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Cyanobacterial biofuel production

机译:蓝细菌生物燃料生产

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摘要

The development of new technologies for production of alternative fuel became necessary to circumvent finite petroleum resources, associate rising costs, and environmental concerns due to rising fossil fuel CO2 emissions. Several alternatives have been proposed to develop a sustainable industrial society and reduce greenhouse emissions. The idea of biological conversion of CO2 to fuel and chemicals is receiving increased attention. In particular, the direct conversion of CO2 with solar energy to biofuel by photosynthetic microorganisms such as microalgae and cyanobacteria has several advantages compared to traditional biofuel production from plant biomass. Photosynthetic microorganisms have higher growth rates compared with plants, and the production systems can be based on non-arable land. The advancement of synthetic biology and genetic manipulation has permitted engineering of cyanobacteria to produce non-natural chemicals typically not produced by these organisms in nature. This review addresses recent publications that utilize different approaches involving engineering cyanobacteria for production of high value chemicals including biofuels.
机译:由于化石燃料CO 2 排放量的增加,必须开发替代燃料生产的新技术,以规避有限的石油资源,相关的成本上升以及对环境的担忧。已经提出了几种替代方案来发展可持续的工业社会并减少温室气体排放。将CO 2 生物转化为燃料和化学品的想法越来越受到关注。特别是,与传统的植物生物质生产生物燃料相比,光合微生物(如微藻和蓝细菌)将太阳能中的CO 2 直接转化为生物燃料具有许多优势。与植物相比,光合微生物的生长速率更高,生产系统可以基于非耕地。合成生物学和基因操纵技术的发展已使蓝细菌得以工程化,以生产通常不是这些生物在自然界中产生的非天然化学物质。这篇综述针对最近的出版物,这些出版物利用涉及工程蓝细菌的不同方法来生产包括生物燃料在内的高价值化学品。

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