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Contribution of electrodes and electric current to process stability and methane production during the electro-fermentation of food waste

机译:电极和电流的贡献在食物废物的电热过程中加工稳定性和甲烷生产

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摘要

Electro-fermentation is used as an alternative to conventional anaerobic digestion to enhance system stability and methane production from food waste. In particular, the contributions of electrode materials and an electric current are analyzed separately. The results showed that the introduction of electrodes (conducive carbon brushes without applied voltage) rapidly decreased the average concentration of volatile fatty acids (VFAs) from 6617 mg/L to 174 mg/L quickly, accelerated stabilization of digestion system, and improved methane production by 13.5%. When low voltage was supplied, the VFAs concentration declined to 129 mg/L, and methane production increased by 26.3%. Electric current stimulated the growth of hydrogenotrophic methanogens, but acetotrophic Methanosaeta still made up 27.6-61.9% of archaeal community. Geobacter occurred at the cathode with a low abundance. The energy contained in incremental methane was 4.55 times the consumption of electric energy, indicating the enhanced methanogenesis was mainly attributed to the improved digestion environment.
机译:电发酵用作常规厌氧消化的替代方案,以提高食物垃圾的系统稳定性和甲烷生产。特别地,单独分析电极材料和电流的贡献。结果表明,电极(无施加电压的电极电压)的引入快速降低了6617mg / L至174mg / L的挥发性脂肪酸(VFA)的平均浓度,加速稳定的消化系统,改善了甲烷生产13.5%。当供应低电压时,VFA浓度下降至129mg / L,甲烷产量增加26.3%。电流刺激了氢雌型甲烷的生长,但患有肺雌激素的甲蛋白酶仍占古群落的27.6-61.9%。 Geobacter发生在阴极,具有低丰度。增量甲烷中含有的能量为电能消耗的4.55倍,表明增强的甲烷化主要归因于改善的消化环境。

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