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首页> 外文期刊>RSC Advances >Comparative evaluation of the blends of gas-to-liquid (GTL) fuels and biodiesels with diesel at high idling conditions: an in-depth analysis on engine performance and environment pollutants
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Comparative evaluation of the blends of gas-to-liquid (GTL) fuels and biodiesels with diesel at high idling conditions: an in-depth analysis on engine performance and environment pollutants

机译:在高怠速条件下柴油燃气 - 液(GTL)燃料和生物柴油混合物的比较评价:对发动机性能和环境污染物的深入分析

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摘要

This study focuses on the physicochemical fuel characteristics and engine performance-emission features of three prospective alternative transportation fuels: Alexandrian laurel biodiesel (ALBD), jatropha biodiesel (JBD) and GTL fuel at high idling conditions. The blends of GTL fuel (G10, G20), JBD (J10, J20) and ALBD (AL10, AL20) with diesel had been investigated in a multi-cylinder diesel engine at different load-speed conditions. Analysis of the fuel properties showed a linear variation of the major fuel properties with an increase of alternative fuel quantity in the blends. Engine performance test results revealed an average decrease of brake specific fuel consumption (BSFC) (ca. 8.65-12.26%) and brake specific energy consumption (BSEC) (ca. 8.27-11.51%), but a higher brake thermal efficiency (BTE) (ca. 8.56-12.58%) by GTL blends, whereas, the biodiesel blends showed higher BSFC (ca. 5.01-12.18%) and BSEC (ca. 3.41-9.67%) and lower BTE (ca. 3.68-9.93%), respectively, than those of diesel. Referring to the emission analysis, the results revealed that GTL blends showed a slight reduction in NOx (ca. 3.89-6.85%), but a significant reduction in CO (ca. 48.25-51.38%), HC (ca. 44.81-51.43%) and smoke (ca. 15.21-18.78%), respectively, when compared to diesel. The biodiesel blends demonstrated reduced CO (on average ca. 29.12-33.71%), HC (ca. 29.67-35.46%) and smoke (ca. 2.49-6.87%), but increased NOx (on average ca. 2.83-9.81%), respectively, than those of diesel.
机译:本研究重点介绍了三个前瞻性交通燃料的物理化学燃料特性和发动机性能 - 排放特征:亚历山大月桂树生物柴油(ALBD),高潮生物柴油(JBD)和GTL燃料在高怠速条件下。在不同的负载速度条件下,已经在多缸柴油发动机中研究了GTL燃料(G10,G20),JBD(J10,J20)和ALBD(AL10,AL20)的混合物。对燃料特性的分析显示主要燃料特性的线性变化,随着共混物中的替代燃料量的增加。发动机性能测试结果显示制动特定燃料消耗(BSFC)(CA.8.65-12.26%)和制动特定能耗(BSEC)(CA.8.27-11.51%)的平均降低,但制动热效率更高(BTE) (CA.8.56-12.58%)通过GTL混合物,而生物柴油混合物显示出更高的BSFC(CA. 5.01-12.18%)和BSEC(约3.41-9.67%)和低级BTE(约3.68-9.93%),分别比柴油的那些。参考排放分析,结果表明,GTL共混物在NOx(约3.89-6.85%)中略微减少,但CO(约48.25-51.38%),HC(约34.81-51.43%的显着减少)与柴油相比,分别烟雾(约15.21-18.78%)。生物柴油混合物证明了CO(平均约29.12-33.71%),HC(约29.67-35.46%)和烟雾(约2.49-6.87%),但NOx增加(平均CA.2.83-9.81%)分别比柴油的那些。

著录项

  • 来源
    《RSC Advances》 |2015年第17期|共10页
  • 作者单位

    Univ Malaya Fac Engn Ctr Energy Sci Dept Mech Engn Kuala Lumpur 50603 Malaysia;

    Univ Malaya Fac Engn Ctr Energy Sci Dept Mech Engn Kuala Lumpur 50603 Malaysia;

    Univ Malaya Fac Engn Ctr Energy Sci Dept Mech Engn Kuala Lumpur 50603 Malaysia;

    Univ Malaya Fac Engn Ctr Energy Sci Dept Mech Engn Kuala Lumpur 50603 Malaysia;

    Univ Malaya Fac Engn Ctr Energy Sci Dept Mech Engn Kuala Lumpur 50603 Malaysia;

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

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