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Engineering photosynthetic organisms for the production of biohydrogen

机译:工程光合生物以生产生物氢

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摘要

Oxygenic photosynthetic organisms such as green algae are capable of absorbing sunlight and converting the chemical energy into hydrogen gas. This process takes advantage of the photosynthetic apparatus of these organisms which links water oxidation to H2 production. Biological H2 has therefore the potential to be an alternative fuel of the future and shows great promise for generating large scale sustainable energy. Microalgae are able to produce H2 under light anoxic or dark anoxic condition by activating 3 different pathways that utilize the hydrogenases as catalysts. In this review, we highlight the principal barriers that prevent hydrogen production in green algae and how those limitations are being addressed, through metabolic and genetic engineering.  We also discuss the major challenges and bottlenecks facing the development of future commercial algal photobiological systems for H2 production. Finally we provide suggestions for future strategies and potential new techniques to be developed towards an integrated system with optimized hydrogen production.
机译:诸如绿藻这样的光合光合生物能够吸收阳光并将化学能转化为氢气。该过程利用了这些生物的光合作用设备,该设备将水的氧化与H2的产生联系起来。因此,生物氢气有可能成为未来的替代燃料,并显示出产生大规模可持续能源的巨大希望。通过激活利用氢化酶作为催化剂的3种不同途径,微藻能够在轻度缺氧或黑暗缺氧条件下产生H2。在这篇综述中,我们重点介绍了防止藻类中产生氢气的主要障碍,以及如何通过代谢和基因工程解决这些限制。我们还讨论了开发用于H2生产的未来商业藻类光生物系统所面临的主要挑战和瓶颈。最后,我们为朝着优化氢气生产的集成系统发展的未来策略和潜在的新技术提供了建议。

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