Bipolar membranes: A review on principles, latest developments, and applications
Биполярные мембраны: обзор принципов, последних разработок и применений
2020-08-11
SCID: 54.1/ac3bcu8e
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acid and base productionbipolar membranesion-exchange membranesmembrane synthesiswater dissociation
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Abstract (AI)
Bipolar membranes (BPMs) are a special class of ion-exchange membranes constituted by a cation- and an anion-exchange layer, allowing the generation of protons and hydroxide ions via a water dissociation mechanism. Such unique feature makes bipolar membranes attractive for a variety of applications in many sectors, such as (bio)chemical industry, food processing, environmental protection, and energy conversion and storage, among others. Research and development on BPMs over the past two decades have created a growing market with commercial BPMs available today from multiple manufacturers. Moreover, BPMs are rapidly gaining attention for their technical, environmental, and economical advancements compared to conventional processes for the production of acid and base, or local pH control. This review article aims to provide an overall understanding of BPM technology by describing the current state of the art on membrane synthesis, properties, theoretical models, and applications, based on the last 70 years of scientific publications and patents in this field. Optimised BPM properties are discussed, together with a summary of the advances in BPM fabrication to attain the targeted optimised characteristics. Furthermore, novel BPM applications are presented, including a list of shortcomings of current membranes that need to be overcome to unlock new promising applications.
Key Findings
1
BPM technology has advanced substantially over the past two decades, resulting in commercial membranes from multiple manufacturers and a growing market.
2
Bipolar membranes combine cation- and anion-exchange layers to generate protons and hydroxide ions through water dissociation.
3
Bipolar membranes offer technical, environmental, and economic advantages over conventional acid/base production and local pH-control processes.
4
Novel applications are identified alongside current membrane shortcomings that must be overcome to enable further technological deployment.
5
The review synthesizes 70 years of publications and patents, covering BPM synthesis, properties, theoretical models, applications, optimized characteristics, and fabrication advances.
Research Object
bipolar membranes (BPMs)
Research Subject
their principles, synthesis and fabrication, physicochemical properties, theoretical models, optimized characteristics, and applications, including water dissociation into protons and hydroxide ions
Publication Details
Publication Date
2020-08-11
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