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Bioelectrochemical systems: Sustainable bio-energy powerhouses

机译:生物电化学系统:可持续生物能源动力驻留

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Bioelectrochemical systems comprise of several types of cells, from basic microbial fuel cells (MFC) to photosynthetic MFCs and from plant MFCs to biophotovoltaics. All these cells employ bio entities at anode to produce bioenergy by catalysing organic substrates while some systems convert solar irradiation to energy. The current review epitomizes the above-mentioned fuel cell systems and elucidates their electrical performances. Microbial fuel cells have advantages over conventional fuel cells in terms of being sustainable whilst producing impressive power efficiencies without any net carbon emissions. They can be utilized for several environmentally friendly applications including wastewater treatment and bio-hydrogen generation, apart from producing clean and green electricity. Multifarious heterotrophic and autotrophic microbes and plants have been studied for their potential as imperative components of fuel cell technology. MFCs also display some interesting applications, such as integration of plant MFCs into architecture to produce "green" cities. Biophotovoltaic technology is the current hot cake in this field, which aspires to achieve significant electrical efficiencies by light-induced water splitting mechanisms. Furthermore, the utilization of BPVs in space renders it a technology for the future. Compared with other fuel cell systems, this technology is still in its inception and requires further efforts to endeavour its use on commercial or industrial level.
机译:生物电化学系统包括几种类型的细胞,从基本的微生物燃料电池(MFC)到光合作用MFC和植物MFC到生物光伏。所有这些细胞都使用阳极的生物实体通过催化有机基板产生生物能量,而一些系统将太阳能照射到能量。目前的审查将上述燃料电池系统构成并阐明其电气性能。微生物燃料电池在可持续的情况下具有优于传统燃料电池的优点,同时在没有任何净碳排放的情况下产生令人印象深刻的电力效率。除了产生清洁和绿色的电力之外,它们可用于几种环保应用,包括废水处理和生物氢气。已经研究了多种型异养和自养微生物和植物,其潜在是燃料电池技术的势在必行组分。 MFCS还显示一些有趣的应用程序,例如将工厂MFC集成到架构中以产生“绿色”城市。 BioPophotovoltaic Technology是该领域目前的热饼,其渴望通过光诱导的水分裂机构实现显着的电效率。此外,空间中BPV的利用使其成为未来的技术。与其他燃料电池系统相比,该技术仍处于成立,需要进一步努力,努力努力在商业或工业水平上使用。

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