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A comparison of respirable crystalline silica concentration measurements using a direct-on-filter Fourier transform infrared (FT-IR) transmission method vs. a traditional laboratory X-ray diffraction method

机译:使用直接滤器傅里叶变换红外(FT-IR)透射法与传统实验室X射线衍射法比较可吸入晶体二氧化硅浓度的比较

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摘要

Evaluation and control of respirable crystalline silica (RCS) exposures are critical components of an effective mine industrial hygiene program. To provide more timely exposure data in the field, an end-of-shift Fourier transform infrared (FT-IR) spectrometry method has been developed for evaluation of direct-on-filter RCS. The present study aimed to apply this FT-IR method using field samples collected in three Northwestern U.S. metalonmetal mines and compare the results to traditional laboratory X-ray diffraction analysis (XRD). Seventy-five dust samples were analyzed using both methods. Samples for each mine were split in half by random assignment, with half used to create a calibration factor for the FT-IR analysis and half used to apply the calibration. Nonparametric correlational and two-sample comparative tests were used to assess the strength of association and the level of agreement between the two methods. Strong, positive correlations were observed between FT-IR and XRD RCS concentrations, with Spearman rank correlation coefficients ranging between 0.84 and 0.97. The mean RCS concentrations determined through FT-IR analysis were lower than through XRD analysis, with mean differences ranging from —4 to —133 ug/m3 and mean percent errors ranging from 12% to 28%. There was a statistically significant improvement in the level of agreement between log FT-IR and log XRD RCS concentrations following calibration at two of the three mines, with mean differences of —0.03 (p = 0.002) and —0.02 (p = 0.044) in the log scale. The reduction in mean difference following calibration at the other mine was not statistically significant (mean log scale difference = —0.05, p = 0.215), but the differences between FT-IR and XRD were not significantly different without calibration (mean log scale difference = —0.07, p = 0.534). The results indicate that mine-specific calibration factors can improve the level of agreement between RCS concentrations determined via a field-based, end-of-shift FT-IR method in metalon-metal mines as compared to traditional XRD analysis.
机译:评估和控制可吸入晶体二氧化硅(RCS)暴露是有效的矿山工业卫生计划的关键组成部分。为了在野外提供更及时的曝光数据,已经开发了一种位移结束傅里叶变换红外(FT-IR)光谱法来评估直接滤光片RCS。本研究旨在使用美国西北部三个金属/非金属矿山中收集的野外样品应用这种FT-IR方法,并将结果与​​传统的实验室X射线衍射分析(XRD)进行比较。使用这两种方法分析了75个灰尘样品。通过随机分配将每个矿场的样品分成两半,其中一半用于创建FT-IR分析的校准因子,另一半用于应用校准。非参数相关和两个样本的比较测试用于评估关联的强度和两种方法之间的一致性水平。 FT-IR和XRD RCS浓度之间存在强正相关,Spearman等级相关系数在0.84至0.97之间。 FT-IR分析确定的RCS平均浓度低于XRD分析,平均差异在-4至-133 ug / m 3 之间,平均误差百分比在12%至28%之间。在三个矿场中的两个进行校准后,log FT-IR和log XRD RCS浓度之间的一致性水平在统计学上有显着改善,其中三个矿场的平均差异为-0.03(p = 0.002)和-0.02(p = 0.044)。对数刻度。在另一座矿山进行校准后,平均差异的减少没有统计学意义(平均对数标度差异= -0.05,p = 0.215),但不进行校准,FT-IR和XRD之间的差异无显着差异(平均对数标度差异= -0.07,p = 0.534)。结果表明,与传统的XRD分析相比,特定于矿井的校准因子可以提高通过基于场的,位移结束FT-IR方法确定的金属/非金属矿山中RCS浓度之间的一致性水平。

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