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Effects of inoculation strategy and cultivation approach on the performance of microbial fuel cell using marine sediment as bio-matrix

机译:接种策略和培养方式对海洋沉积物作为生物基质的微生物燃料电池性能的影响

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摘要

Aims: To investigate the effects of inoculation strategy and cultivation approach on the performance of microbial fuel cell (MFC). Methods and Results: A dual-chamber sediment fuel cell was set up fed with glucose under batch condition. At day 30, the supernatant consortium was partly transferred and used as inoculum for the evaluation of cultivation approach. Power output gradually increased to 9.9 mW m(-2) over 180 days, corresponding to coulombic efficiency (CE) of 29.6%. Separated biofilms attached anode enabled power output and CE dramatically up to 100.9 mW m(-2) and over 50%, respectively, whereas the residual sediment catalysed MFC gave a poor performance. MFC catalysed by in situ supernatant consortium demonstrated more than twice higher power than MFC catalysed by the supernatant consortium after Fe(OH)(3) cultivation. However, the re-generation of biofilms from the latter largely enhanced the cell performance. Conclusions: MFC exhibited a more efficient inducement of electroactive consortium than Fe(OH)(3) cultivation. MFC performance varied depending on different inoculation strategies. Significance and Impact of the Study: This is the first time to study cultivation approach affecting electricity generation. In addition, anodic limitations of mass and electron transfer were discussed through MFC catalysed by sediment-based bio-matrix.
机译:目的:探讨接种策略和培养方法对微生物燃料电池(MFC)性能的影响。方法与结果:建立了一个双室沉淀燃料电池,分批加入葡萄糖。在第30天,部分转移上清液财团并用作接种物以评估培养方法。功率输出在180天内逐渐增加到9.9 mW m(-2),相当于29.6%的库仑效率(CE)。附着有阳极的分离的生物膜使功率输出和CE分别高达100.9 mW m(-2)和50%以上,而残留的沉积物催化的MFC却表现不佳。 Fe(OH)(3)培养后,原位上清液财团催化的MFC的功率比上清液财团催化的MFC的功率高两倍以上。然而,从后者再生生物膜大大增强了细胞性能。结论:MFC表现出比Fe(OH)(3)培养更有效的电活性联合体诱导。 MFC的性能取决于不同的接种策略。研究的意义和影响:这是第一次研究影响发电的耕作方法。此外,通过基于沉积物的生物基质催化的MFC,讨论了质量和电子转移的阳极限制。

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