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Metabolic pathway engineering for enhanced biohydrogen production

机译:代谢途径工程可增强生物氢的产生

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Hydrogen is an ideal, clean, and potentially sustainable energy carrier for the future due to its abundance and non-polluting nature. Numerous bacteria, cyanobacteria, and algae are capable of producing hydrogen from water, solar energy, and a variety of organic substrates. Improvement of these diverse biochemical pathways is needed in order to make biohydrogen competitive with current production methods. This review summarizes some of the main biological pathways that produce hydrogen and their limiting factors. It also describes how metabolic engineering strategies are being used to overcome these limitations, increase yields, and broaden substrate utilization.
机译:氢由于其丰富且无污染的性质,是未来理想的,清洁的,潜在可持续的能源载体。许多细菌,蓝细菌和藻类能够从水,太阳能和各种有机底物中产生氢。为了使生物氢与现有生产方法竞争,需要改进这些多样的生化途径。这篇综述总结了一些产生氢的主要生物途径及其限制因素。它还描述了如何使用代谢工程策略来克服这些限制,提高产量并扩大底物利用率。

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