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接种物选择及水力停留时间对处理含盐废水的微生物燃料电池的影响。

Inoculum selection and hydraulic retention time impacts in a microbial fuel cell treating saline wastewater.

作者信息

Castellano-Hinojosa Antonio, Gallardo-Altamirano Manuel J, Pozo Clementina, González-Martínez Alejandro, González-López Jesús

机构信息

Environmental Microbiology Group, Institute of Water Research, University of Granada, 18003, Granada, Spain.

Department of Microbiology, University of Granada, 18071, Granada, Spain.

出版信息

Appl Microbiol Biotechnol. 2025 Jan 28;109(1):29. doi: 10.1007/s00253-024-13377-y.

Abstract

Microbial fuel cell (MFC) technology has received increased interest as a suitable approach for treating wastewater while producing electricity. However, there remains a lack of studies investigating the impact of inoculum type and hydraulic retention time (HRT) on the efficiency of MFCs in treating industrial saline wastewater. The effect of three different inocula (activated sludge from a fish-canning industry and two domestic wastewater treatment plants, WWTPs) on electrochemical and physicochemical parameters and the anodic microbiome of a two-chambered continuous-flow MFC was studied. For each inoculum, three different HRTs were tested (1 day, 3 days, and 6 days). The inoculum from the fish canning industry significantly increased voltage production (with a maximum value of 802 mV), power density (with a maximum value of 78 mW m), coulombic efficiency (with a maximum value of 19.3%), and organic removal rate (ORR) compared to the inocula from domestic WWTPs. This effect was linked to greater absolute and relative abundances of electroactive microorganisms (e.g., Geobacter, Desulfovibrio, and Rhodobacter) and predicted electron transfer genes in the anode microbiome likely due to better adaption to salinity conditions. The ORR and current production were also enhanced at shorter HRTs (1 day vs. 3 and 6 days) across all inocula. This effect was related to a greater abundance and diversity of bacterial communities at HRT of 1 day compared to longer HRTs. Our findings have important bioengineering implications and can help improve the performance of MFCs treating saline effluents such as those from the seafood industry. KEY POINTS: • Inoculum type and HRT impact organic matter removal and current production. • Changes in bioenergy generation were linked to the electroactive anodic microbiome. • Shorter HRT favored increases in the performance of the MFC.

摘要

微生物燃料电池(MFC)技术作为一种在处理废水的同时产生电能的合适方法,已受到越来越多的关注。然而,目前仍缺乏关于接种物类型和水力停留时间(HRT)对MFC处理工业含盐废水效率影响的研究。本研究考察了三种不同接种物(来自鱼类罐头厂的活性污泥以及两个生活污水处理厂的活性污泥)对双室连续流MFC的电化学和物理化学参数以及阳极微生物群落的影响。对于每种接种物,测试了三种不同的HRT(1天、3天和6天)。与来自生活污水处理厂的接种物相比,来自鱼类罐头厂的接种物显著提高了电压产生(最大值为802 mV)、功率密度(最大值为78 mW/m²)、库仑效率(最大值为19.3%)和有机物去除率(ORR)。这种效果可能与阳极微生物群落中电活性微生物(如地杆菌属、脱硫弧菌属和红杆菌属)以及预测的电子传递基因的绝对和相对丰度更高有关,这可能是由于对盐度条件的更好适应。在所有接种物中,较短的HRT(1天与3天和6天相比)也提高了ORR和电流产生。这种效果与HRT为1天时细菌群落的丰度和多样性高于较长HRT时有关。我们的研究结果具有重要的生物工程意义,有助于提高MFC处理含盐废水(如海产品行业废水)的性能。要点:•接种物类型和HRT影响有机物去除和电流产生。•生物能源产生的变化与电活性阳极微生物群落有关。•较短的HRT有利于提高MFC的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41bb/11774983/be0c093f8064/253_2024_13377_Fig1_HTML.jpg

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