Polymers and Solvents Used in Membrane Fabrication: A Review Focusing on Sustainable Membrane Development
Полимеры и растворители, используемые при изготовлении мембран: обзор с акцентом на устойчивое развитие мембран
2021-04-23
SCID: 54.1/fmehe25p
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N-methyl-2-pyrrolidone (NMP)dimethylacetamide (DMAc)dimethylformamide (DMF)greener/less toxic solvent alternativesmembrane pore structurenon-solvent induced phase separation (NIPS)petroleum-derived solventspolymeric membrane fabricationscale-up of green membrane manufacturingsurface roughness
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Abstract (AI)
(1) Different methods have been applied to fabricate polymeric membranes with non-solvent induced phase separation (NIPS) being one of the mostly widely used. In NIPS, a solvent or solvent blend is required to dissolve a polymer or polymer blend. N-methyl-2-pyrrolidone (NMP), dimethylacetamide (DMAc), dimethylformamide (DMF) and other petroleum-derived solvents are commonly used to dissolve some petroleum-based polymers. However, these components may have negative impacts on the environment and human health. Therefore, using greener and less toxic components is of great interest for increasing membrane fabrication sustainability. The chemical structure of membranes is not affected by the use of different solvents, polymers, or by the differences in fabrication scale. On the other hand, membrane pore structures and surface roughness can change due to differences in diffusion rates associated with different solvents/co-solvents diffusing into the non-solvent and with differences in evaporation time. (2) Therefore, in this review, solvents and polymers involved in the manufacturing process of membranes are proposed to be replaced by greener/less toxic alternatives. The methods and feasibility of scaling up green polymeric membrane manufacturing are also examined.
Key Findings
1
Commonly used petroleum-derived solvents (NMP, DMAc, DMF) and some petroleum-based polymers may negatively impact environment and human health.
2
Non-solvent induced phase separation (NIPS) is one of the most widely used methods for fabricating polymeric membranes and requires solvents or solvent blends to dissolve polymers.
3
Solvent choice and processing conditions (diffusion rates, co-solvents, evaporation time) affect membrane pore structure and surface roughness.
4
The review evaluates methods and feasibility for scaling up green polymeric membrane manufacturing, proposing replacements of conventional solvents and polymers with greener alternatives.
5
Using greener and less toxic solvents and polymers can increase sustainability of membrane fabrication without altering membrane chemical structure.
Research Object
Polymeric membranes and the solvents/polymers used in their fabrication (especially NIPS-based membrane manufacturing)
Research Subject
Selection and replacement of solvents and polymers to develop greener, less toxic and scalable membrane fabrication processes, and the effects of solvent choice on membrane pore structure and surface roughness
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2021-04-23
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