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Impact of Biofuel Blends on Black Carbon Emissions from a Gas Turbine Engine

机译:生物燃料混合对燃气轮机发动机黑碳排放的影响

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摘要

Presented here is an overview of nonvolatile particulate matter (nvPM) emissions, i.e., "soot", as assessed by TEM analyses of samples collected after the exhaust of a J-85 turbojet fueled with Jet-A as well as with blends of Jet-A and Camelina biofuel. A unifying explanation is provided to illustrate the combustion dynamics of biofuel and Jet-A fuel. The variations of primary particle size, aggregate size, and nanostructure are analyzed as a function of biofuel blend across a range of engine thrust levels. The postulate is based on where fuels start along the soot formation pathway. Increasing biofuel content lowers aromatic concentration while placing increasing dependence upon fuel pyrolysis reactions to form the requisite concentration of aromatics for particle inception and growth. The required "kinetic" time for pyrolysis reactions to produce benzene and multiring PAHs allows increased fuel-air mixing by turbulence, diluting the fuel-rich soot-forming regions, effectively lowering their equivalence ratio. With a lower precursor concentration, particle inception is slowed, the resulting concentration of primary particles is lowered, and smaller aggregates were measured. The lower equivalence ratio also results in smaller primary particles because of the lower concentration of growth species.
机译:此处展示了非挥发性颗粒物质(NVPM)排放,即“烟灰”,例如通过在J-85涡轮喷气发线的排气后收集的样品的TEM分析评估,其中J-85涡轮喷气喷射和喷射混合物 - A和Camelina Biofueluel。提供统一的解释来说明生物燃料和喷射燃料的燃烧动态。作为生物燃料混合在一系列发动机推力水平的函数中,分析了一次粒径,骨料尺寸和纳米结构的变化。假设基于燃料沿烟灰形成途径的位置。增加生物燃料含量降低了芳香浓度,同时放置促进燃料热解反应的依赖性,以形成颗粒初始和生长的必要浓度的芳族化合物。产生苯和多际PAH的热解反应所需的“动力学”时间允许通过湍流增加燃料 - 空气混合,稀释富含燃料的烟灰形成区域,有效降低其等当量比。具有较低的前体浓度,粒子初始化减缓,所得初级颗粒的浓度降低,并测量较少的聚集体。由于生长物种浓度较低,等效比也导致较小的初级颗粒。

著录项

  • 来源
    《Energy & fuels》 |2020年第4期|4958-4966|共9页
  • 作者单位

    Penn State Univ John & Willie Leone Family Dept Energy & Mineral University Pk PA 16802 USA|Penn State Univ EMS Energy Inst University Pk PA 16802 USA;

    Penn State Univ John & Willie Leone Family Dept Energy & Mineral University Pk PA 16802 USA|Penn State Univ EMS Energy Inst University Pk PA 16802 USA;

    Penn State Univ John & Willie Leone Family Dept Energy & Mineral University Pk PA 16802 USA|Penn State Univ EMS Energy Inst University Pk PA 16802 USA;

    Penn State Univ John & Willie Leone Family Dept Energy & Mineral University Pk PA 16802 USA|Penn State Univ EMS Energy Inst University Pk PA 16802 USA;

    US EPA Off Res & Dev Ctr Environm Measurement & Modeling Res Triangle Pk NC 27711 USA;

    US EPA NVFEL Res Triangle Pk NC 27711 USA;

    US EPA NVFEL Res Triangle Pk NC 27711 USA;

    US EPA NVFEL Res Triangle Pk NC 27711 USA;

    US Air Force AEDC Arnold Air Force Base TN 37389 USA;

    US Air Force AEDC Arnold Air Force Base TN 37389 USA;

    Pacific Northwest Natl Lab US DOE Richland WA 99352 USA;

    Pacific Northwest Natl Lab US DOE Richland WA 99352 USA;

    Artium Technol Inc Sunnyvale CA 94085 USA;

    Artium Technol Inc Sunnyvale CA 94085 USA;

    Artium Technol Inc Sunnyvale CA 94085 USA;

    Ltd Liabil Co Singular Sci Consulting Serv Whitmore Lake MI 48189 USA;

    Aerodyne Res Inc Billerica MA 01821 USA;

    Aerodyne Res Inc Billerica MA 01821 USA;

    Univ Minnesota Dept Mech Engn 111 Church St SE Minneapolis MN 55455 USA;

    Univ Minnesota Dept Mech Engn 111 Church St SE Minneapolis MN 55455 USA;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 22:24:53

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