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'Designer' Biodiesel: Optimizing Fatty Ester Composition to Improve Fuel Properties

机译:“设计师”生物柴油:优化脂肪酯成分以改善燃料特性

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摘要

Biodiesel is a domestic and renewable alternative with the potential to replace some of the petrodiesel market. It is obtained from vegetable oils, animal fats, or other sources with a significant content of triacylglycerols by means of a transesterification reaction. The fatty acid profile of biodiesel thus corresponds to that of the parent oil or fat and is a major factor influencing fuel properties. Besides being renewable and of domestic origin, advantages of biodiesel compared to petrodiesel include biodegradability, higher flash point, reduction of most regulated exhaust emissions, miscibility in all ratios with petrodiesel, compatibility with the existing fuel distribution infrastructure, and inherent lubricity. Technical problems with biodiesel include oxidative stability, cold flow, and increased NO_x exhaust emissions. Solutions to one of these problems often entail increasing the problematic behavior of another property and have included the use of additives or modifying the fatty acid composition, either through physical processes, such as winterization, or through genetic modification. Methyl oleate has been proposed as a suitable major component of biodiesel in this connection. In this work, the properties of various potential major components of biodiesel are examined and compared. For example, while methyl oleate has been suggested as such a major component, methyl palmitoleate has advantages compared to methyl oleate, especially with regards to low-temperature properties. Other materials that are examined in this connection are short-chain (C_8-C_(10)) saturated esters, with only C_(10) esters appearing suitable. It is also suggested that to obtain biodiesel fuel with favorable properties, it is advantageous for the fuel to consist of only one major component in as high a concentration as possible; however, mixtures of components with advantageous properties as described here may also be acceptable.
机译:生物柴油是一种家用和可再生的替代品,具有取代某些石油柴油市场的潜力。它是通过酯交换反应从植物油,动物脂肪或其他含量很高的三酰基甘油中获得的。因此,生物柴油的脂肪酸谱与母油或脂肪的脂肪酸谱相对应,并且是影响燃料特性的主要因素。除了可再生和国内来源外,生物柴油与石油柴油相比的优势还包括生物可降解性,更高的闪点,减少了大多数受管制的废气排放,与石油柴油在所有比例下的互溶性,与现有燃料分配基础设施的兼容性以及固有的润滑性。生物柴油的技术问题包括氧化稳定性,冷流和增加的NO_x废气排放。解决这些问题中的一个通常需要增加另一种性能的问题行为,并且包括使用添加剂或通过物理过程(例如防寒)或通过基因修饰来修饰脂肪酸组成。在这方面,已经提出油酸甲酯作为生物柴油的合适的主要成分。在这项工作中,对生物柴油的各种潜在主要成分的特性进行了检查和比较。例如,尽管已经提出油酸甲酯是这样的主要成分,但是棕榈油酸酯甲基酯与油酸甲酯相比具有优势,特别是在低温性能方面。在这方面检查的其他材料是短链(C_8-C_(10))饱和酯,只有C_(10)酯看来是合适的。还建议为了获得具有良好性能的生物柴油燃料,有利的是,该燃料仅由一种主要成分以尽可能高的浓度组成。然而,这里描述的具有有利性能的组分的混合物也是可以接受的。

著录项

  • 来源
    《Energy & fuels》 |2008年第2期|p.1358-1364|共7页
  • 作者

    Gerhard Knothe;

  • 作者单位

    National Center for Agricultural Utilization Research, Agricultural Research Service, United States Department of Agriculture, Peoria, Illinois 61604;

  • 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 TK-;
  • 关键词

  • 入库时间 2022-08-18 00:42:33

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