Selective membranes in water and wastewater treatment: Role of advanced materials

K Zuo, K Wang, RM DuChanois, Q Fang, EM Deemer… - Materials Today, 2021 - Elsevier
Membrane separation has enjoyed tremendous advances in relevant material and
engineering sciences, making it the fastest growing technology in water treatment. Although …

Microbial desalination cells for water purification and power generation: A critical review

M Tawalbeh, A Al-Othman, K Singh, I Douba… - Energy, 2020 - Elsevier
The modern society's sustainable development and the ever-increasing population growth
are facing the serious challenge of shortage in water resources. The solution to this global …

Microbial desalination cell: desalination through conserving energy

M Zahid, N Savla, S Pandit, VK Thakur, SP Jung… - Desalination, 2022 - Elsevier
The increased requirement of potable water led to the development of efficient desalination
technologies such as reverse osmosis membranes, which are currently mass-manufactured …

Controlled synthesis of bismuth oxychloride-carbon nanofiber hybrid materials as highly efficient electrodes for rocking-chair capacitive deionization

Y Liu, X Gao, Z Wang, K Wang, X Dou, H Zhu… - Chemical Engineering …, 2021 - Elsevier
Abstract Rocking-chair Capacitive Deionization (RCDI) is one of the most promising cell
architectures for highly efficient capacitive deionization (CDI) to address the fresh-water …

MoS2 nanoflakes-coated electrospun carbon nanofibers for “rocking-chair” capacitive deionization

Y Liu, X Du, Z Wang, L Zhang, Q Chen, L Wang, Z Liu… - Desalination, 2021 - Elsevier
Develo** highly efficient electrical-driven desalination techniques with minimum energy
consumption and high stability is urgently required to settle the global water shortage …

Critical review of bioelectrochemical systems integrated with membrane-based technologies for desalination, energy self-sufficiency, and high-efficiency water and …

E Yang, KJ Chae, MJ Choi, Z He, IS Kim - Desalination, 2019 - Elsevier
Bioelectrochemical systems (BESs) are versatile electrochemical technologies that use
microbial catalysts for simultaneously harvesting energy and treating wastewater. However …

A comprehensive review of microbial desalination cells for present and future challenges

AS Jatoi, Z Hashmi, SA Mazari, NM Mubarak, RR Karri… - Desalination, 2022 - Elsevier
Microbial desalination cell (MDC) is an emerging bio-electrochemical system technology
used for wastewater decontamination, seawater desalination, and co-energy production …

Trends and resource recovery in biological wastewater treatment system

RAA Meena, RY Kannah, J Sindhu, J Ragavi… - Bioresource Technology …, 2019 - Elsevier
Nutrient removal from wastewater is an essential task to protect natural water resource and
its excess results in eutrophication. Faster resource depletion and environmental …

[PDF][PDF] Microbial powered electrochemical systems coupled with Membrane based technology for sustainable desalination and efficient wastewater treatment

N Savla, N Khanna, S Pandit, SP Jung… - J. Korean Soc …, 2020 - researchgate.net
3. Pant D, Singh A, Van Bogaert G, Gallego YA, Diels L, Vanbroekhoven K. An introduction
to the life cycle assessment (LCA) of bioelectrochemical systems (BES) for sustainable …

Wastewater treatment using membrane technology

A Nqombolo, A Mpupa, RM Moutloali… - … and water quality, 2018 - books.google.com
Water contamination by heavy metals, cyanides and dyes is increasing globally and needs
to be addressed as this will lead to water scarcity as well as water quality. Different …