Electrodialytic Processes: Market Overview, Membrane Phenomena, Recent Developments and Sustainable Strategies

Электродиализные процессы: обзор рынка, мембранные явления, последние достижения и стратегии устойчивого развития
Laurent Bazinet, Thibaud R. Geoffroy
2020-09-02

electroconvective vorticeselectrodialytic processeslife cycle assessmentmembrane phenomenapulsed electric fields
In the context of preserving and improving human health, electrodialytic processes are very promising perspectives. Indeed, they allow the treatment of water, preservation of food products, production of bioactive compounds, extraction of organic acids, and recovery of energy from natural and wastewaters without major environmental impact. Hence, the aim of the present review is to give a global portrait of the most recent developments in electrodialytic membrane phenomena and their uses in sustainable strategies. It has appeared that new knowledge on pulsed electric fields, electroconvective vortices, overlimiting conditions and reversal modes as well as recent demonstrations of their applications are currently boosting the interest for electrodialytic processes. However, the hurdles are still high when dealing with scale-ups and real-life conditions. Furthermore, looking at the recent research trends, potable water and wastewater treatment as well as the production of value-added bioactive products in a circular economy will probably be the main applications to be developed and improved. All these processes, taking into account their principles and specificities, can be used for specific eco-efficient applications. However, to prove the sustainability of such process strategies, more life cycle assessments will be necessary to convince people of the merits of coupling these technologies.
1
Additional life cycle assessments are needed to substantiate the sustainability and eco-efficiency of coupled electrodialytic strategies.
2
Advances in pulsed electric fields, electroconvective vortices, overlimiting conditions, and reversal modes are expanding electrodialysis applications.
3
Electrodialytic processes support water treatment, food preservation, bioactive-compound production, organic-acid extraction, and energy recovery with limited environmental impact.
4
Potable-water and wastewater treatment, alongside circular-economy production of value-added bioactive products, are identified as leading future applications.
5
Scale-up and operation under real-life conditions remain major barriers to deploying electrodialytic processes.

electrodialytic processes and membranes used for water and wastewater treatment, food preservation, bioactive-compound production, organic-acid extraction, and energy recovery

recent developments in electrodialytic membrane phenomena, their applications, scale-up challenges, and sustainability in circular-economy strategies

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2020-09-02
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Laurent Bazinet
Thibaud R. Geoffroy
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