Recent advances in anion exchange membrane technology for water electrolysis: a review of progress and challenges

IF 3.5 3区 工程技术 Q3 ENERGY & FUELS
Abdul Qayoom, Muhammad Shakeel Ahmad, H. Fayaz, Atika Qazi, Jeyraj Selvaraj, Rahadian Zainul,  Krismadinata, Nasrudin Abd Rahim, Farruh Atamurotov, Thien Khanh Tran, Basma Souayeh, Natei Ermias Benti
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Abstract

Clean energy and environmental pollution are two key concerns of modern society and are pivotal necessities for the economic, social, and sustainable development of the world. Today around 80% of energy is generated using nonrenewable resources and fossil fuels (oil, gas, coal) which ultimately results in hazardous global emissions. As a clean substitute for fossil fuels, hydrogen has emerged as a promising and renewable energy resource. Utilization of this energy resource requires the development of active, stable, low-cost environmentally friendly techniques. Water splitting electrolysis is a method for producing clean and efficient hydrogen using an environmentally benign technique that is currently at its most mature stage. Electrolysis is attracting ever-increasing attention, as it is a promising electrochemical device for hydrogen production from water due to the high conversion efficiency and relatively low energy input required when compared to thermochemical and photocatalytic methods. This paper will outline the need, performance, and insight of anion exchange membrane (AEM) electrolyzer. Recent developments in the design and preparation of AEM. New strategies for activity, stability, and efficiency improvement of AEM. Membrane types, and factors affecting AEM performance in an electrolyzer. This review also discusses the effects, operating characteristics, and energy consumption of electrocatalysts in the AEM electrolyzer. Hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) pathways and mechanisms in acidic and alkaline media. This study seeks to provide a detailed overview of recent accomplishments in the field of the hydrogen economy, particularly electrolysis, to inspire further research and development to address the technology's obstacles.

Abstract Image

用于电解水的阴离子交换膜技术的最新进展:进展与挑战综述
清洁能源和环境污染是现代社会关注的两大问题,也是世界经济、社会和可持续发展的关键所在。如今,约 80% 的能源是利用不可再生资源和化石燃料(石油、天然气、煤炭)生产的,这最终导致了有害的全球排放。作为化石燃料的清洁替代品,氢已成为一种前景广阔的可再生能源。利用这种能源需要开发积极、稳定、低成本的环保技术。水分离电解法是一种利用环保技术生产清洁高效氢气的方法,目前正处于最成熟的阶段。与热化学和光催化方法相比,电解法转换效率高,所需的能量输入相对较少,是一种很有前途的从水中制氢的电化学装置,因此正吸引着越来越多的关注。本文将概述阴离子交换膜(AEM)电解槽的必要性、性能和见解。AEM 设计和制备方面的最新进展。提高 AEM 活性、稳定性和效率的新策略。影响电解槽中 AEM 性能的膜类型和因素。本综述还讨论了 AEM 电解槽中电催化剂的作用、运行特性和能耗。酸性和碱性介质中的氢进化反应(HER)和氧进化反应(OER)途径和机制。本研究旨在详细概述氢经济领域,特别是电解领域的最新成就,以启发进一步的研究和开发,解决该技术的障碍。
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来源期刊
Energy Science & Engineering
Energy Science & Engineering Engineering-Safety, Risk, Reliability and Quality
CiteScore
6.80
自引率
7.90%
发文量
298
审稿时长
11 weeks
期刊介绍: Energy Science & Engineering is a peer reviewed, open access journal dedicated to fundamental and applied research on energy and supply and use. Published as a co-operative venture of Wiley and SCI (Society of Chemical Industry), the journal offers authors a fast route to publication and the ability to share their research with the widest possible audience of scientists, professionals and other interested people across the globe. Securing an affordable and low carbon energy supply is a critical challenge of the 21st century and the solutions will require collaboration between scientists and engineers worldwide. This new journal aims to facilitate collaboration and spark innovation in energy research and development. Due to the importance of this topic to society and economic development the journal will give priority to quality research papers that are accessible to a broad readership and discuss sustainable, state-of-the art approaches to shaping the future of energy. This multidisciplinary journal will appeal to all researchers and professionals working in any area of energy in academia, industry or government, including scientists, engineers, consultants, policy-makers, government officials, economists and corporate organisations.
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