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燃气轮机颗粒物排放测量方法的评估。

Evaluation of methods for measuring particulate matter emissions from gas turbines.

机构信息

DLR, Institut für Physik der Atmosphäre , Oberpfaffenhofen, 82234 Wessling, Germany.

出版信息

Environ Sci Technol. 2011 Apr 15;45(8):3562-8. doi: 10.1021/es103969v. Epub 2011 Mar 22.

Abstract

The project SAMPLE evaluated methods for measuring particle properties in the exhaust of aircraft engines with respect to the development of standardized operation procedures for particulate matter measurement in aviation industry. Filter-based off-line mass methods included gravimetry and chemical analysis of carbonaceous species by combustion methods. Online mass methods were based on light absorption measurement or used size distribution measurements obtained from an electrical mobility analyzer approach. Number concentrations were determined using different condensation particle counters (CPC). Total mass from filter-based methods balanced gravimetric mass within 8% error. Carbonaceous matter accounted for 70% of gravimetric mass while the remaining 30% were attributed to hydrated sulfate and noncarbonaceous organic matter fractions. Online methods were closely correlated over the entire range of emission levels studied in the tests. Elemental carbon from combustion methods and black carbon from optical methods deviated by maximum 5% with respect to mass for low to medium emission levels, whereas for high emission levels a systematic deviation between online methods and filter based methods was found which is attributed to sampling effects. CPC based instruments proved highly reproducible for number concentration measurements with a maximum interinstrument standard deviation of 7.5%.

摘要

项目 SAMPLE 评估了用于测量飞机发动机废气中颗粒物特性的方法,以期为航空业颗粒物测量制定标准化操作规程。基于过滤器的离线质量方法包括重量法和通过燃烧方法对碳质物质进行化学分析。在线质量方法基于光吸收测量或使用从电迁移率分析仪方法获得的粒径分布测量。使用不同的凝聚粒子计数器 (CPC) 来确定颗粒数浓度。基于过滤器的方法所测量的总质量与重量法测量的质量相差在 8%以内。碳质物质占总质量的 70%,其余 30%归因于水合硫酸盐和非碳质有机物质部分。在线方法在整个测试研究的排放水平范围内具有紧密的相关性。在低到中等排放水平下,燃烧方法得出的元素碳和光学方法得出的黑碳与质量之间的偏差最大为 5%,而对于高排放水平,发现在线方法和基于过滤器的方法之间存在系统偏差,这归因于采样效应。基于 CPC 的仪器在颗粒数浓度测量方面具有高度的可重复性,最大仪器间标准偏差为 7.5%。

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