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Development of an analytical method for monitoring worker populations exposed to platinum-group elements

机译:开发一种监测暴露于铂族元素的工人数量的分析方法

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The increasing industrial use of platinum-group elements (PGEs), namely It, Pd, Pt and Rh, and related allergies such as rhinitis, conjunctivitis, asthma, urticaria and contact dermatitis, have led to a growing need to monitor selected populations of exposed workers. In this study, the levels of PGEs were measured in indoor airborne particulate matter and in biological samples taken from employees of a plant where car catalytic converters are produced and precious metals are recovered from spent carbon catalysts. The development of an analytical procedure based on quadrupole inductively coupled plasma mass spectrometry (Q-ICP-MS) for the analysis of PGEs in airborne particulate matter and on sector field inductively coupled plasma mass spectrometry (SF-ICP-MS) for the analysis of PGEs in blood, serum, urine and hair is described. For airborne particulate matter deposited on filters, the limits of detection (LoDs) were found to be 0.006 ng m(-3), 0.020 ng m(-3), 0.018 ng m(-3) and 0.006 ng m(-3) for Ir, Pd, Pt and Rh, respectively Repeatability of measurements ranged from 1.8 to 8.5%, while recovery was in the range from 92 to 102%. For biological samples LoDs in blood, serum, urine and hair ranged from (in ng l(-1)) 0.2-0.6 for Ir, 5-10 for Pd, 1-3 for Pt and 2-3 for RE For all biological materials, the repeatability varied from 1.1 to 12% for the four elements. Recovery data for the determination of PGEs in biological matrices were found to range from 84.0 to 107.8%. The method was applied to the determination of either total or respirable airborne PGEs collected from five different work areas in the plant. The difference between areas with high and low exposure correlates closely with metal levels in hair, blood and urine. The correlation coefficients between Pt in airborne particulate matter and Pt in biological materials was 0.994, 0.991 and 0.970 for blood, hair and urine, respectively. (C) 2003 Elsevier B.V. All rights reserved.
机译:工业上对It,Pd,Pt和Rh铂族元素(PGEs)的使用日益增加,以及相关的过敏性疾病,例如鼻炎,结膜炎,哮喘,荨麻疹和接触性皮炎,导致对监测某些暴露人群的需求日益增长。工人。在这项研究中,测量了室内空气中的颗粒物和从工厂员工那里采集的生物样品中PGE的水平,该工厂生产汽车催化转化器,并从废碳催化剂中回收贵金属。基于四极电感耦合等离子体质谱(Q-ICP-MS)的分析程序的开发,用于分析机载颗粒物中的PGE,基于扇形场电感耦合等离子体质谱(SF-ICP-MS)的分析程序的开发描述了血液,血清,尿液和头发中的PGE。对于沉积在过滤器上的空气传播颗粒物,检出限(LoDs)为0.006 ng m(-3),0.020 ng m(-3),0.018 ng m(-3)和0.006 ng m(-3)对于Ir,Pd,Pt和Rh而言,测量的重复性在1.8至8.5%的范围内,而回收率在92%至102%的范围内。对于生物样品,血液,血清,尿液和头发的LoD范围为(in ng l(-1)),Ir为0.2-0.6,Pd为5-10,Pt为1-3,RE为2-3对于所有生物材料,这四个元素的重复性从1.1%到12%不等。用于测定生物基质中PGE的回收数据范围为84.0至107.8%。该方法用于确定从工厂五个不同工作区域收集的全部或可吸入的机载PGE。高和低暴露区域之间的差异与头发,血液和尿液中的金属含量密切相关。血液,头发和尿液中,空气中颗粒物中Pt与生物材料中Pt的相关系数分别为0.994、0.991和0.970。 (C)2003 Elsevier B.V.保留所有权利。

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