State Key Joint Laboratory of Environment Simulation and Pollution Control, School of Environment, Tsinghua University , Beijing, 100084, P.R. China.
Environ Sci Technol. 2014 Aug 19;48(16):9917-24. doi: 10.1021/es502075r. Epub 2014 Aug 8.
The architecture and performance of microbial desalination cell (MDC) have been significantly improved in the past few years. However, the application of MDC is still limited in a scope of small-scale (milliliter) reactors and high-salinity-water desalination. In this study, a large-scale (>10 L) stacked MDC packed with mixed ion-exchange resins was fabricated and operated in the batch mode with a salt concentration of 0.5 g/L NaCl, a typical level of domestic wastewater. With circulation flow rate of 80 mL/min, the stacked resin-packed MDC (SR-MDC) achieved a desalination efficiency of 95.8% and a final effluent concentration of 0.02 g/L in 12 h, which is comparable with the effluent quality of reverse osmosis in terms of salinity. Moreover, the SR-MDC kept a stable desalination performance (>93%) when concentrate volume decreased from 2.4 to 0.1 L (diluate/concentrate volume ratio increased from 1:1 to 1:0.04), where only 0.875 L of nonfresh water was consumed to desalinate 1 L of saline water. In addition, the SR-MDC achieved a considerable desalination rate (95.4 mg/h), suggesting a promising application for secondary effluent desalination through deriving biochemical electricity from wastewater.
在过去的几年中,微生物脱盐电池(MDC)的结构和性能得到了显著改善。然而,MDC 的应用仍然局限于小规模(毫升级)反应器和高盐度水脱盐。在这项研究中,制造了一种由混合离子交换树脂填充的大型(>10 L)堆叠式 MDC,并以 0.5 g/L NaCl(典型的生活污水盐度)的盐浓度在批处理模式下运行。在 80 mL/min 的循环流速下,堆叠式树脂填充式 MDC(SR-MDC)在 12 小时内实现了 95.8%的脱盐效率和最终出水浓度为 0.02 g/L,在盐度方面可与反渗透的出水质量相媲美。此外,当浓缩液体积从 2.4 降至 0.1 L 时(稀释液/浓缩液体积比从 1:1 增加到 1:0.04),SR-MDC 保持了稳定的脱盐性能(>93%),其中仅消耗了 0.875 L 的非淡水即可脱盐 1 L 的盐水。此外,SR-MDC 实现了相当高的脱盐速率(95.4 mg/h),这表明通过从废水提取生化电能,有望将其应用于二级出水脱盐。