Meng Fanyu, Zhao Qingliang, Na Xiaolin, Zheng Zhen, Jiang Junqiu, Wei Liangliang, Zhang Jun
Department of Environmental Hygiene, School of Public Health, Harbin Medical University, Harbin, 150081, China.
School of Municipal and Environmental Engineering, Harbin Institute of Technology, Harbin, 150090, China.
Environ Sci Pollut Res Int. 2017 Feb;24(6):5159-5167. doi: 10.1007/s11356-016-6853-4. Epub 2016 May 18.
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 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).
微生物脱盐电池(MDC)是一种在无额外电力输入的情况下实现生物发电、脱盐和有机废物处理协同作用的新方法。然而,目前的MDC系统会导致阳极废水和污泥中盐分积累。开发了一种以脱水污泥为阳极底物的微生物电容脱盐电池(MCDC),通过特殊设计的膜组件解决盐分迁移问题并提高污泥回收价值,该膜组件由阳离子交换膜(CEM)、活性炭布(ACC)层和泡沫镍组成。实验结果表明,在42天内产生了最大功率输出2.06 W/m,开路电压(OCV)为0.942 V。当初始NaCl浓度为2 g/L时,前24小时脱盐率约为15.5 mg/(L·h),表明MCDC反应器适合快速脱除低浓度盐溶液中的盐分。在42天的运行过程中,阳极底物的电导率下降;CEM/ACC/Ni组件可以通过优化脱水污泥的性质,如有机物、C/N、pH值和电导率(EC),有效限制MCDC阳极中的盐分积累并促进脱水污泥的有效利用。