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21 世纪内燃机气溶胶测量指南。

Directions for combustion engine aerosol measurement in the 21st century.

机构信息

Chemical Engineering Department, Research and Advanced Engineering, Ford Motor Company, Dearborn, MI 48121, USA.

出版信息

J Air Waste Manag Assoc. 2010 Oct;60(10):1165-76. doi: 10.3155/1047-3289.60.10.1165.

Abstract

The Coordinating Research Council convened two Real-Time PM Measurement Workshops in December 2008 and March 2009 to take an intensive look at the current status and future directions of combustion aerosol measurement. The purpose was to examine the implications of parallel rapid developments over the past decade in ambient aerosol science, engine aftertreatment technology, and aerosol measurement methodology, which provide benefits and challenges to the stakeholders in air quality management. The workshops were organized into sessions targeting key issues in ambient and source combustion particulate matter (PM). These include (1) metrics to characterize and quantify PM, (2) the need to reconcile ambient and source measurements, (3) the role of atmospheric transformations on modeling emissions and exposures, (4) the impact of sampling conditions on PM measurement, and (5) the potential benefits of novel PM instrumentation. This paper distills the material presented by subject experts and the insights derived from the in-depth discussions that formed the core of each session. The paper's objectives are to identify areas of consensus that allow wider practical application of the past decade's advances in combustion aerosol measurement to improve emissions and air quality modeling, develop emissions reduction strategies, and to recommend directions for progress on issues in which uncertainties remain.

摘要

协调研究理事会于 2008 年 12 月和 2009 年 3 月召开了两次实时 PM 测量研讨会,深入研究了当前的现状和未来的发展方向。目的是检查过去十年中在环境气溶胶科学、发动机后处理技术和气溶胶测量方法方面的平行快速发展的影响,这些发展为空气质量管理者带来了利益和挑战。研讨会分为针对环境和源燃烧颗粒物(PM)关键问题的环节。这些问题包括:(1)用于描述和量化 PM 的指标,(2)协调环境和源测量的必要性,(3)大气转化对排放和暴露建模的作用,(4)采样条件对 PM 测量的影响,以及(5)新型 PM 仪器的潜在好处。本文提炼了主题专家提出的材料以及从每个环节的深入讨论中得出的见解。本文的目的是确定达成共识的领域,以便更广泛地将过去十年在燃烧气溶胶测量方面的进展应用于改善排放和空气质量建模、制定减排战略,并就存在不确定性的问题推荐进展方向。

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