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High Strength Bioethanol Wastewater Inoculated with Single-Strain or Binary Consortium Feeding Air-Cathode Microbial Fuel Cells

机译:单株或二元联合供气空气阴极微生物燃料电池接种的高强度生物乙醇废水

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Bioethanol industries generate a large volume of high strength wastewater called vinasse. This study compares the performance of microbial fuel cells (MFCs), inoculated with a single-strain or a binary consortium, to produce bioelectricity while simultaneously reducing the COD levels and removing the vinasse color. The MFCs achieved the power density of 124.0 +/- 0.2 mW/m(2) when inoculated with a strain of Shewanella oneidensis (MFC/So) and 178.0 +/- 0.8 mW/m(2) after inoculation with a strain of Clostridium butyricum (MFC/Cb). However, a better performance in power density was reached by the MFC inoculated with both cultures (MFC/So-Cb), which produced 205.0 +/- 0.5 mW/m(2). Additionally, the results showed a decrease in the initial COD (36,440 mg/L), as well as a decolorization. Thus, the MFC/So, MFC/Cb, and MFC/So-Cb caused a reduction in COD by 41.8 +/- 2.4%, 20.1 +/- 4.4%, and 53.8 +/- 5.9%, respectively, and in color by 62 +/- 4%, 70 +/- 4%, and 58 +/- 5%, respectively. These findings demonstrate that high power density can be produced using raw vinasse as a substrate in air-cathode MFCs. However, the coulombic efficiency was low indicating that the COD conversion into electricity must be improved. Novelty: This work combines fermentative and metal-reducing bacteria, instead of mixed cultures with unknown microorganisms, to break down complex organics in the vinasse, simultaneously to electricity generation. No studies have been found concerning Shewanella oneidensis and Clostridium butyricum strains for harvesting bioelectricity from bioethanol wastewater. Second, different from early studies, this work uses the real high strength wastewater, without dilution or any pre-treatment, before MFC process. Third, here we consider the total biomass at the end process to calculate the COD removal rate. Finally, we employed electronic load, never used previously, in MFC polarization measurements. (c) 2018 American Institute of Chemical Engineers Environ Prog, 38: 380-386, 2019
机译:生物乙醇行业会产生大量称为vinasse的高强度废水。这项研究比较了用单菌株或二元联盟接种的微生物燃料电池(MFCs)产生生物电的性能,同时降低了COD含量并消除了酒糟颜色。当用一株希瓦氏菌(MFC / So)接种时,MFC的功率密度为124.0 +/- 0.2 mW / m(2),而在梭状芽孢杆菌中接种后,MFC的功率密度为178.0 +/- 0.8 mW / m(2)。丁酸(MFC / Cb)。但是,用两种培养物(MFC / So-Cb)接种的MFC在功率密度方面都达到了更好的性能,产生了205.0 +/- 0.5 mW / m(2)。此外,结果显示初始COD(36,440 mg / L)减少,同时脱色。因此,MFC / So,MFC / Cb和MFC / So-Cb的颜色和颜色分别导致COD降低41.8 +/- 2.4%,20.1 +/- 4.4%和53.8 +/- 5.9%。分别降低62 +/- 4%,70 +/- 4%和58 +/- 5%。这些发现表明,在空气阴极MFC中使用未加工的酒糟作为基材可以产生高功率密度。但是,库仑效率低,表明必须提高COD转化为电的能力。新奇:这项工作结合了发酵菌和减少金属的细菌,而不是与未知微生物混合培养,以分解酒糟中的复杂有机物,同时发电。尚未发现有关从生物乙醇废水中收集生物电的沙瓦氏菌和丁酸梭菌菌株的研究。其次,与早期研究不同,这项工作在MFC处理之前使用了真正的高强度废水,没有稀释或任何预处理。第三,这里我们考虑最终过程中的总生物量来计算COD去除率。最后,我们在MFC极化测量中采用了以前从未使用过的电子负载。 (c)2018美国化学工程师学会Environ Prog,38:380-386,2019

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