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首页> 外文期刊>Journal of Cleaner Production >Resources recovery in the dairy industry: bioelectricity production using a continuous microbial fuel cell
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Resources recovery in the dairy industry: bioelectricity production using a continuous microbial fuel cell

机译:乳制品行业中的资源回收:使用连续微生物燃料电池生产生物电

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摘要

The increasing food demand and the exhaustion of non-renewable fuels provide new market opportunities in the agro-farming sector. Biological systems designed to add value to useless organic sub products and to generate off-grid electricity may be one of the most interesting outcomes. Therefore, the capacity of some microorganisms to transfer electrons, generated during organic carbon oxidation directly to an anode in a so-called microbial fuel cell (MFC) might be an asset in a sustainable management context. In this regard, the main goal of the present work was to evaluate the performance of a continuous MFC applied in a dairy industry. A maximum voltage of 576 mV was produced during continuous operation, corresponding to a power density of 92.2 mW m(-2) or 1.9 W m(-3). MFC was able to remove 1298 +/- 617 mg L-1 of chemical oxygen demand (COD) at a hydraulic retention time of 8.4 h, and the maximum COD removal (63 +/- 5%) was achieved after 20 days of continuous operation. In addition, the coulombic efficiency average was around 10.5 +/- 10% with a maximum of 24.2 +/- 1.5%. In average, the MFC was able to extract a specific energy of 8.95 x 10(-2) kW h kg(-1) COD with a maximum output of 20.53 x 10(-2) kW h kg(-1) COD. In conclusion, the MFC technology is a valuable option for simultaneous wastewater treatment and energy recovery and deserves to be tested and scaled-up in the dairy industry. (C) 2016 Elsevier Ltd. All rights reserved.
机译:不断增长的粮食需求和用尽非可再生燃料为农业农业提供了新的市场机会。旨在为无用的有机副产品增加价值并产生离网电力的生物系统可能是最有趣的成果之一。因此,在可持续管理的背景下,在所谓的微生物燃料电池(MFC)中,有机微生物将有机碳氧化过程中产生的某些微生物将电子直接转移到阳极的能力可能是一项资产。在这方面,当前工作的主要目的是评估在乳制品工业中应用的连续MFC的性能。在连续运行过程中产生的最大电压为576 mV,对应于92.2 mW m(-2)或1.9 W m(-3)的功率密度。 MFC在8.4 h的水力停留时间内能够去除1298 +/- 617 mg L-1的化学需氧量(COD),连续20天后,最大的COD去除率(63 +/- 5%)操作。此外,库仑效率平均值约为10.5 +/- 10%,最大值为24.2 +/- 1.5%。平均而言,MFC能够提取8.95 x 10(-2)kW h kg(-1)COD的比能,最大输出为20.53 x 10(-2)kW h kg(-1)COD。总之,MFC技术是同时进行废水处理和能量回收的有价值的选择,值得在乳品行业进行测试和扩大规模。 (C)2016 Elsevier Ltd.保留所有权利。

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