Khoiruddin K, Wenten I G, Siagian Utjok W R
Department of Chemical Engineering, Institut Teknologi Bandung (ITB), Jalan Ganesa No. 10, Bandung 40132, Indonesia.
Research Center for Nanosciences and Nanotechnology, Institut Teknologi Bandung, Jalan Ganesa No. 10, Bandung 40132, Indonesia.
Langmuir. 2024 May 7;40(18):9362-9384. doi: 10.1021/acs.langmuir.3c03873. Epub 2024 Apr 29.
Bipolar membrane electrodialysis (BMED) is a promising technology for the capture of carbon dioxide (CO) from seawater, offering a sustainable solution to combat climate change. BMED efficiently extracts CO while generating valuable byproducts like hydrogen and minerals, contributing to the carbon cycle. The technology relies on ion-exchange membranes and electric fields for efficient ion separation and concentration. Recent advancements focus on enhancing water dissociation in bipolar membranes (BPMs) to improve efficiency and durability. BMED has applications in desalination, electrodialysis, water splitting, acid/base production, and CO capture and utilization. Despite the high efficiency, scalability, and environmental friendliness, challenges such as energy consumption and membrane costs exist. Recent innovations include novel BPM designs, catalyst integration, and exploring direct air/ocean capture. Research and development efforts are crucial to unlocking BMED's full potential in reducing carbon emissions and addressing environmental issues. This review provides a comprehensive overview of recent advancements in BMED, emphasizing its role in carbon capture and sustainable environmental solutions.
双极膜电渗析(BMED)是一种从海水中捕获二氧化碳(CO)的很有前景的技术,为应对气候变化提供了一种可持续的解决方案。BMED在有效提取CO的同时,还能产生氢气和矿物质等有价值的副产品,有助于碳循环。该技术依靠离子交换膜和电场进行高效的离子分离和浓缩。最近的进展集中在增强双极膜(BPM)中的水电离,以提高效率和耐久性。BMED在海水淡化、电渗析、水分解、酸碱生产以及CO捕获和利用等方面都有应用。尽管具有高效性、可扩展性和环境友好性,但仍存在能耗和膜成本等挑战。最近的创新包括新型BPM设计、催化剂集成以及探索直接空气/海洋捕获。研发工作对于释放BMED在减少碳排放和解决环境问题方面的全部潜力至关重要。本综述全面概述了BMED的最新进展,强调了其在碳捕获和可持续环境解决方案中的作用。