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Biological fuel cells produce bioelectricity with in-situ brackish water purification

机译:生物燃料电池与<斜斜体>原位出来的生物电 - 原位咸水净化

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Biological fuel cells, namely microbial desalination cells (MDCs) are a promising alternative to traditional desalination technologies, as microorganisms can convert the energy stored in wastewater directly into electricity and utilize it in situ to drive desalination, producing a high-quality reuse water. However, there are several challenges to be overcome in order to scale up from laboratory research. This study was conducted in order to better understand the performance of MDCs inoculated with marine sediments during the treatment of brackish water (5.0 g L~(?1)of NaCl) under three different configurations and cycles of desalination, envisaging the future treatment of saline wastewaters with conductivities lower than 10 mS cm~(?1). Results have shown that by increasing the desalination cycle three times, the efficiency of salt removal was improved by 3.4, 2.4 and 2.3 times for 1-MDC, 3-MDC, and 5-MDC, respectively. The same trend was observed for electrochemical data. Findings encourage further development of the MDC for sustainable brackish water and wastewater purification and future on-site utilization.
机译:生物燃料电池,即微生物脱盐细胞(MDC)是对传统脱盐技术的有希望的替代品,因为微生物可以将储存在废水中的能量直接转化为电力,并利用原位驱动脱盐,产生高质量的再利取水。然而,为了从实验室研究扩展,克服了几种挑战。进行该研究以便更好地了解在三种不同配置和脱盐的三种不同配置和循环下的咸水中接种与海洋沉积物的MDCs的性能,设想了盐水的未来治疗盐水(5.0g l〜(α1)导电性低于10ms cm〜(?1)的废水。结果表明,通过增加脱盐周期三次,分别为1-MDC,3-MDC和5-MDC的盐除去的效率3.4,2.4和2.3倍。为电化学数据观察到相同的趋势。调查结果鼓励MDC进一步发展可持续咸水和废水净化和未来现场利用。

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