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REDUCTION OF PAH AND SOOT IN PREMIXED ETHYLENE-AIR FLAMES BY ADDITION OF DIMETHYL ETHER

机译:通过添加二甲醚减少乙烯-混合火焰中的PAH和烟尘

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摘要

Results are presented from a combined experimental and modeling study undertaken to understand the pathways by which the addition of dimethyl ether (DME) to fuel-rich ethylene flames causes reductions in PAH and soot. The experimental work was conducted in a flat-flame burner at equivalence ratios of 2.34 and 2.64. DME was added to the ethylene at two levels corresponding to 5 and 10% oxygen by weight in the fuel. Soot was measured by laser-induced incandescence calibrated with light extinction, and aromatic species were measured using laser-induced fluorescence. Modeling was based on a 1D, premixed flame model and kinetic mechanisms described in the literature. The modeling work captures the trends in aromatic species with changes in equivalence ratio and oxygen concentration in the fuel. However, the soot predictions do not match the increases observed at the higher equivalence ratio. Analysis of the modeling results for the lower equivalence ratio shows that the addition of DME to the ethylene reduces the aromatic species by increasing the concentration of oxidizing radicals, OH and O, and by reducing the amount of carbon that is available to form precursor species.
机译:结果来自于一项结合实验和模型研究的研究,目的是为了理解向富含燃料的乙烯火焰中添加二甲醚(DME)导致PAH和烟灰减少的途径。实验工作在平焰燃烧器中进行,当量比为2.34和2.64。将DME以对应于燃料中氧的5重量%和10重量%的氧的两个水平加入乙烯中。通过用消光校准的激光诱导白炽度来测量烟灰,并使用激光诱导荧光来测量芳香族物种。建模基于文献中描述的一维,预混火焰模型和动力学机制。建模工作捕获了当量比和燃料中氧浓度变化时芳香族物质的趋势。但是,烟灰预测与在较高当量比下观察到的增加不匹配。对较低当量比的建模结果的分析表明,向乙烯中添加DME可以通过增加氧化自由基OH和O的浓度以及减少可用于形成前体物种的碳量来减少芳族物质。

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