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Bioelectrogenesis with microbial fuel cells (MFCs) using the microalga Chlorella vulgaris and bacterial communities

机译:微藻类小球藻和细菌群落的微生物燃料电池(MFCs)生物电转化

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Background Microbial Fuel Cell (MFC) technology is used in various applications such as wastewater treatment with the production of electrical energy. The objective of this study was to estimate the biodepuration of oils and fats, the elimination of blue dye brl and bioelectro-characterization in MFCs with Chlorella vulgaris and bacterial community. Results The operation of MFCs at 32d showed an increase in bioelectrogenic activity (from 23.17 to 327.67mW/m 2 ) and in the potential (from 200 to 954mV), with biodepuration of fats and oils (95%) in the microalgal cathode, and a removal of the chemical oxygen demand COD (anode, 71%, cathode, 78.6%) and the blue dye brl (73%) at the anode, here biofilms were formed by the bacterial community consisting of Actinobacteria and Deltaproteobacteria. Conclusions These findings suggest that MFCs with C. vulgaris and bacterial community have a simultaneous efficiency in the production of bioelectricity and bioremediation processes, becoming an important source of bioenergy in the future.
机译:背景技术微生物燃料电池(MFC)技术被用于各种应用中,例如利用电能产生的废水处理。这项研究的目的是评估具有小球藻和细菌群落的MFCs中油脂的生物净化,消灭蓝色染料brl和生物电特性。结果MFCs在32d时的运行显示出生物电活性(从23.17到327.67mW / m 2)和电势(从200到954mV)增加,并且生物净化了微藻阴极中的油脂(95%),并且去除化学需氧量COD(阳极,占71%,阴极,占78.6%)和蓝色染料brl(占73%),在这里,生物膜是由放线菌和变形杆菌组成的细菌群落形成的。结论这些发现表明,具有C. vulgaris和细菌群落的MFC在生产生物电和生物修复过程中同时具有效率,成为将来生物能源的重要来源。

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