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Bioelectricity generation and dewatered sludge degradation in microbial capacitive desalination cell

机译:微生物电容脱盐细胞中的生物电性产生和脱水污泥降解

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摘要

Microbial desalination cell (MDC) is a new approach for the synergy in bioelectricity generation, desalination and organic waste treatment without additional power input. However, current MDC systems cause salt accumulation in anodic wastewater and sludge. A microbial capacitive desalination cell (MCDC) with dewatered sludge as anodic substrate was developed to address the salt migration problem and improve the sludge recycling value by special designed-membrane assemblies, which consisted of cation exchange membranes (CEMs), layers of activated carbon cloth (ACC), and nickel foam. Experimental results indicated that the maximum power output of 2.06 W/m(3) with open circuit voltage (OCV) of 0.942 V was produced in 42 days. When initial NaCl concentration was 2 g/L, the desalinization rate was about 15.5 mg/(L.h) in the first 24 h, indicating that the MCDC reactor was suitable to desalinize the low concentration salt solution rapidly. The conductivity of the anodic substrate decreased during the 42-day operation; the CEM/ACC/ Ni assemblies could effectively restrict the salt accumulation in MCDC anode and promote dewatered sludge effective use by optimizing the dewatered sludge properties, such as organic matter, C/N, pH value, and electric conductivity (EC).
机译:微生物脱盐细胞(MDC)是在没有额外的功率输入的情况下为生物电性产生,脱盐和有机废物处理中的协同作用的新方法。然而,目前的MDC系统导致阳极废水和污泥中的盐积累。开发了具有脱水污泥作为阳极基板的微生物电容脱盐电池(MCDC)以解决盐迁移问题,并通过特殊设计膜组件改善污泥回收值,该膜组件包括阳离子交换膜(CEM),活性炭层层(acc)和镍泡沫。实验结果表明,在42天内生产0.942 V的开路电压(OCV)的2.06 W / m(3)的最大功率输出。当初始NaCl浓度为2g / l时,在前24小时中,脱盐速率为约15.5mg /(l.H),表明MCDC反应器适合于迅速降低低浓度盐溶液。在42天的操作期间,阳极基板的电导率降低; CEM / ACC / Ni组件可以有效地限制MCDC阳极中的盐积累,并通过优化脱水污泥性能,例如有机物质,C / N,pH值和电导率(EC)来促进脱水污泥有效使用。

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