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The AIDA soot aerosol characterisation campaign 1999

机译:AIDA烟尘气溶胶表征运动1999

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An intensive soot aerosol characterisation camapgin was organised in October 1999 at the large aerosol chamber facility AIDA in Karlsruhe,with the participation of scientists from nine Austrian,German,Russian,and Swiss Research Centres and Universities who contributed special equipment and expertise.The main goal was a comprehensive physical and chemical characterisation of soot aerosol from a modern turbo Diesel passenger can equipped with an oxidation catalyst,in comparison with artifiical soot aerosol ("Palas" soot) from a commercial spark discharge generator which is often used as a surrogate for combustion soot in laboratory studies.Included were expeirments with pure ammonium sulphate aerosol as well as its external mixtures with soot aerosols,and their evolution to partially internal ixtures on time scales up to 45 h.Effects of organic coatings on various aerosol properties,generated in situ by heterogeneous nucleation to products from the reaction of alpha-pinene with ozone were also investigated.The purposeof this paper is to present an overview of the whole campaign.This includes the description of technical and modelling tools,standard procedures,and the presentation of experimental parameters in tabular form,as a common background for a series of companion papers which focus on selected scientific issues.Included is a comparison between Diesel and spark generated soot in terms of their Raman and ESR spectra.The most remarkable differenceis the large spin density in spark generated soot,which exceeds that of Diesel soot by an order of magnitude.However,the spin densities in both materials are too small to affect the surface properties of soot aerosols to a significant extent.
机译:1999年10月,在卡尔斯鲁厄的大型气雾室AIDA上组织了一次密集的烟灰气溶胶特征定型摄影机,来自9个奥地利,德国,俄罗斯和瑞士研究中心和大学的科学家参加了会议,他们贡献了特殊的设备和专业知识。是对配备了氧化催化剂的现代涡轮增压柴油机乘客的烟灰气溶胶的综合物理和化学表征,与商用火花放电发生器的人工烟灰气溶胶(“帕拉斯”烟灰)相比,后者通常用作燃烧的替代物包括纯硫酸铵气雾剂及其与烟灰气雾剂的外部混合物的实验,以及在长达45小时的时间范围内它们演变为部分内部混合物的实验。通过异质成核形成α-pine烯与臭氧的反应产物本文的目的是介绍整个活动,其中包括技术和建模工具的描述,标准程序以及以表格形式显示实验参数,作为一系列同伴的共同背景。本文着重研究某些科学问题,包括对柴油和火花产生的烟灰的拉曼光谱和ESR谱进行比较。最显着的区别是火花产生的烟灰的自旋密度大,比柴油烟灰高约一个数量级。但是,两种材料的自旋密度都太小,无法在很大程度上影响烟尘气溶胶的表面特性。

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