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Combined freezing-thawing pretreatment and microbial electrolysis cell for enhancement of highly concentrated organics degradation from dewatered sludge

机译:结合冻融预处理和微生物电解细胞提高高浓度的有机物从脱水污泥中降解

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摘要

The influence of freezing-thawing (F/T) pretreatment on the degradation of highly concentrated organic matters from dewatered sludge (DS) in microbial electrolysis cell (MEC) was investigated in this study. Extended freezing disintegrated the DS matrix and resulted in accelerated hydrolysis rate. The biogas production and stabilization were increased due to the pretreatment by 25–70% of H2 production rate and 17.8–33.8% of COD reduction rate, respectively. Fourier transform infrared spectroscopy analysis indicated that the pretreatment was unable to alter the bioelectrochemical reactions except for accelerating degradation rate. Excitation and emission matrix (EEM) spectra showed that aromatic protein and soluble microbial products (SMPs)-like materials in DS were increasingly solubilized by the pretreatment and significantly removed during electrogenesis. The F/T-pretreated DS favored the enrichment of exoelectrogens in MEC.
机译:本研究研究了冷冻 - 解冻(F / T)预处理对从微生物电解细胞(MEC)中高浓度有机物质降解的影响。延伸冻结解体DS基质并导致加速水解速率。由于预处理的预处理增加了25-70%的H2生产率和COD抑制率的17.8-33.8%,分别增加了沼气的生产和稳定性。傅里叶变换红外光谱分析表明,除了加速降解速率外,预处理无法改变生物电化学反应。激发和发射矩阵(EEM)光谱表明,DS中的芳族蛋白和可溶性微生物产品(SMPS) - 样物质越来越多地通过预处理而溶解,并且在电生物发生期间显着除去。 F / T-T-PreatReated DS赞成MEC中exoeloLgens的富集。

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