Lawryk Nicholas J, Feng H Amy, Chen Bean T
Health Effects Laboratory Division, National Institute for Occupational Safety and Health, Morgantown, WV 26505-1725, USA.
J Occup Environ Hyg. 2009 Jul;6(7):433-45. doi: 10.1080/15459620902932119.
Recent advances in field-portable X-ray fluorescence (FP XRF) spectrometer technology have made it a potentially valuable screening tool for the industrial hygienist to estimate worker exposures to airborne metals. Although recent studies have shown that FP XRF technology may be better suited for qualitative or semiquantitative analysis of airborne lead in the workplace, these studies have not extensively addressed its ability to measure other elements. This study involved a laboratory-based evaluation of a representative model FP XRF spectrometer to measure elements commonly encountered in workplace settings that may be collected on air sample filter media, including chromium, copper, iron, manganese, nickel, lead, and zinc. The evaluation included assessments of (1) response intensity with respect to location on the probe window, (2) limits of detection for five different filter media, (3) limits of detection as a function of analysis time, and (4) bias, precision, and accuracy estimates. Teflon, polyvinyl chloride, polypropylene, and mixed cellulose ester filter media all had similarly low limits of detection for the set of elements examined. Limits of detection, bias, and precision generally improved with increasing analysis time. Bias, precision, and accuracy estimates generally improved with increasing element concentration. Accuracy estimates met the National Institute for Occupational Safety and Health criterion for nearly all the element and concentration combinations. Based on these results, FP XRF spectrometry shows potential to be useful in the assessment of worker inhalation exposures to other metals in addition to lead.
现场便携式X射线荧光(FP XRF)光谱仪技术的最新进展使其成为工业卫生学家估算工人空气中金属暴露量的潜在有价值的筛查工具。尽管最近的研究表明,FP XRF技术可能更适合对工作场所空气中铅进行定性或半定量分析,但这些研究并未广泛探讨其测量其他元素的能力。本研究涉及对一台具有代表性的FP XRF光谱仪进行基于实验室的评估,以测量工作场所环境中常见的、可能收集在空气样品过滤介质上的元素,包括铬、铜、铁、锰、镍、铅和锌。评估内容包括:(1)相对于探头窗口位置的响应强度;(2)五种不同过滤介质的检测限;(3)作为分析时间函数的检测限;(4)偏差、精密度和准确度估计。对于所检测的一组元素,聚四氟乙烯、聚氯乙烯、聚丙烯和混合纤维素酯过滤介质的检测限都同样低。检测限、偏差和精密度通常随着分析时间的增加而改善。偏差、精密度和准确度估计通常随着元素浓度的增加而改善。对于几乎所有的元素和浓度组合,准确度估计均符合美国国家职业安全与健康研究所的标准。基于这些结果,FP XRF光谱法除了可用于评估工人铅暴露量外,在评估工人对其他金属的吸入暴露方面也显示出应用潜力。