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Vegetable oil-based microemulsions using carboxylate-based extended surfactants and their potential as an alternative renewable biofuel

机译:使用基于羧酸盐的扩展表面活性剂的植物油基微乳液及其作为替代可再生生物燃料的潜力

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摘要

Recently, vegetable oils have received increased attention as a source of renewable fuels. However, the high viscosity of vegetable oils makes them problematic for long-term use in diesel engines. Therefore, vegetable oil reverse micelle microemulsions have been evaluated as an alternative method of reducing vegetable oil viscosity while eliminating the trans-esterification reaction and avoiding the unpurified glycerol and its environmental problems. Since extended-surfactants can form microemulsions with a high solubilization capacity and with a wide range of oils, extended-surfactant-based reverse micelle microemulsion systems were evaluated in this research. The objective of this research is to study the phase behavior of carboxylate-based extended surfactant microemulsion systems with the goal of formulating optimized systems for biofuel. It was found that carboxylate-based extended surfactants were able to form reverse micelle microemulsions without salt addition, thereby eliminating the phase separation and precipitation which had been observed with sulfate-based extended surfactants. In addition, fuel properties such as viscosity and temperature dependence were favorable and thus support the continued development of these surfactant-based fuel systems for use in diesel engines.
机译:最近,植物油作为可再生燃料的来源已受到越来越多的关注。但是,植物油的高粘度使其成为长期用于柴油发动机的问题。因此,已经评价了植物油反胶束微乳液作为降低植物油粘度同时消除酯交换反应并避免未纯化甘油及其环境问题的替代方法。由于扩展表面活性剂可以形成具有高增溶能力和多种油的微乳液,因此本研究对基于扩展表面活性剂的反胶束微乳液体系进行了评估。这项研究的目的是研究基于羧酸盐的扩展表面活性剂微乳液体系的相行为,以期制定出用于生物燃料的优化体系。发现基于羧酸盐的扩展表面活性剂能够形成反胶束微乳液而无需添加盐,从而消除了基于硫酸盐的扩展表面活性剂所观察到的相分离和沉淀。另外,诸如粘度和温度依赖性之类的燃料性质是有利的,因此支持了用于柴油发动机的这些基于表面活性剂的燃料系统的持续发展。

著录项

  • 来源
    《Fuel》 |2012年第2012期|p.606-613|共8页
  • 作者单位

    School of Civil Engineering and Environmental Science, The University of Oklahoma, 202 West Boyd Street. Norman, OK 73019. USA Institute for Applied Surfactant Research, The University of Oklahoma, Norman, OK. USA;

    School of Civil Engineering and Environmental Science, The University of Oklahoma, 202 West Boyd Street. Norman, OK 73019. USA Institute for Applied Surfactant Research, The University of Oklahoma, Norman, OK. USA;

    School of Civil Engineering and Environmental Science, The University of Oklahoma, 202 West Boyd Street. Norman, OK 73019. USA Institute for Applied Surfactant Research, The University of Oklahoma, Norman, OK. USA;

  • 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

    microemulsion; phase behavior; fuel; ethanol; hybrid fuel;

    机译:微乳液相行为;汽油;乙醇混合燃料;

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