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Evolution of charged species in propane/air flames: mass-spectrometric analysis and modelling

机译:丙烷/空气火焰中带电物质的演化:质谱分析和建模

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摘要

Experimental and modelling studies of ion formation during combustion of propane/air mixtures are presented. The positive and negative ions mass/ charge spectra in propane/air stoichiometric flame at atmospheric pressure are recorded in the range from 0 to 512 atomic mass units. The C2H3O+ and HCO2- ions are found to be the most abundant ionic species in the flame front region. By increasing the distance from the flame front the ion composition changes significantly. In the burnt gas region the H3O+, NO+, CO3-, HCO3- ions are found to be the major charged species. To explain the experimental results the extended kinetic model describing the ion formation in flame and in the extraction system of the mass-spectrometer as well as ion - soot interaction is developed. It is shown that the ionic clusters, which are observed experimentally, form during the adiabatic expansion in the extraction system, and the presence of soot particles may change the total positive and negative ion concentrations in the gas phase.
机译:提出了丙烷/空气混合物燃烧过程中离子形成的实验和模型研究。在大气压下,丙烷/空气化学计量火焰中的正负离子质量/电荷谱记录在0到512原子质量单位的范围内。发现C2H3O +和HCO2-离子是火焰前沿区域中最丰富的离子种类。通过增加与火焰前沿的距离,离子组成会发生明显变化。在燃烧气体区域,发现H3O +,NO +,CO3-,HCO3-离子是主要的带电物质。为解释实验结果,建立了扩展的动力学模型,该模型描述了火焰和质谱仪提取系统中离子的形成以及离子-烟灰的相互作用。结果表明,在萃取系统的绝热膨胀过程中,实验观察到的离子簇形成,烟灰颗粒的存在可能改变气相中总的正离子和负离子浓度。

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