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Employee exposure to diesel exhaust in the electric utility industry.

机译:电力行业中员工暴露于柴油机废气中。

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The purpose of this study was to assess diesel exhaust exposures in the electric utility industry and to compare these findings with worker exposures reported in other industries and to proposed and established occupational exposure limits. Two sampling approaches were used: particulates were analyzed for elemental (EC) and organic (OC) carbon via the thermal-optical method; and gaseous components (NO2, SO2, NO, and CO) were determined using a direct reading instrument, the Metrosonics pm-7400. Concentrations of the gases were all well within established occupational exposure levels. The EC percentage of the total carbon was generally lower than results reported from other studies resulting in OC levels representing a higher percentage of the total carbon concentrations. Smokers had higher average OC exposure (79 micrograms/m3) than nonsmokers (57 micrograms/m3), but cigarette smoke did not contribute to EC levels in this study (smokers and nonsmokers = 3 micrograms/m3). Two of 120 individual personal exposure levels were found to exceed the proposed threshold limit value of 150 micrograms/m3 for total particulate, but geometric mean levels were found to be significantly less than the proposed value. Questions are raised concerning the use of EC as the sole surrogate for estimating diesel content for comparison with an exposure standard.
机译:这项研究的目的是评估电力工业中的柴油机废气暴露量,并将这些发现与其他行业中报告的工人暴露量进行比较,并与拟议的和确定的职业暴露限值进行比较。使用了两种采样方法:通过热光学方法分析了微粒中的元素碳(EC)和有机碳(OC);使用直读仪器Metrosonics pm-7400测定气态成分(NO2,SO2,NO和CO)。气体的浓度均在既定的职业暴露水平内。 EC占总碳的百分比通常低于其他研究报告的结果,导致OC含量占总碳浓度的百分比更高。吸烟者的平均OC暴露量(79微克/立方米)比不吸烟者(57微克/立方米)高,但是在本研究中,香烟烟雾对EC水平没有贡献(吸烟者和非吸烟者= 3微克/立方米)。发现120个个人个人接触水平中的两个水平超过了建议的总颗粒物极限限值150微克/立方米,但发现几何平均水平明显低于建议值。关于将EC用作估算柴油含量以与暴露标准进行比较的唯一替代品,提出了一些问题。

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