Cargando…

Correlations between Properties of Pore-Filling Ion Exchange Membranes and Performance of a Reverse Electrodialysis Stack for High Power Density

The reverse electrodialysis (RED) stack-harnessing salinity gradient power mainly consists of ion exchange membranes (IEMs). Among the various types of IEMs used in RED stacks, pore-filling ion exchange membranes (PIEMs) have been considered promising IEMs to improve the power density of RED stacks....

Descripción completa

Detalles Bibliográficos
Autores principales: Kim, Hanki, Choi, Jiyeon, Jeong, Namjo, Jung, Yeon-Gil, Kim, Haeun, Kim, Donghyun, Yang, SeungCheol
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8400206/
https://www.ncbi.nlm.nih.gov/pubmed/34436372
http://dx.doi.org/10.3390/membranes11080609
_version_ 1783745260779732992
author Kim, Hanki
Choi, Jiyeon
Jeong, Namjo
Jung, Yeon-Gil
Kim, Haeun
Kim, Donghyun
Yang, SeungCheol
author_facet Kim, Hanki
Choi, Jiyeon
Jeong, Namjo
Jung, Yeon-Gil
Kim, Haeun
Kim, Donghyun
Yang, SeungCheol
author_sort Kim, Hanki
collection PubMed
description The reverse electrodialysis (RED) stack-harnessing salinity gradient power mainly consists of ion exchange membranes (IEMs). Among the various types of IEMs used in RED stacks, pore-filling ion exchange membranes (PIEMs) have been considered promising IEMs to improve the power density of RED stacks. The compositions of PIEMs affect the electrical resistance and permselectivity of PIEMs; however, their effect on the performance of large RED stacks have not yet been considered. In this study, PIEMs of various compositions with respect to the RED stack were adopted to evaluate the performance of the RED stack according to stack size (electrode area: 5 × 5 cm(2) vs. 15 × 15 cm(2)). By increasing the stack size, the gross power per membrane area decreased despite the increase in gross power on a single RED stack. The electrical resistance of the PIEMs was the most important factor for enhancing the power production of the RED stack. Moreover, power production was less sensitive to permselectivities over 90%. By increasing the RED stack size, the contributions of non-ohmic resistances were significantly increased. Thus, we determined that reducing the salinity gradients across PIEMs by ion transport increased the non-ohmic resistance of large RED stacks. These results will aid in designing pilot-scale RED stacks.
format Online
Article
Text
id pubmed-8400206
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-84002062021-08-29 Correlations between Properties of Pore-Filling Ion Exchange Membranes and Performance of a Reverse Electrodialysis Stack for High Power Density Kim, Hanki Choi, Jiyeon Jeong, Namjo Jung, Yeon-Gil Kim, Haeun Kim, Donghyun Yang, SeungCheol Membranes (Basel) Article The reverse electrodialysis (RED) stack-harnessing salinity gradient power mainly consists of ion exchange membranes (IEMs). Among the various types of IEMs used in RED stacks, pore-filling ion exchange membranes (PIEMs) have been considered promising IEMs to improve the power density of RED stacks. The compositions of PIEMs affect the electrical resistance and permselectivity of PIEMs; however, their effect on the performance of large RED stacks have not yet been considered. In this study, PIEMs of various compositions with respect to the RED stack were adopted to evaluate the performance of the RED stack according to stack size (electrode area: 5 × 5 cm(2) vs. 15 × 15 cm(2)). By increasing the stack size, the gross power per membrane area decreased despite the increase in gross power on a single RED stack. The electrical resistance of the PIEMs was the most important factor for enhancing the power production of the RED stack. Moreover, power production was less sensitive to permselectivities over 90%. By increasing the RED stack size, the contributions of non-ohmic resistances were significantly increased. Thus, we determined that reducing the salinity gradients across PIEMs by ion transport increased the non-ohmic resistance of large RED stacks. These results will aid in designing pilot-scale RED stacks. MDPI 2021-08-10 /pmc/articles/PMC8400206/ /pubmed/34436372 http://dx.doi.org/10.3390/membranes11080609 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kim, Hanki
Choi, Jiyeon
Jeong, Namjo
Jung, Yeon-Gil
Kim, Haeun
Kim, Donghyun
Yang, SeungCheol
Correlations between Properties of Pore-Filling Ion Exchange Membranes and Performance of a Reverse Electrodialysis Stack for High Power Density
title Correlations between Properties of Pore-Filling Ion Exchange Membranes and Performance of a Reverse Electrodialysis Stack for High Power Density
title_full Correlations between Properties of Pore-Filling Ion Exchange Membranes and Performance of a Reverse Electrodialysis Stack for High Power Density
title_fullStr Correlations between Properties of Pore-Filling Ion Exchange Membranes and Performance of a Reverse Electrodialysis Stack for High Power Density
title_full_unstemmed Correlations between Properties of Pore-Filling Ion Exchange Membranes and Performance of a Reverse Electrodialysis Stack for High Power Density
title_short Correlations between Properties of Pore-Filling Ion Exchange Membranes and Performance of a Reverse Electrodialysis Stack for High Power Density
title_sort correlations between properties of pore-filling ion exchange membranes and performance of a reverse electrodialysis stack for high power density
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8400206/
https://www.ncbi.nlm.nih.gov/pubmed/34436372
http://dx.doi.org/10.3390/membranes11080609
work_keys_str_mv AT kimhanki correlationsbetweenpropertiesofporefillingionexchangemembranesandperformanceofareverseelectrodialysisstackforhighpowerdensity
AT choijiyeon correlationsbetweenpropertiesofporefillingionexchangemembranesandperformanceofareverseelectrodialysisstackforhighpowerdensity
AT jeongnamjo correlationsbetweenpropertiesofporefillingionexchangemembranesandperformanceofareverseelectrodialysisstackforhighpowerdensity
AT jungyeongil correlationsbetweenpropertiesofporefillingionexchangemembranesandperformanceofareverseelectrodialysisstackforhighpowerdensity
AT kimhaeun correlationsbetweenpropertiesofporefillingionexchangemembranesandperformanceofareverseelectrodialysisstackforhighpowerdensity
AT kimdonghyun correlationsbetweenpropertiesofporefillingionexchangemembranesandperformanceofareverseelectrodialysisstackforhighpowerdensity
AT yangseungcheol correlationsbetweenpropertiesofporefillingionexchangemembranesandperformanceofareverseelectrodialysisstackforhighpowerdensity