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Isopropyl esters as solutions to biodiesel challenges.

机译:异丙基酯可以应对生物柴油挑战。

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摘要

Soy methyl esters when used as biodiesel fuel has problems that are not associated with diesel fuel use such as increased oxides of nitrogen (NOx) emissions; a pollutant, cold flow issues, and limited shelf life. On the production side, there is a limited feedstock supply, and many production facilities are performing under capacity. The work described here will address these two issues through the continued improvement of biodiesel and by the identification of raw material prices when isopropyl esters of animal fat are economically viable. The effects of the fatty acid profile, degree of unsaturation, and alkyl groups on NOx emissions, cold flow, and oxidative stability were studied. The economic feasibility of using isopropyl esters in blends with different alkyl esters was evaluated through the use of a predictive cloud point model as a constraint. The predictive cloud point model was built from experimental data using methyl and isopropyl esters of soybean oil and tallow. Cost minimization was then performed for blends with a cloud point constraint. Through the characterization studies, isopropyl esters showed improvement on the cold flow properties. Steady state NOx emissions from isopropyl esters were NOx neutral or lower than methyl esters from the same feedstock depending on the engine load. Oxidative stability for isopropyl esters was low due to the production process, which removed its vitamin E content. Generally, the minimum cost blend for a specified cloud point is a binary blend. Isopropyl esters from animal fat are economically viable as a blend component if the price difference between methanol and isopropanol is less than {dollar}0.30/1b, where isopropanol is more expensive than methanol, and the price difference between soybean oil and tallow/lard is greater than {dollar}0.10/1b, where soybean oil is more expensive. These findings showed that isopropyl esters are potential solutions to the problems faced by soy methyl esters as a biodiesel fuel.
机译:大豆甲酯用作生物柴油燃料时,会遇到与柴油燃料无关的问题,例如氮氧化物(NOx)排放增加。污染物,冷流问题和有限的保质期。在生产方面,原料供应有限,许多生产设施的产能不足。当动物脂肪的异丙酯在经济上可行时,此处描述的工作将通过不断改进生物柴油和确定原材料价格来解决这两个问题。研究了脂肪酸分布,不饱和度和烷基对NOx排放,冷流和氧化稳定性的影响。通过使用预测浊点模型作为约束条件,评估了在与不同烷基酯的混合物中使用异丙基酯的经济可行性。预测浊点模型是使用大豆油和牛脂的甲基和异丙基酯根据实验数据建立的。然后对具有浊点约束的混合执行成本最小化。通过表征研究,异丙酯显示出冷流性能的改善。异丙基酯的稳态NOx排放量为NOx中性或低于相同原料的甲酯,具体取决于发动机负载。由于生产工艺的原因,异丙酯的氧化稳定性很低,从而消除了维生素E的含量。通常,指定浊点的最低成本混合是二进制混合。如果甲醇和异丙醇之间的价格差小于{0.30 / 1b,其中异丙醇比甲醇贵,并且大豆油与牛脂/拉德啤酒之间的价格差是大于$ 0.10 / 1b,这时豆油价格更高。这些发现表明,异丙基酯是解决大豆甲酯作为生物柴油燃料所面临问题的潜在解决方案。

著录项

  • 作者

    Wang, Paul S.;

  • 作者单位

    University of Idaho.;

  • 授予单位 University of Idaho.;
  • 学科 Engineering Agricultural.; Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业工程;环境污染及其防治;
  • 关键词

  • 入库时间 2022-08-17 11:39:50

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