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藻类油脂的湿生物质直接酯交换法的研究进展。

Advances in direct transesterification of algal oils from wet biomass.

机构信息

Biomass and Waste Energy Laboratory, Korea Institute of Energy Research, 152 Gajeong-ro, Yuseong-gu, Daejeon 305-343, Republic of Korea.

Advanced Biomass R&D Center, KAIST, 291 Daehak-ro, Yuseong-gu, Daejeon 305-701, Republic of Korea.

出版信息

Bioresour Technol. 2015 May;184:267-275. doi: 10.1016/j.biortech.2014.10.089. Epub 2014 Oct 25.

Abstract

An interest in biodiesel as an alternative fuel for diesel engines has been increasing because of the issue of petroleum depletion and environmental concerns related to massive carbon dioxide emissions. Researchers are strongly driven to pursue the next generation of vegetable oil-based biodiesel. Oleaginous microalgae are considered to be a promising alternative oil source. To commercialize microalgal biodiesel, cost reductions in oil extraction and downstream biodiesel conversion are stressed. Herein, starting from an investigation of oil extraction from wet microalgae, a review is conducted of transesterification using enzymes, homogeneous and heterogeneous catalysts, and yield enhancement by ultrasound, microwave, and supercritical process. In particular, there is a focus on direct transesterification as a simple and energy efficient process that omits a separate oil extraction step and utilizes wet microalgal biomass; however, it is still necessary to consider issues such as the purification of microalgal oils and upgrading of biodiesel properties.

摘要

由于石油枯竭和与大量二氧化碳排放有关的环境问题,人们对生物柴油作为柴油机的替代燃料越来越感兴趣。研究人员强烈致力于追求下一代基于植物油的生物柴油。含油微藻被认为是一种很有前途的替代油源。为了使微藻生物柴油商业化,需要降低油提取和下游生物柴油转化的成本。本文从湿微藻的油提取研究开始,综述了酶法、均相和多相催化剂法的酯交换反应,以及超声、微波和超临界过程对产率的提高。特别地,本文关注直接酯交换作为一种简单、节能的工艺,它省去了单独的油提取步骤,并利用了湿微藻生物质;然而,仍然需要考虑微藻油的纯化和生物柴油性能的提高等问题。

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