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Biodiesel Ethers: Fatty Acid-Derived Alkyl Ether Fuels as Improved Bioblendstocks for Mixing-Controlled Compression Ignition Engines

机译:生物柴油醚:脂肪酸衍生的烷基醚燃料,作为用于混合控制压缩点火发动机的改进的生物钳

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摘要

In the last 20 years, biodiesel consumption in the United States has rapidly increased to similar to 2 billion gallons per year as a renewable supplement to fossil fuel. However, further expansion of biodiesel use is currently limited in part by poor cold weather performance, which prevents year-round blending and necessitates blend walls = 5% v/v. In order to provide a diesel fuel blendstock with improved cold weather performance (cloud point, pour point, and cold filter plug point), while at the same time maintaining other required fuel performance specifications, several biodiesel redox analogues were synthesized and tested. The best performing candidate fuels from this class showed improvement in the derived cetane number (29.3% shorter ignition delay), lower heating value (+4.7 MJ/kg), relative sooting tendency (-7.4 YSI/MJ), and cloud point (15 degrees C lower) when compared to a B100 biodiesel composed of an identical fatty acid profile. It was observed as a general trend that the reduced form of biodiesel, fatty alkyl ethers (FAEs), shows performance improvements in all fuel property metrics. The suite of improved properties provided by FAEs gives biodiesel producers the opportunity to diversify their portfolio of products derived from lipid and alcohol feedstocks to include long-chain alkyl ethers, a biodiesel alternative with particular applicability for winter weather conditions across the US.
机译:在过去的20年中,美国的生物柴油消费量迅速增加到每年20亿加仑,作为化石燃料的可再生补充剂。然而,进一步扩大生物柴油使用目前部分受到寒冷天气性能差的影响,这可以防止圆形混合,需要混合壁<= 5%v / v。为了提供具有改善的寒冷天气性能(浊点,倾点和冷过滤器插头)的柴油燃料混纺器,同时保持其他所需的燃料性能规格,合成并测试了几种生物柴油氧化还原物类似物。来自该阶级的最佳表现候选燃料显示出改善的十六烷值(较短的点火延迟),更低的加热值(+ 4.7mJ / kg),相对烟灰倾向(-7.4 ysi / mj)和云点(15与由相同的脂肪酸分布组成的B100生物柴油相比,降低)。它被观察到作为生物柴油,脂肪烷基醚(FEES)的减少形式,显示出所有燃料性质指标的性能改善。 FAE提供的改进物业套件使生物柴油生产商有机会使其衍生自脂质和醇原料的产品组合多样化,包括长链烷基醚,生物柴油替代品,对美国冬季天气条件特别适用性。

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  • 来源
    《Energy & fuels》 |2020年第10期|12646-12653|共8页
  • 作者单位

    Sandia Natl Labs Bioresource & Environm Secur Dept Livermore CA 94550 USA;

    Sandia Natl Labs Bioresource & Environm Secur Dept Livermore CA 94550 USA;

    Sandia Natl Labs Bioresource & Environm Secur Dept Livermore CA 94550 USA;

    Yale Univ Dept Chem & Environm Engn New Haven CT 06520 USA;

    Yale Univ Dept Chem & Environm Engn New Haven CT 06520 USA;

    Sandia Natl Labs Bioresource & Environm Secur Dept Livermore CA 94550 USA;

    Yale Univ Dept Chem & Environm Engn New Haven CT 06520 USA;

    Sandia Natl Labs Bioresource & Environm Secur Dept Livermore CA 94550 USA;

    Sandia Natl Labs Bioresource & Environm Secur Dept Livermore CA 94550 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
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