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New insights in photosynthetic microbial fuel cell using anoxygenic phototrophic bacteria

机译:使用脂肪营养细菌光合微生物燃料电池的新见解

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Anoxygenic phototrophic bacteria (APB) pay a key role in biogeochemical cycles, and it can convert light energy to chemical energy by photosynthesis process. Photosynthetic microbial fuel cell (photo-MFC) is regarded as a promising energy-harvesting technology, which is also applied to environment treatment in recent years. The previous studies show that photo-MFC with APB have higher power putout than other bioelectrochemical systems. However, photo-MFC with APB is not reviewed due to some limited factors in the development process. In this review, photo-MFC with APB is treated according to its electron transfer pathways, the current understanding, APB strains, application, influence of substrates, and economic assessment. Meanwhile, knowledge of photosynthesis components and electron transfer pathways of APB is crucial for developing new energy and easing the serious energy crisis. Moreover, some new insights (the optimization of light source and self-sustaining bioelectricity generation) are proposed for the future explorations.
机译:anoxygenic光养细菌(APB)在生物地球化学循环中支付关键作用,可以通过光合作用过程将光能转化为化学能。光合微生物燃料电池(Photo-MFC)被视为有希望的能量收集技术,近年来也适用于环境治疗。以前的研究表明,具有APB的Photo-MFC具有比其他生物电化学系统更高的功率丢包。但是,由于开发过程中的一些有限因素,未审查具有APB的Photo-MFC。在本次综述中,使用APB的Photo-MFC根据其电子转移途径,目前的理解,APB菌株,应用,基材的影响和经济评估处理。同时,APB的光合作用成分和电子转移途径的知识对于开发新能源和缓解严重能源危机至关重要。此外,提出了一些新的见解(光源和自我维持生物电生成的优化),用于未来的探索。

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