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使用每分钟流量为1.2升的个人可吸入煤矿粉尘采样器与卡塞拉113A重量采样器(MRE)测定的质量浓度比较。

Comparison of mass concentrations determined with personal respirable coal mine dust samplers operating at 1.2 liters per minute and the Casella 113A gravimetric sampler (MRE).

作者信息

Treaftis H N, Gero A J, Kacsmar P M, Tomb T F

出版信息

Am Ind Hyg Assoc J. 1984 Dec;45(12):826-32. doi: 10.1080/15298668491400719.

Abstract

Measuring respirable dust concentrations in coal mine environments is currently done using approved personal respirable dust sampling equipment operating at a flow rate of 2.0 liters per minute (Lpm). Measurements made with approved coal mine dust sampling equipment are converted to equivalent concentrations that would be obtained with a Mining Research Establishment (MRE) instrument known as the Casella 113A gravimetric sampler, using a conversion factor of 1.38. NIOSH has recently recommended that coal mine dust samplers (CMDS) used to measure respirable dust levels in mine environments be operated at 1.2 Lpm and measured concentrations be multiplied by 0.91 to obtain an equivalent MRE concentration. The purpose of this recommendation is to reduce systematic error caused by the variation in mine dust distributions. This paper presents and discusses data collected in the laboratory and in underground coal mines to evaluate the recommended 1.2 Lpm flow rate and 0.91 conversion factor. Comparative measurements were obtained in the laboratory with the CMDS operating at 2.0 and 1.2 liters per minute and the MRE, using aerosols of coal and limestone dust of varying particle size distribution. Similar comparative measurements were made in a number of underground coal mines at locations with environments having particle size distributions representative of different underground mining operations. It was concluded from this study that there is no significant change in the variability associated with the constant factor used to convert respirable dust measurements, obtained with approved respirable CMDS, to equivalent MRE measurements when the flow rate of the CMDS is reduced from 2.0 to 1.2 Lpm.

摘要

目前,在煤矿环境中测量可吸入粉尘浓度是使用经批准的个人可吸入粉尘采样设备,以每分钟2.0升(Lpm)的流速进行。使用经批准的煤矿粉尘采样设备所做的测量结果,会通过一个1.38的转换系数,换算成使用矿业研究机构(MRE)的一种名为卡塞拉113A重量采样器的仪器所测得的等效浓度。美国国家职业安全与健康研究所(NIOSH)最近建议,用于测量煤矿环境中可吸入粉尘水平的煤矿粉尘采样器(CMDS)应以1.2 Lpm的流速运行,且所测浓度应乘以0.91以获得等效的MRE浓度。该建议的目的是减少因煤矿粉尘分布变化而导致的系统误差。本文展示并讨论了在实验室和地下煤矿收集的数据,以评估建议的1.2 Lpm流速和0.91的转换系数。在实验室中,使用粒径分布各异的煤和石灰石粉尘气溶胶,对以2.0 Lpm和1.2 Lpm流速运行的CMDS以及MRE进行了对比测量。在多个地下煤矿中,在具有代表不同地下开采作业粒径分布环境的地点进行了类似的对比测量。从这项研究得出的结论是,当CMDS的流速从2.0 Lpm降至1.2 Lpm时,用于将经批准的可吸入CMDS所测得的可吸入粉尘测量值转换为等效MRE测量值的常数因子的变异性没有显著变化。

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