Department of Civil Engineering and Mechanics, University of Wisconsin-Milwaukee, Milwaukee, WI 53211, USA.
Bioresour Technol. 2011 Jan;102(1):376-80. doi: 10.1016/j.biortech.2010.06.030. Epub 2010 Jun 26.
Microbial desalination cells (MDCs) hold great promise for drinking water production because of potential energy savings during the desalination process. In this study, we developed a continuously operated MDC--upflow microbial desalination cell (UMDC) for the purpose of salt removal. During the 4-month operation, the UMDC constantly removed salts and generated bio-electricity. At a hydraulic retention time (HRT) of 4 days (salt solution) and current production of ∼62 mA, the UMDC was able to remove more than 99% of NaCl from the salt solution that had an initial salt concentration of 30 g total dissolved solids (TDS)/L. In addition, the TDS removal rate was 7.50 g TDSL(-1)d(-1) (salt solution volume) or 5.25 g TDSL(-1)d(-1) (wastewater volume), and the desalinated water met the drinking water standard, in terms of TDS concentration. A high charge transfer efficiency of 98.6% or 81% was achieved at HRT 1 or 4d. The UMDC produced a maximum power density of 30.8 W/m(3). The phenomena of bipolar electrodialysis and proton transport in the UMDC were discussed. These results demonstrated the potential of the UMDC as either a sole desalination process or a pre-desalination reactor for downstream desalination processes.
微生物脱盐电池 (MDC) 在脱盐过程中具有节能潜力,因此在饮用水生产方面具有广阔的应用前景。本研究开发了一种连续运行的 MDC-上流式微生物脱盐电池 (UMDC),用于去除盐分。在 4 个月的运行过程中,UMDC 持续去除盐分并产生生物电能。在水力停留时间 (HRT) 为 4 天(盐溶液)和电流产量约为 62 mA 的情况下,UMDC 能够去除初始盐浓度为 30 g 总溶解固体 (TDS)/L 的盐溶液中超过 99%的 NaCl。此外,TDS 去除率为 7.50 g TDSL(-1)d(-1)(盐溶液体积)或 5.25 g TDSL(-1)d(-1)(废水体积),脱盐水的 TDS 浓度符合饮用水标准。在 HRT 为 1 天或 4 天时,电荷转移效率分别达到了 98.6%或 81%。UMDC 的最大功率密度为 30.8 W/m(3)。讨论了 UMDC 中的双极电渗析和质子传递现象。这些结果表明,UMDC 具有作为单独脱盐过程或下游脱盐过程的预处理反应器的潜力。