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微藻与生物燃料:前景广阔的合作关系?

Microalgae and biofuels: a promising partnership?

机构信息

ISMAI-Instituto Superior da Maia, Avenida Carlos Oliveira Campos, 4475-690 Avioso S. Pedro, Portugal.

出版信息

Trends Biotechnol. 2011 Nov;29(11):542-9. doi: 10.1016/j.tibtech.2011.05.005. Epub 2011 Jul 2.

Abstract

Microalgae have much higher lipid yields than those of agricultural oleaginosous crops, and they do not compromise arable land. Despite this, current microalga-based processes suffer from several constraints pertaining to the biocatalyst and the bioreactor, which hamper technologically and economically feasible scale-up. Here, we briefly review recent active research and development efforts worldwide, and discuss the most relevant shortcomings of microalgal biofuels. This review goes one step further relative to related studies, because it tackles otherwise scarcely mentioned issues - for example, heterotrophic versus autotrophic metabolism, alkane versus glyceride synthesis, conduction versus bubbling of CO(2), and excretion versus accumulation of lipids. Besides promising solutions that have been hypothesized and arise from multidisciplinary approaches, we also consider less conventional ones. Microalgae and biofuels hold indeed a promising partnership, but a fully competitive technology is not expected to be available before the end of this decade, because the need for one order of magnitude increase in productivity requires development of novel apparatuses and transformed cells.

摘要

微藻的产油量比农业含油作物高得多,而且不会侵占耕地。尽管如此,目前基于微藻的工艺受到生物催化剂和生物反应器的几个限制,这阻碍了技术和经济上可行的规模化。在这里,我们简要回顾了全球最近的积极研究和开发工作,并讨论了微藻生物燃料最相关的缺点。与相关研究相比,这篇综述更进一步,因为它解决了其他很少被提及的问题 - 例如,异养与自养代谢、烷烃与甘油酯合成、CO(2)的传导与鼓泡、以及脂质的排泄与积累。除了已经假设并源自多学科方法的有前途的解决方案外,我们还考虑了不太传统的解决方案。微藻和生物燃料确实具有有前途的合作关系,但预计在本十年末之前不会出现完全有竞争力的技术,因为需要提高一个数量级的生产力,需要开发新型仪器和转化细胞。

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