Miniram PDM-3气溶胶监测仪的评估和现场校准,用于测量呼吸性和总煤尘。

P J Middendorf, A H Lehocky, P L Williams
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引用次数: 10

摘要

MIE Miniram PDM-3是一个实时气溶胶粉尘监测仪,设计用于测量基于MIE散射的粉尘。它有一个可选的在线过滤器,当连接到恒流空气采样泵时,允许从通过Miniram传感室的相同气流中收集重力空气样本。该研究将实时Miniram数字可吸入粉尘和总粉尘读数与连接到恒流量泵的在线5微米聚氯乙烯过滤器的浓度,以及传统可吸入粉尘和总粉尘样本的结果进行了比较。在两个月的时间里,在三个燃煤发电设施收集了区域样本。传统的呼吸性粉尘浓度范围为0.04至10.8 mg/m3。在监测浓度范围内,Miniram可吸入性浓度与在线呼吸性粉尘浓度无显著差异(p >或= 0.05),Miniram在线过滤器浓度与并排呼吸性粉尘浓度无显著差异(p >或= 0.05)。而Miniram呼吸浓度与传统呼吸浓度差异有统计学意义(p = 0.02)。统计分析系统(SAS)程序CALIS满足对两个变量(每个变量都有误差)制定校准线的统计要求,用于制定现场校准曲线,以比较直读仪器浓度与国家职业安全与卫生研究所传统方法对总粉尘和呼吸性粉尘的浓度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation and field calibration of the Miniram PDM-3 aerosol monitor for measuring respirable and total coal dust.

The MIE Miniram PDM-3 is a real-time aerosol dust monitor designed to measure dust based on Mie scattering. It has an optional in-line filter that, when attached to a constant flow air sampling pump, allows a gravimetric air sample to be collected from the same air stream that passes through the Miniram sensing chamber. This study compared real-time Miniram digital respirable and total dust readings with concentrations from an in-line 5 microns polyvinyl chloride filter connected to a constant flow pump and with results from traditional respirable and total dust samples. Area samples were collected at three coal-fired power generating facilities over a 2-month period. Traditional respirable dust concentrations ranged from 0.04 to 10.8 mg/m3. In the monitored range of concentrations the Miniram respirable concentrations and the in-line respirable dust concentrations were not significantly different (p > or = 0.05), nor were the Miniram in-line filter concentrations and the side-by-side respirable dust concentrations significantly different (p > or = 0.05). However, the Miniram respirable concentrations and the traditional respirable concentrations were significantly different (p = 0.02). The Statistical Analysis System (SAS) procedure CALIS, which meets the statistical requirements for developing calibration lines for two variables each measured with error, is used to develop field calibration curves for the comparisons between direct-reading instrument concentrations and concentrations from traditional National Institute for Occupational Safety and Health methods for total and respirable dust.

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