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脂肪酸烷基酯:生产替代生物燃料的前景。

Fatty acid alkyl esters: perspectives for production of alternative biofuels.

机构信息

Institut für Molekulare Mikrobiologie und Biotechnologie, Westfälische Wilhelms-Universität Münster, Corrensstrasse 3, 48149 Münster, Germany.

出版信息

Appl Microbiol Biotechnol. 2010 Feb;85(6):1713-33. doi: 10.1007/s00253-009-2383-z. Epub 2009 Dec 22.

Abstract

The global economy heads for a severe energy crisis: whereas the energy demand is going to rise, easily accessible sources of crude oil are expected to be depleted in only 10-20 years. Since a serious decline of oil supply and an associated collapse of the economy might be reality very soon, alternative energies and also biofuels that replace fossil fuels must be established. In addition, these alternatives should not further impair the environment and climate. About 90% of the biofuel market is currently captured by bioethanol and biodiesel. Biodiesel is composed of fatty acid alkyl esters (FAAE) and can be synthesized by chemical, enzymatic, or in vivo catalysis mainly from renewable resources. Biodiesel is already established as it is compatible with the existing fuel infrastructure, non-toxic, and has superior combustion characteristics than fossil diesel; and in 2008, the global production was 12.2 million tons. The biotechnological production of FAAE from low cost and abundant feedstocks like biomass will enable an appreciable substitution of petroleum diesel. To overcome high costs for immobilized enzymes, the in vivo synthesis of FAAE using bacteria represents a promising approach. This article points to the potential of different FAAE as alternative biofuels, e.g., by comparing their fuel properties. In addition to conventional production processes, this review presents natural and genetically engineered biological systems capable of in vivo FAAE synthesis.

摘要

全球经济正面临严重的能源危机

能源需求将上升,而容易获得的原油资源预计在 10 到 20 年内就会枯竭。由于石油供应的严重下降和由此导致的经济崩溃可能很快成为现实,因此必须建立替代能源和替代化石燃料的生物燃料。此外,这些替代品不应进一步破坏环境和气候。目前,生物燃料市场的 90%左右由生物乙醇和生物柴油占据。生物柴油由脂肪酸烷基酯(FAAE)组成,可通过化学、酶或体内催化主要从可再生资源合成。生物柴油已经得到广泛应用,因为它与现有的燃料基础设施兼容,无毒,并且具有比化石柴油更好的燃烧特性;到 2008 年,全球产量已达 1220 万吨。利用低成本和丰富的生物质等原料进行 FAAE 的生物技术生产将能够显著替代石油柴油。为了克服固定化酶的高成本问题,使用细菌进行体内 FAAE 合成代表了一种很有前途的方法。本文通过比较其燃料特性,指出了不同 FAAE 作为替代生物燃料的潜力。除了传统的生产工艺外,本文还介绍了能够进行体内 FAAE 合成的天然和基因工程生物系统。

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