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Polycyclic Aromatic Hydrocarbon Emissions from the Combustion of Alternative Fuels in a Gas Turbine Engine

机译:燃气轮机中替代燃料燃烧产生的多环芳烃排放量

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摘要

We report on the particulate-bound polycyclic aromatic hydrocarbons (PAH) in the exhaust of a test-bed gas turbine engine when powered by Jet A-I aviation fuel and a number of alternative fuels: Sasol fully synthetic jet fuel (FSJF),Shell gas-to-liquid (GTL) kerosene,and Jet A-I/GTL 50:50 blended kerosene.The concentration of PAH compounds in the exhaust emissions vary greatly between fuels.Combustion of FSJF produces the greatest total concentration of PAH compounds while combustion of GTL produces die least.However,when PAHs in the exhaust sample are measured in terms of the regulatory marker compound benzo[(a]pyrene,then all of the alternative fuels emit a lower concentration of PAH in comparison to Jet A-I.Emissions from the combustion of Jet A-I/GTL blended kerosene were found to have a disproportionately low concentration of PAHs and appear to inherit a greater proportion of the GTL emission characteristics than would be expected from volume fraction alone.The data imply the presence of a nonlinear relation between fuel blend composition and the emission of PAH compounds.For each of the fuels,the speciation of PAH compounds present in the exhaust emissions were found to be remarkably similar (R~2 = 0.94-0.62),and the results do provide evidence to support the premise that PAH speciation is to some extent indicative of the emission source.In contrast,no correlation was found between the PAH species present in the fuel with those subsequently emitted in the exhaust.The results strongly suggests that local air quality measured in terms of the particulate-bound PAH burden could be significantly improved by the use of GTL kerosene either blended with or in place of Jet A-I kerosene.
机译:我们报告了使用Jet AI航空燃料和多种替代燃料(如Sasol完全合成喷气燃料(FSJF),壳牌汽油-燃料)驱动的试验台燃气涡轮发动机排气中与颗粒结合的多环芳烃(PAH)到液态(GTL)煤油和Jet AI / GTL 50:50混合煤油。燃料中废气中PAH化合物的浓度差异很大.FSJF燃烧产生的PAH化合物总浓度最大,而GTL燃烧则产生死亡。但是,当以调节标记化合物苯并[[a] py]来测量排气样品中的PAH时,与Jet AI相比,所有替代燃料的PAH浓度都较低。Jet燃烧产生的排放物发现AI / GTL混合煤油的PAHs浓度不成比例地降低,并且似乎继承了GTL排放特征的比例比仅从体积分数中所预期的更大。混合燃料的成分与PAH化合物的排放之间存在非线性关系。对于每种燃料,发现尾气排放中存在的PAH化合物的形态非常相似(R〜2 = 0.94-0.62),并且结果确实提供了证据来支持PAH形态在一定程度上指示排放源的前提。相反,在燃料中存在的PAH物种与随后在排气中排放的PAH物种之间未发现相关性。通过将GTL煤油与Jet AI煤油混合或替代使用,可以显着改善以颗粒物吸附的PAH负荷衡量的空气质量。

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  • 来源
    《Environmental Science & Technology》 |2012年第11期|p.6393-6400|共8页
  • 作者单位

    Dalton Research Institute,Manchester Metropolitan University,Manchester,Ml SGD,United Kingdom;

    Dalton Research Institute,Manchester Metropolitan University,Manchester,Ml SGD,United Kingdom;

    Dalton Research Institute,Manchester Metropolitan University,Manchester,Ml SGD,United Kingdom;

    School of Earth,Atmospheric and Environmental Science,University of Manchester,Manchester,M13 9PL,United Kingdom;

    Department of Mechanical Engineering,University of Sheffield,Sheffield,Sll 8JG,United Kingdom;

    Department of Mechanical Engineering,University of Sheffield,Sheffield,Sll 8JG,United Kingdom;

    Department of Mechanical Engineering,University of Sheffield,Sheffield,Sll 8JG,United Kingdom;

    Centre of Excellence for Aerospace Parbculate Emissions Reduction Research,Missouri University of Science and Technology,Rolla,Missouri 65409,United States;

    Centre of Excellence for Aerospace Parbculate Emissions Reduction Research,Missouri University of Science and Technology,Rolla,Missouri 65409,United States;

    Centre of Excellence for Aerospace Parbculate Emissions Reduction Research,Missouri University of Science and Technology,Rolla,Missouri 65409,United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-17 14:02:43

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