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首页> 外文期刊>International journal of hydrogen energy >Microbial community dynamics and electricity generation in MFCs inoculated with POME sludges and pure electrogenic culture
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Microbial community dynamics and electricity generation in MFCs inoculated with POME sludges and pure electrogenic culture

机译:MFC中的微生物群落动态和发电接种宽污泥和纯电培养

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摘要

Palm Oil Mill Effluent (POME) requires treatment before disposal due to its high organic matter content. In this study, the electrical performance and wastewater treatment efficiency were evaluated for Microbial Fuel Cells (MFC) treating unsterile POME with chemical oxygen demand (COD) from 200 to 10 000 mg/L. Since the inoculum type is a key factor in MFC performance, three types of sludge (methanogenic sludge (MS), facultative sludge (FS), and dry sludge (DS), obtained from the current POME treatment ponds were evaluated as inoculum. Dry sludge (DS) developed a maximum power output of 3.30 W/m(3) by oxidizing 71% out of the COD provided by POME (1000 mg/L). Also, raw POME microbiota contributed to an enrichment of the community in DS inoculum along with the operation, in which Geobacter was the predominant genus reaching a current generation of 247 mA/m(2) and a power density of 2.36 W/m(3). Conversely, pure electrogenic (Shewanella sp.) inoculation led to a diversification process, resulting in a lower current generation of 52 mA/m(2) and a power density of 0.10 W/m(3). Consequently, microbial community dynamics revealed that MFC inoculation tends to a microbial equilibrium wherein generation of high current density was achieved by gradual microbial enrichment rather than external electrogenic invasion. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:棕榈油磨流出物(PAME)由于其高有机物质含量而在处理前进行治疗。在本研究中,评价电气性能和废水处理效率为微生物燃料电池(MFC)处理unsterile池,从200至10000 mg / L的化学需氧量(COD)。由于接种型是MFC性能的关键因素,从当前的底垫处理池中获得三种类型的污泥(甲状腺污泥(MS),致力污泥(FS)和干污泥(DS)被评估为接种物。干污泥(DS)通过氧化由Pome(1000mg / L)提供的COD氧化出71%的最大功率输出为3.30 w / m(3)。此外,未加工的碱基microbiota也有助于群体的侵蚀Ds Inoculum通过该操作,其中地形术是达到电流产生的247mA / m(2)的主要基因和2.36W / m(3)的功率密度。相反,纯电气(Shewanella sp)接种导致多样化过程,导致52mA / m(2)的较低电流产生和0.10W / m(3)的功率密度。因此,微生物群落动态显示MFC接种趋于微生物平衡,其中高电流密度产生的微生物平衡通过逐渐进行微生物富集而不是外部电力实现遗传入侵。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

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