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A solid catalyst method for biodiesel production.

机译:一种用于生物柴油生产的固体催化剂方法。

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摘要

Biodiesel has considerable production potential as a renewable source of energy. The conventional processes use soluble alkali catalysts that contaminate the biodiesel and glycerol products, and present separation problems. An efficient and clean process is crucial for large scale commercial production. Solid catalysts have the potential to eliminate these problems.;A method has been developed to produce biodiesel using a solid catalyst. The reaction is carried out at high temperature and pressure conditions (260°C, 70 atm). The high temperature is not a problem since the solid catalyst is part of a continuous process in which heat energy can be recovered. The reaction time is short (15 minutes) compared to that of the conventional processes (∼ 100 minutes). Promising catalysts were identified from batch tests; and MnO was found to be the most effective catalyst from the lab-scale packed-bed reactor tests. The reaction conditions allow for this mild solid base which can have a long life. The conventional process conditions (60∼70°C, 70 atm) need specially prepared strong bases that lose their activity quickly. The kinetics of the MnO-catalyzed reaction has been studied. External mass transfer limited effects have been identified. MnO was not the strongest of the bases tested, but it was the most effective. The reasons have been evaluated. MnO has a long catalyst life (more than 500 hours). Also, the amphoteric nature of MnO aids in the conversion of free fatty acids. This means used vegetable oil can be converted to biodiesel efficiently. MnO can sustain high water content in the feedstock without diminishing efficiency. The method has been found to be favourable in terms of low pressure drop.;Lastly, the MnO solid catalyst process has been compared with other processes and was found to be favourable in terms of reaction rate, catalyst life, pressure, temperature, side reactions and maintenance.
机译:生物柴油作为可再生能源具有巨大的生产潜力。常规方法使用可溶的碱催化剂,其污染了生物柴油和甘油产物,并且存在分离问题。高效清洁的过程对于大规模商业生产至关重要。固体催化剂具有消除这些问题的潜力。已经开发了一种使用固体催化剂生产生物柴油的方法。该反应在高温和高压条件(260℃,70atm)下进行。高温不是问题,因为固体催化剂是可回收热能的连续过程的一部分。与常规方法相比(〜100分钟),反应时间短(15分钟)。通过批量测试确定了有希望的催化剂;在实验室规模的填充床反应器测试中,发现MnO是最有效的催化剂。反应条件允许这种温和的固体碱具有较长的使用寿命。常规工艺条件(60〜70°C,70 atm)需要特别准备的强碱,这些碱会很快失去活性。已经研究了MnO催化的反应动力学。已经确定了外部传质有限的作用。 MnO不是最强的测试碱,但是最有效。原因已得到评估。 MnO催化剂寿命长(超过500小时)。同样,MnO的两性性质有助于游离脂肪酸的转化。这意味着用过的植物油可以有效地转化为生物柴油。 MnO可以维持原料中的高水分含量而不会降低效率。已发现该方法在低压降方面是有利的;最后,已将MnO固体催化剂方法与其他方法进行了比较,并发现在反应速率,催化剂寿命,压力,温度,副反应方面均是有利的。和维护。

著录项

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Alternative Energy.;Engineering Environmental.;Engineering Chemical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 230 p.
  • 总页数 230
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:23

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