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Energy generation using reverse elec...
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Kim, Daejoong.
Energy generation using reverse electrodialysisprinciples, implementation, and applications /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Energy generation using reverse electrodialysisby Daejoong Kim ... [et al.].
Reminder of title:
principles, implementation, and applications /
other author:
Kim, Daejoong.
Published:
Singapore :Springer Singapore :2019.
Description:
xi, 45 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Electric power production.
Online resource:
https://doi.org/10.1007/978-981-13-0314-2
ISBN:
9789811303142$q(electronic bk.)
Energy generation using reverse electrodialysisprinciples, implementation, and applications /
Energy generation using reverse electrodialysis
principles, implementation, and applications /[electronic resource] :by Daejoong Kim ... [et al.]. - Singapore :Springer Singapore :2019. - xi, 45 p. :ill., digital ;24 cm. - SpringerBriefs in applied sciences and technology,2191-530X. - SpringerBriefs in applied sciences and technology..
Figure captions -- Table captions -- Abstract -- 1. Introduction -- 2. Parametric study on RED with sodium chloride solution -- 3. Effect of flow structure on RED performance -- 4. REDapplied for desalination -- 5. Parametric study of RED using ammonium bicarbonate solution to recover low-grade waste heat -- 6. Nanofluidic RED -- 7. Conclusion and future prospects -- References.
This book provides an introduction to the working principles of reverse electrodialysis and its practical application in the generation of electricity. Salinity gradient energy (SGE) has received significant attention recently due to the energy crisis resulting from the depletion of fossil fuels and the growth in energy demand. There are currently three methods to convert SGE into electricity: pressure retarded osmosis (PRO), reverse electrodialysis (RED), and capacitive mixing (CAPMIX) This book covers the theory and implementation of reverse electrodialysis, which uses ion exchange membranes to selectively deliver cations or anions, and its advantages over other methods, such as high reliability without any moving parts, the direct energy conversion process from chemical energy to electrical energy, and its low fouling rate. All of these have made RED an attractive option, however, there are various challenges in the route to commercialization and these are also described. The book summarizes the research progress and current status of RED, with a final chapter considering the outlook for the future of the technology at a commercial level.
ISBN: 9789811303142$q(electronic bk.)
Standard No.: 10.1007/978-981-13-0314-2doiSubjects--Topical Terms:
190303
Electric power production.
LC Class. No.: TK1001
Dewey Class. No.: 621.3121
Energy generation using reverse electrodialysisprinciples, implementation, and applications /
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Figure captions -- Table captions -- Abstract -- 1. Introduction -- 2. Parametric study on RED with sodium chloride solution -- 3. Effect of flow structure on RED performance -- 4. REDapplied for desalination -- 5. Parametric study of RED using ammonium bicarbonate solution to recover low-grade waste heat -- 6. Nanofluidic RED -- 7. Conclusion and future prospects -- References.
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This book provides an introduction to the working principles of reverse electrodialysis and its practical application in the generation of electricity. Salinity gradient energy (SGE) has received significant attention recently due to the energy crisis resulting from the depletion of fossil fuels and the growth in energy demand. There are currently three methods to convert SGE into electricity: pressure retarded osmosis (PRO), reverse electrodialysis (RED), and capacitive mixing (CAPMIX) This book covers the theory and implementation of reverse electrodialysis, which uses ion exchange membranes to selectively deliver cations or anions, and its advantages over other methods, such as high reliability without any moving parts, the direct energy conversion process from chemical energy to electrical energy, and its low fouling rate. All of these have made RED an attractive option, however, there are various challenges in the route to commercialization and these are also described. The book summarizes the research progress and current status of RED, with a final chapter considering the outlook for the future of the technology at a commercial level.
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Energy (Springer-40367)
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EB TK1001 .E56 2019 2019
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https://doi.org/10.1007/978-981-13-0314-2
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