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首页> 外文期刊>Fuel >Experimental investigation of performance, emission and combustion characteristics of an indirect injection multi-cylinder CI engine fuelled by blends of de-inking sludge pyrolysis oil with biodiesel
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Experimental investigation of performance, emission and combustion characteristics of an indirect injection multi-cylinder CI engine fuelled by blends of de-inking sludge pyrolysis oil with biodiesel

机译:污泥热解油与生物柴油混合燃料为燃料的间接喷射多缸CI发动机性能,排放和燃烧特性的实验研究

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摘要

De-inking sludge can be converted into useful forms of energy to provide economic and environmental benefits. In this study, pyrolysis oil produced from de-inking sludge through an intermediate pyrolysis technique was blended with biodiesel derived from waste cooking oil, and tested in a multi-cylinder indirect injection type CI engine. The physical and chemical properties of pyrolysis oil and its blends (20 and 30 vol.%) were measured and compared with those of fossil diesel and pure biodiesel (B100). Full engine power was achieved with both blends, and very little difference in engine performance and emission results were observed between 20% and 30% blends. At full engine load, the brake specific fuel consumption on a volume basis was around 6% higher for the blends when compared to fossil diesel. The brake thermal efficiencies were about 3-6% lower than biodiesel and were similar to fossil diesel. Exhaust gas emissions of the blends contained 4% higher CO_2 and 6-12% lower NO_x, as compared to fossil diesel. At full load, CO emissions of the blends were decreased by 5-10 times. The cylinder gas pressure diagram showed stable engine operation with the 20% blend, but indicated minor knocking with 30% blend. Peak cylinder pressure of the 30% blend was about 5-6% higher compared to fossil diesel. At full load, the peak burn rate of combustion from the 30% blend was about 26% and 12% higher than fossil diesel and biodiesel respectively. In comparison to fossil diesel the combustion duration was decreased for both blends; for 30% blend at full load, the duration was almost 12% lower. The study concludes that up to 20% blend of de-inking sludge pyrolysis oil with biodiesel can be used in an indirect injection CI engine without adding any ignition additives or surfactants.
机译:脱墨污泥可转化为有用的能源形式,以提供经济和环境效益。在这项研究中,通过中间热解技术将污泥脱墨产生的热解油与废烹饪油中的生物柴油混合,并在多缸间接喷射式CI发动机中进行了测试。测量了热解油及其混合物(20%和30%(体积))的物理和化学性质,并与化石柴油和纯生物柴油(B100)进行了比较。两种混合物均达到了全发动机功率,在20%至30%的混合物中,观察到的发动机性能和排放结果差异很小。与化石柴油相比,在满载发动机情况下,混合燃料的制动器比油耗(按体积计)高出约6%。制动热效率比生物柴油低约3-6%,与化石柴油相似。与化石柴油相比,混合气的废气排放包含高出4%的CO_2和低6-12%的NO_x。在满负荷时,共混物的CO排放量减少了5-10倍。汽缸气压图显示了20%混合气时发动机的稳定运行,但显示了30%混合气的轻微爆震。与化石柴油相比,30%混合气的峰值气缸压力高出约5-6%。在满负荷情况下,掺混量为30%的燃料的峰值燃烧率分别比化石柴油和生物柴油高约26%和12%。与化石柴油相比,两种混合物的燃烧时间均缩短了。如果在满负荷下混合30%,则持续时间降低了近12%。研究得出的结论是,在不添加任何点火添加剂或表面活性剂的情况下,间接喷射CI发动机可使用脱墨污泥热解油与生物柴油的多达20%的混合物。

著录项

  • 来源
    《Fuel》 |2013年第3期|135-142|共8页
  • 作者单位

    European Bioenergy Research Institute (EBRI), School of Engineering and Applied Science, Aston University, Birmingham B4 7ET, UK;

    European Bioenergy Research Institute (EBRI), School of Engineering and Applied Science, Aston University, Birmingham B4 7ET, UK;

    European Bioenergy Research Institute (EBRI), School of Engineering and Applied Science, Aston University, Birmingham B4 7ET, UK;

    European Bioenergy Research Institute (EBRI), School of Engineering and Applied Science, Aston University, Birmingham B4 7ET, UK;

    European Bioenergy Research Institute (EBRI), School of Engineering and Applied Science, Aston University, Birmingham B4 7ET, UK;

    European Bioenergy Research Institute (EBRI), School of Engineering and Applied Science, Aston University, Birmingham B4 7ET, UK;

    PIRA International, Leatherhead, Surrey, UK;

    European Bioenergy Research Institute (EBRI), School of Engineering and Applied Science, Aston University, Birmingham B4 7ET, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CI engine; de-inking sludge; pyrolysis oil; performance; emission;

    机译:CI引擎;脱墨污泥;热解油性能;发射;

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