for Pb, As, Cd, Cu and Zn by the Niton, based on using the soil mode, were positively biased, in some instances (Cd) by up to 4 orders of magnitude. While the sensitivity of both instruments was insufficient for reliably "quantifying" toxic elements below 15 mg/kg, XRF was still capable of positively "detecting" many elements at the low single digit mg/kg levels. However, for semi-quantification estimates of contaminants at higher levels, and with limited sample preparation, both XRF instruments were deemed fit for the purpose. This study demonstrates that modern XRF instrumentation is valuable for characterizing the elemental content of food, cosmetic, and medicinal products. The technology is particularly useful for rapidly screening large numbers of products (100s per day) in the field, and quickly identifying those that may contain potentially hazardous levels of toxic elements. Toxic elements can be confirmed by examining the raw spectrum, and the limitations of factory-based calibration are generally manageable for field-based studies.

摘要

基于X射线荧光光谱法(XRF)的便携式仪器有潜力辅助实地研究,前提是所产生的数据可靠。在本研究中,我们评估了两种不同类型的XRF仪器(XOS原型机和赛默飞尼通XL3t)的性能。这两种XRF分析仪在实验室环境中进行了评估,并报告了17种元素(砷、钡、镉、钴、铬、铜、铁、汞、锰、镍、铅、硒、锡、锶、钛、钒和锌)的数据。分析的样本(n = 38)包括民族草药产品(HMP)、民族香料(ES)和化妆品(CP)。使用电感耦合等离子体发射光谱法(ICP - OES)进行了对比分析。总体而言,XOS原型分析仪基于仪器的非金属模式报告的镉、铜和铅的结果与ICP - OES相比存在负偏差(5%至95%)。相比之下,尼通基于土壤模式报告的铅、砷、镉、铜和锌的结果存在正偏差,在某些情况下(镉)偏差高达4个数量级。虽然两种仪器的灵敏度都不足以可靠地“量化”低于15毫克/千克的有毒元素,但XRF仍能够在低个位数毫克/千克水平上积极地“检测”许多元素。然而,对于更高水平污染物的半定量估计,且样品制备有限时,两种XRF仪器都被认为适用于此目的。本研究表明,现代XRF仪器对于表征食品、化妆品和药品的元素含量很有价值。该技术对于在实地快速筛查大量产品(每天数百个)并快速识别那些可能含有潜在有害水平有毒元素的产品特别有用。有毒元素可以通过检查原始光谱来确认,并且基于工厂校准的局限性对于实地研究通常是可控的。

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