A systematic literature review on combined seawater desalination and reverse electrodialysis: Evaluating its technological readiness and potential for full-commercialization

IF 8 Q1 ENERGY & FUELS
Marijn T. van Geet, Janina Fuchs
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引用次数: 0

Abstract

Combined seawater desalination and reverse electrodialysis technology has emerged as an eco-innovation that holds great promise to enhance the economic and environmental performance of the desalination industry. However, despite its apparent benefits and increased academic interest, reverse electrodialysis is, to date, not commonly used in combination with desalination. Using a technological readiness perspective, the current study evaluates its technological maturity and potential to achieve full commercialization. Based on a structured literature review including 70 recent publications on the topic, the current study identified four main techno-economic barriers that stand in the way of this eco-innovation progressing to wide-scale adoption: (1) a low power density and energy efficiency; (2) a high levelized cost of energy; (3) technological immaturity; and (4) a lack of competitiveness. The technological immaturity of combined seawater desalination and reverse electrodialysis technology is one of the prime reasons for the low power density and energy efficiency, which in turn has a causal relationship with the high costs associated with the technology. Additionally, the high costs may contribute to the lack of competitiveness. It is concluded that these main barriers might cause the eco-innovation to fall victim to the so-called "Valley of Death," a funding gap between the proof of concept within academia and the adoption of the technology by the industry on a commercial scale. These findings have implications for future policy initiatives and investment decisions that aim to decarbonize and lessen the desalination industry's environmental impact.
海水淡化与反电渗析联合的系统文献综述:评估其技术成熟度和全面商业化的潜力
海水淡化和反电渗析相结合的技术已经成为一种生态创新,有望提高海水淡化行业的经济和环境绩效。然而,尽管反向电渗析有明显的好处,也增加了学术界的兴趣,但到目前为止,它还不常与海水淡化结合使用。本研究采用技术准备度的观点,评估其技术成熟度和实现完全商业化的潜力。基于结构化的文献综述,包括70篇关于该主题的最新出版物,本研究确定了阻碍这种生态创新向大规模采用发展的四个主要技术经济障碍:(1)低功率密度和能源效率;(2)能源平准化成本高;(3)技术不成熟;(4)缺乏竞争力。海水淡化与反电渗析联合技术的技术不成熟是其功率密度低、能效低的主要原因之一,而这又与该技术的高成本有因果关系。此外,高成本可能会导致竞争力的缺乏。结论是,这些主要障碍可能导致生态创新成为所谓的“死亡之谷”的受害者,即学术界的概念证明与工业在商业规模上采用该技术之间的资金缺口。这些发现对未来旨在脱碳和减少海水淡化行业对环境影响的政策举措和投资决策具有启示意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Energy nexus
Energy nexus Energy (General), Ecological Modelling, Renewable Energy, Sustainability and the Environment, Water Science and Technology, Agricultural and Biological Sciences (General)
CiteScore
7.70
自引率
0.00%
发文量
0
审稿时长
109 days
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