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细颗粒物(PM)测量:个人及室内空气监测。

Fine PM measurements: personal and indoor air monitoring.

作者信息

Jantunen M, Hänninen O, Koistinen K, Hashim J H

机构信息

EC Joint Research Centre, Institute of the Environment, Air Quality Unit, TP 272, 1-21020 Ispra (VA), Italy.

出版信息

Chemosphere. 2002 Dec;49(9):993-1007. doi: 10.1016/s0045-6535(02)00272-2.

Abstract

This review compiles personal and indoor microenvironment particulate matter (PM) monitoring needs from recently set research objectives, most importantly the NRC published "Research Priorities for Airborne Particulate Matter (1998)". Techniques and equipment used to monitor PM personal exposures and microenvironment concentrations and the constituents of the sampled PM during the last 20 years are then reviewed. Development objectives are set and discussed for personal and microenvironment PM samplers and monitors, for filter materials, and analytical laboratory techniques for equipment calibration, filter weighing and laboratory climate control. The progress is leading towards smaller sample flows, lighter, silent, independent (battery powered) monitors with data logging capacity to store microenvironment or activity relevant sensor data, advanced flow controls and continuous recording of the concentration. The best filters are non-hygroscopic, chemically pure and inert, and physically robust against mechanical wear. Semiautomatic and primary standard equivalent positive displacement flow meters are replacing the less accurate methods in flow calibration, and also personal sampling flow rates should become mass flow controlled (with or without volumetric compensation for pressure and temperature changes). In the weighing laboratory the alternatives are climatic control (set temperature and relative humidity), and mechanically simpler thermostatic heating, air conditioning and dehumidification systems combined with numerical control of temperature, humidity and pressure effects on flow calibration and filter weighing.

摘要

本综述汇集了近期设定的研究目标中个人和室内微环境颗粒物(PM)监测的需求,其中最重要的是美国国家研究委员会(NRC)发表的《空气中颗粒物的研究重点(1998)》。随后回顾了过去20年用于监测PM个人暴露、微环境浓度以及采样PM成分的技术和设备。针对个人和微环境PM采样器及监测器、过滤材料以及用于设备校准、滤膜称重和实验室气候控制的分析实验室技术,设定并讨论了发展目标。进展正朝着更小的采样流量、更轻便、静音、独立(电池供电)且具备数据记录能力以存储微环境或与活动相关的传感器数据、先进的流量控制以及浓度连续记录的监测器发展。最佳的滤膜应具有非吸湿性、化学纯净且惰性、对机械磨损具有物理耐久性。半自动和等同于一级标准的正排量流量计正在取代流量校准中准确性较低的方法,并且个人采样流量也应实现质量流量控制(无论是否对压力和温度变化进行体积补偿)。在称重实验室中,可选择气候控制(设定温度和相对湿度),以及结合了对温度、湿度和压力对流量校准和滤膜称重影响进行数控的机械结构更简单的恒温加热、空调和除湿系统。

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