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Modeling evaporative loss of oil mist collected by sampling filters.

机译:模拟采样过滤器收集的油雾的蒸发损失。

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Oil mists can cause respiratory distress and have been linked to skin and gastrointestinal cancers in workers. Standard concentration assessment methods call for sampling these mists with fibrous or membrane filters. Previous experimental studies using glass fiber (GF) filters and polyvinyl chloride and polytetrafluoroethylene membrane filters indicate that mist sampled onto filters may volatilize. A model has been developed to predict the evaporation of mist collected on a fibrous sampling filter. Evaporation of retained fluid from membrane filters can be modeled by treating the filter as though it is a fibrous filter. Predictions from the model exhibit good agreement with experimental results. At low mist concentrations, the model indicates that evaporation of retained mineral oil occurs readily. At high mist concentrations, significant evaporation from the filters is not expected because the vapor accompanying the airborne mist is already saturated with the compounds in the oil. The findings from this study indicate that sampling mineral oil mist with filters in accordance with standard methods can lead to estimates of worker exposure to oil mist that are too low.
机译:油雾会导致呼吸窘迫,并与工人的皮肤和胃肠道癌症有关。标准浓度评估方法要求使用纤维或膜滤器对这些雾进行采样。以前使用玻璃纤维(GF)过滤器,聚氯乙烯和聚四氟乙烯膜过滤器进行的实验研究表明,采样到过滤器上的薄雾可能会挥发。已经开发出一种模型来预测收集在纤维采样过滤器上的雾气的蒸发。通过将过滤器当作纤维过滤器进行处理,可以模拟膜过滤器中残留流体的蒸发。该模型的预测结果与实验结果吻合良好。在低雾气浓度下,该模型表明残留矿物油易于蒸发。在高雾气浓度下,由于伴随空气传播的雾气的蒸汽已经被油中的化合物饱和,因此预计不会从过滤器中大量蒸发。这项研究的结果表明,按照标准方法使用过滤器对矿物油雾进行采样可能导致工人对油雾的暴露估计过低。

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