Results 151 to 160 of about 1,319 (181)

Reverse electrodialysis (RED) with bipolar membranes, an energy storage system

open access: yesZeitschrift Fur Elektrotechnik Und Elektrochemie, 1998
AbstractAn experimental study is presented of reverse electrodialysis (RED) as a completely different kind of electrical energy storage. The use of RED fuel cells has the potential to overcome common self‐discharging problems of the RED accumulator.
Eberhard Staude
exaly   +3 more sources

Comparison of fouling characteristics between reverse electrodialysis (RED) and pressure retarded osmosis (PRO)

Desalination, 2021
Abstract The generation of salinity gradient power (SGP) is a promising technique to extract energy from either seawater or reverse osmosis (RO) brine. There are two methods for harvesting SGP, including reverse electrodialysis (RED) and pressure retarded osmosis (PRO).
Jaehyun Ju, Sangho Lee, Namjo Jeong
exaly   +2 more sources

2D fluorescence spectroscopy for monitoring ion-exchange membrane based technologies – Reverse electrodialysis (RED)

Water Research, 2016
Reverse electrodialysis (RED) is one of the emerging, membrane-based technologies for harvesting salinity gradient energy. In RED process, fouling is an undesirable operation constraint since it leads to a decrease of the obtainable net power density due to increasing stack electric resistance and pressure drop.
Sylwin Pawlowski   +2 more
exaly   +3 more sources

Recent developments and future perspectives of reverse electrodialysis technology: A review [PDF]

open access: yesDesalination, 2018
Reverse electrodialysis (RED) is an emerging membrane based technology that captures electricity from controlled mixing of two water streams of different salinities. To date, great advancements have been achieved on the development of RED components (e.g.
Ying Mei, Chuyang Y Tang
exaly   +2 more sources

Influence of flowrates to a reverse electro-dialysis (RED) stack on performance and electrochemistry of a microbial reverse electrodialysis cell (MRC)

International Journal of Hydrogen Energy, 2017
Abstract An MRC is a bioelectrochemical system combining a microbial fuel cell (MFC) with a RED stack to generate electricity from salinity gradient and organic wastewater with simultaneous treatment. Operating an MRC at an optimum flowrate to RED is important because it is closely related with energy production rate and economic feasibility. However,
Sokhee P Jung
exaly   +2 more sources

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