Unravelling and Reconstructing the Nexus of Salinity, Electricity, and Microbial Ecology for Bioelectrochemical Desalination.
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| Title: | Unravelling and Reconstructing the Nexus of Salinity, Electricity, and Microbial Ecology for Bioelectrochemical Desalination. |
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| Authors: | Yuan, Heyang1, Sun, Shan2, Abu-Reesh, Ibrahim M.3, Badgley, Brian D.2 badgley@vt.edu, He, Zhen1 zhenhe@vt.edu |
| Source: | Environmental Science & Technology. 11/7/2017, Vol. 51 Issue 21, p12672-12682. 11p. |
| Subject Terms: | *Salinity, *Microbial ecology, *Saline water conversion, *Wastewater treatment, Bioelectrochemistry |
| Abstract: | Microbial desalination cells (MDCs) are an emerging concept for simultaneous water/wastewater treatment and energy recovery. The key to developing MDCs is to understand fundamental problems, such as the effects of salinity on system performance and the role of microbial community and functional dynamics. Herein, a tubular MDC was operated under a wide range of salt concentrations (0.05-4 M), and the salinity effects were comprehensively examined. The MDC generated higher current with higher salt concentrations in the desalination chamber. When fed with 4 M NaC1, the MDC achieve a current density of 300 A M |
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| Database: | GreenFILE |
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