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利用颤藻作为生物催化剂在光合微生物脱盐池中进行同步生物电能产生和海水淡化。

Simultaneous bioelectricity generation and water desalination using Oscillatoria sp. as biocatalyst in photosynthetic microbial desalination cell.

机构信息

Department of Chemical Engineering, National Institute of Technology, Tiruchirappalli, Tamil Nadu, India.

Bioenergy and Bioremediation Laboratory, Department of Microbiology, Alagappa University, Karaikudi, Tamil Nadu, India.

出版信息

Sci Total Environ. 2021 Feb 1;754:142215. doi: 10.1016/j.scitotenv.2020.142215. Epub 2020 Sep 6.

Abstract

Globally, the scarcity of drinking water has triggered the researchers towards the development of desalination techniques to turn up saline water into potable. Microbial Desalination Cell (MDC) is a novel green technology that shows potential approach for desalination along with electricity generation and wastewater treatment. However, the expensive catholyte/catalyst in the cathode side has limited the MDC for real time application. Hence, the main objective of this work was to investigate the electricity generation during dairy wastewater treatment and desalination efficiency using biocathode (Oscillatoria sp.) in the MDC. The results showed that the maximum open circuit voltage of 652 ± 10 mV, COD removal efficiency of 80.2 ± 0.5% and desalination efficiency of 65.8 ± 0.5%, were achieved respectively. The effect of saline water concentration was investigated and the performance of MDC was compared with real (sea) water. This study demonstrated that Oscillatoria sp. could be used as a potential biocatalyst in the cathode chamber for enhancing salinity removal along with electricity generation and wastewater treatment in the MDC.

摘要

在全球范围内,饮用水的短缺促使研究人员开发海水淡化技术,将咸水转化为饮用水。微生物淡化电池(MDC)是一种新型的绿色技术,具有海水淡化、发电和废水处理的潜力。然而,阴极昂贵的电解液/催化剂限制了 MDC 的实时应用。因此,本工作的主要目的是研究利用 MDC 中的生物阴极(颤藻属)在处理乳制品废水的同时进行发电和脱盐的效率。结果表明,最大开路电压为 652 ± 10 mV,COD 去除率为 80.2 ± 0.5%,脱盐效率为 65.8 ± 0.5%。研究了盐水浓度的影响,并将 MDC 的性能与实际(海水)水进行了比较。本研究表明,颤藻属可以作为阴极室内的一种潜在生物催化剂,用于提高 MDC 中的盐度去除率、发电和废水处理。

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