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首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Application of a hygroscopicity tandem differential mobility analyzer for characterizing PM?emissions in exhaust plumes from an aircraft engine burning conventional and alternative fuels
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Application of a hygroscopicity tandem differential mobility analyzer for characterizing PM?emissions in exhaust plumes from an aircraft engine burning conventional and alternative fuels

机译:吸湿性串联差分迁移率分析仪用于表征PM的燃烧常规燃料的飞机发动机排放

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摘要

In the last several decades, significant efforts have been directed toward better understanding the gaseous and particulate matter?(PM) emissions from aircraft gas turbine engines. However, limited information is available on the hygroscopic properties of aircraft engine PM emissions which play an important role in the water absorption, airborne lifetime, obscuring effect, and detrimental health effects of these particles. This paper reports the description and detailed lab-based performance evaluation of a robust hygroscopicity tandem differential mobility analyzer?(HTDMA) in terms of hygroscopic properties such as growth factor?(GF) and the hygroscopicity parameter?(κ). The HTDMA system was subsequently deployed during the Alternative Aviation Fuel EXperiment?(AAFEX)?II field campaign to measure the hygroscopic properties of aircraft engine PM?emissions in the exhaust plumes from a CFM56-2C1 engine burning several types of fuels. The fuels used were conventional JP-8, tallow-based hydroprocessed esters and fatty acids?(HEFA), Fischer–Tropsch, a blend of HEFA and JP-8, and Fischer–Tropsch doped with tetrahydrothiophene (an organosulfur compound). It was observed that GF and κ?increased with fuel sulfur content and engine thrust condition, and decreased with increasing dry particle diameter. The highest GF and κ?values were found in the smallest particles, typically those with diameters of 10nm.
机译:在过去的几十年中,重大努力已经旨在更好地了解飞机燃气轮机发动机的气态和颗粒物质?(PM)排放。然而,有限的信息可用于飞机发动机PM排放的吸湿性,在吸水,空气寿命,模糊效果和这些颗粒的有害健康效果中起着重要作用。本文在吸湿性诸如生长因子(GF)和吸湿性参数(HTDMA)和吸湿性参数(HTDMA)和吸湿性参数(κ)中,报告了鲁棒的吸湿性串联差分迁移率分析仪的描述和详细的实验室的性能评价Δ(HTDMA)?(κ)。(κ)。随后在替代航空燃料实验期间部署了HTDMA系统?(AAFEX)?II场运动,以测量飞机发动机PM的吸湿性的漏光特性吗?来自CFM56-2C1发动机的排气羽毛排放燃烧几种类型的燃料。使用的燃料是常规的JP-8,牛脂的加氢处理酯和脂肪酸?(HEFA),费氏托,HEFA和JP-8的混合物,以及掺杂有四氢噻吩的Fischer-Tropsch(有机硫磺化合物)。观察到GF和κ?随着燃料硫含量和发动机推力条件增加,随着干粒径的增加而降低。最高的GF和κ?在最小的颗粒中发现值,通常是10nm直径的值。

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