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个人粉尘监测仪与现行美国煤矿可吸入粉尘采样器的等效性。

Equivalency of a personal dust monitor to the current United States coal mine respirable dust sampler.

作者信息

Page Steven J, Volkwein Jon C, Vinson Robert P, Joy Gerald J, Mischler Steven E, Tuchman Donald P, McWilliams Linda J

机构信息

US Department of Health and Human Services, Public Health Service, Centers for Disease Control and Prevention, National Institute for Occupational Safety and Health, Pittsburgh Research Laboratory, 626 Cochrans Mill Road, Pittsburgh, PA 15236, USA.

出版信息

J Environ Monit. 2008 Jan;10(1):96-101. doi: 10.1039/b714381h. Epub 2007 Nov 8.

Abstract

The United States National Institute for Occupational Safety and Health, through an informal partnership with industry, labor, and the United States Mine Safety and Health Administration, has developed and tested a new instrument known as the Personal Dust Monitor (PDM). The new dust monitor is an integral part of the cap lamp that coal miners normally carry to work and provides continuous information about the concentration of respirable coal mine dust within the breathing zone of that individual. Previous laboratory testing demonstrated that there is a 95% confidence that greater than 95% of individual PDM measurements fall within +/-25% of reference measurements. The work presented in this paper focuses on the relationship between the PDM and respirable dust concentrations currently measured by a coal mine dust personal sampler unit utilizing a 10 mm Dorr-Oliver nylon cyclone. The United Kingdom Mining Research Establishment instrument, used as the basis for coal mine respirable dust standards, had been designed specifically to match the United Kingdom British Medical Research Council (BMRC) criterion. The personal sampler is used with a 1.38 multiplier to convert readings to the BMRC criterion. A stratified random sampling design incorporating a proportionate allocation strategy was used to select a sample of mechanized mining units representative of all US underground coal mines. A sample of 180 mechanized mining units was chosen, representing approximately 20% of the mechanized mining units in production at the time the sample was selected. A total of 129 valid PDM/personal sampler dust sample sets were obtained. A weighted linear regression analysis of this data base shows that, in comparison with the personal sampler, the PDM requires a mass equivalency conversion multiplier of 1.05 [95% C.I.=(1.03, 1.08)] when the small intercept term is removed from the analysis. Removal of the intercept term results in a personal sampler-equivalent concentration increase of 2.9% at a PDM measurement of 2.0 mg m(-3).

摘要

美国国家职业安全与健康研究所通过与行业、劳工以及美国矿山安全与健康管理局建立的非正式合作关系,开发并测试了一种名为个人粉尘监测仪(PDM)的新仪器。这种新型粉尘监测仪是煤矿工人日常工作时所携带的安全帽灯的一个组成部分,可提供该个体呼吸区内可吸入煤矿粉尘浓度的连续信息。先前的实验室测试表明,有95%的置信度认为,超过95%的个人PDM测量值落在参考测量值的±25%范围内。本文所展示的工作聚焦于PDM与目前由使用10毫米多尔-奥利弗尼龙旋风分离器的煤矿粉尘个人采样器测量的可吸入粉尘浓度之间的关系。英国矿业研究机构的仪器被用作煤矿可吸入粉尘标准的基础,它是专门为符合英国医学研究理事会(BMRC)标准而设计的。个人采样器使用1.38的乘数将读数转换为BMRC标准。采用了包含比例分配策略的分层随机抽样设计,以选取代表美国所有地下煤矿的机械化采矿单元样本。选取了180个机械化采矿单元样本,约占采样时正在生产的机械化采矿单元的20%。总共获得了129组有效的PDM/个人采样器粉尘样本集。对该数据库进行加权线性回归分析表明,与个人采样器相比,当从分析中去除小截距项时,PDM需要1.05的质量等效转换乘数[95%置信区间=(1.03, 1.08)]。去除截距项后,在PDM测量值为2.0毫克/立方米时,个人采样器等效浓度增加了2.9%。

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