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通过回顾用于 RED 热机概念的膜和盐将热能转化为氢能

Heat to Hydrogen by RED-Reviewing Membranes and Salts for the RED Heat Engine Concept.

作者信息

Zimmermann Pauline, Solberg Simon Birger Byremo, Tekinalp Önder, Lamb Jacob Joseph, Wilhelmsen Øivind, Deng Liyuan, Burheim Odne Stokke

机构信息

Department of Energy and Process Engineering, Norwegian University of Science and Technology (NTNU), NO-7491 Trondheim, Norway.

Department of Chemical Engineering, Norwegian University of Science and Technology (NTNU), NO-7491 Trondheim, Norway.

出版信息

Membranes (Basel). 2021 Dec 30;12(1):48. doi: 10.3390/membranes12010048.

Abstract

The Reverse electrodialysis heat engine (REDHE) combines a reverse electrodialysis stack for power generation with a thermal regeneration unit to restore the concentration difference of the salt solutions. Current approaches for converting low-temperature waste heat to electricity with REDHE have not yielded conversion efficiencies and profits that would allow for the industrialization of the technology. This review explores the concept of Heat-to-Hydrogen with REDHEs and maps crucial developments toward industrialization. We discuss current advances in membrane development that are vital for the breakthrough of the RED Heat Engine. In addition, the choice of salt is a crucial factor that has not received enough attention in the field. Based on ion properties relevant for both the transport through IEMs and the feasibility for regeneration, we pinpoint the most promising salts for use in REDHE, which we find to be KNO, LiNO, LiBr and LiCl. To further validate these results and compare the system performance with different salts, there is a demand for a comprehensive thermodynamic model of the REDHE that considers all its units. Guided by such a model, experimental studies can be designed to utilize the most favorable process conditions (e.g., salt solutions).

摘要

反向电渗析热机(REDHE)将用于发电的反向电渗析堆栈与热再生单元相结合,以恢复盐溶液的浓度差。目前利用REDHE将低温废热转化为电能的方法尚未产生足以实现该技术工业化的转换效率和利润。本综述探讨了利用REDHE实现热制氢的概念,并梳理了实现工业化的关键进展。我们讨论了膜开发方面的当前进展,这些进展对RED热机的突破至关重要。此外,盐的选择是该领域尚未得到足够重视的一个关键因素。基于与通过离子交换膜的传输以及再生可行性相关的离子特性,我们确定了在REDHE中最有希望使用的盐,即KNO、LiNO、LiBr和LiCl。为了进一步验证这些结果并比较不同盐的系统性能,需要一个考虑REDHE所有单元的综合热力学模型。在这样一个模型的指导下,可以设计实验研究以利用最有利的工艺条件(例如盐溶液)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb9f/8779139/5be2db35fb3d/membranes-12-00048-g001.jpg

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