Toward the Next Generation of Sustainable Membranes from Green Chemistry Principles

К следующему поколению устойчивых мембран на основе принципов зелёной химии
Enrico Drioli, Baicang Liu, John C. Crittenden, Tong Li, Alberto Tiraferri, Alberto Figoli, Wancen Xie
2020-12-17

biobased polymerscircular economygreen chemistrygreen solventssustainable membranes
Large-scale membrane technology has been widely implemented and rapidly growing for roughly 40 years. However, considering its entire life cycle, there are aspects being characterized by low sustainability, and this industry certainly cannot be defined as green. In the membrane manufacturing process, raw materials mainly rely on nonbiodegradable petroleum-based polymers and hazardous solvents. These materials are thus associated with the energy crisis and with disposal burdens at the end of their lifetime, and they pose risks to workers and the environment. Therefore, biobased polymers and green solvents should be employed within the membrane preparation process and replace traditional ones. Moreover, the wastewater generated from membrane fabrication processes contains an important amount of organic solvents and should be efficiently treated or recycled before discharge. The application of artificial intelligence in membrane manufacturing and use processes can also improve efficiency significantly. Finally, a large number of spent membrane elements should also be reused and recovered, rather than landfilled. This review critically evaluates the recent advances in methods to improve the sustainability of membrane technology, specifically emphasizing the progresses made, with regard to the above aspects. This review thus analyzes the needs for membrane industry transformations in the light of circular economy.
1
Artificial intelligence could significantly improve efficiency across membrane manufacturing and operational processes.
2
Conventional membrane technology has low life-cycle sustainability because manufacturing relies on nonbiodegradable petroleum-based polymers and hazardous solvents.
3
Membrane-manufacturing wastewater contains substantial organic solvents, requiring effective treatment or recycling before discharge.
4
Replacing conventional materials with biobased polymers and green solvents is identified as a central pathway toward more sustainable membrane fabrication.
5
Spent membrane elements should be reused and recovered instead of landfilled, supporting circular-economy transformation of the membrane industry.

membrane technology across its life cycle, including membrane manufacturing, use, wastewater generation, and end-of-life management

sustainability transformations of membrane technology based on green chemistry and circular economy principles, including biobased materials, green solvents, wastewater treatment or recycling, AI-enabled efficiency, and reuse or recovery of spent membranes

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2020-12-17
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Authors
Enrico Drioli
Baicang Liu
John C. Crittenden
Tong Li
Alberto Tiraferri
Alberto Figoli
Wancen Xie
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