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Design of an optimal process for enhanced production of bioethanol and biodiesel from algae oil via glycerol fermentation

机译:通过甘油发酵增强藻类油生产生物乙醇和生物柴油的最佳工艺设计

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摘要

In this paper, we optimize a process that integrates the use of glycerol to produce ethanol via fermentation within the simultaneous production of biodiesel and bioethanol from algae. The process consists of growing the algae, determining the optimal fraction of oil vs. starch, followed by oil extraction, starch liquefaction and saccharification, to sugars, oil transesterification, for which we consider two transeste-rification technologies (enzymes and alkali) and the fermentation of sugars and glycerol. The advantage of this process is that the dehydration technologies are common for the products of the glucose and glycerol fermentation. Simultaneous optimization and heat integration is performed using Duran and Grossmann's model. The fermentation of glycerol to ethanol increases the production of bioethanol by at least 50%. The energy and water consumptions are competitive with other processes that either sell the glycerol or use it to obtain methanol. However, the price for the biofuels is only competitive if glycerol cannot be sold to the market.
机译:在本文中,我们优化了一种工艺,该工艺整合了利用甘油通过发酵生产藻类同时生产生物柴油和生物乙醇的过程​​。该过程包括藻类的生长,确定油脂相对于淀粉的最佳比例,然后进行油脂提取,淀粉液化和糖化,糖化,油脂酯交换,我们考虑了两种酯化技术(酶和碱)和糖和甘油的发酵。该方法的优点在于,脱水技术是葡萄糖和甘油发酵产物的通用技术。使用Duran和Grossmann模型进行同时优化和热集成。甘油发酵成乙醇可使生物乙醇的产量增加至少50%。能源和水的消耗量与出售甘油或使用其获得甲醇的其他工艺相比具有竞争力。但是,仅当甘油不能出售到市场时,生物燃料的价格才具有竞争力。

著录项

  • 来源
    《Applied Energy》 |2014年第15期|108-114|共7页
  • 作者单位

    Departamento de Ingenieria Quimica, Universidad de Salamanca, Pza. Caidos 1-5, 37008 Salamanca, Spain;

    Chemical Engineering Department, Carnegie Mellon University, Pittsburgh, PA 15213, United States;

  • 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

    Biofuels; Biodiesel; Glycerol; Ethanol; Process integration;

    机译:生物燃料;生物柴油甘油;乙醇;流程整合;

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