Tang et al., 2019 - Google Patents
Effect of ethanol in the coagulation bath on the structure and performance of PVDF‐g‐PEGMA/PVDF membraneTang et al., 2019
- Document ID
- 617990960595531773
- Author
- Tang Y
- Sun J
- Li S
- Ran Z
- Xiang Y
- Publication year
- Publication venue
- Journal of Applied Polymer Science
External Links
Snippet
This report investigated the effect of ethanol content in the coagulation bath on the surface composition, membrane pore size structure, pure water flux, and permeability of the amphiphilic polymer polyvinylidene fluoride (PVDF)‐g‐poly (ethylene glycol) methyl ether …
- 239000012528 membrane 0 title abstract description 169
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D71/00—Semi-permeable membranes for separation processes or apparatus characterised by the material; Manufacturing processes specially adapted therefor
- B01D71/06—Organic material
- B01D71/58—Other polymers having nitrogen in the main chain, with or without oxygen or carbon only
- B01D71/62—Polycondensates having nitrogen-containing heterocyclic rings in the main chain
- B01D71/64—Polyimides; Polyamide-imides; Polyester-imides; Polyamide acids or similar polyimide precursors
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D71/00—Semi-permeable membranes for separation processes or apparatus characterised by the material; Manufacturing processes specially adapted therefor
- B01D71/06—Organic material
- B01D71/76—Macromolecular material not specifically provided for in a single one of groups B01D71/08 - B01D71/74
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D2325/00—Details relating to properties of membranes
- B01D2325/24—Mechanical properties, e.g. strength
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D2325/00—Details relating to properties of membranes
- B01D2325/36—Hydrophilic membranes
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D67/00—Processes specially adapted for manufacturing semi-permeable membranes for separation processes or apparatus
- B01D67/0002—Organic membrane formation
- B01D67/0023—Organic membrane formation by inducing porosity into non porous precursor membranes
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Tang et al. | Effect of ethanol in the coagulation bath on the structure and performance of PVDF‐g‐PEGMA/PVDF membrane | |
Zeng et al. | Green glycerol tailored composite membranes with boosted nanofiltration performance | |
Fang et al. | Iron-tannin-framework complex modified PES ultrafiltration membranes with enhanced filtration performance and fouling resistance | |
Rahimpour et al. | Nano-porous polyethersulfone (PES) membranes modified by acrylic acid (AA) and 2-hydroxyethylmethacrylate (HEMA) as additives in the gelation media | |
Vatanpour et al. | A melamine‐based covalent organic framework nanomaterial as a nanofiller in polyethersulfone mixed matrix membranes to improve separation and antifouling performance | |
Yin et al. | Novel polyethersulfone hybrid ultrafiltration membrane prepared with SiO2-g-(PDMAEMA-co-PDMAPS) and its antifouling performances in oil-in-water emulsion application | |
CN109316981B (en) | Preparation method of super-hydrophilic polymer membrane with demulsification function | |
Zhao et al. | Hydrophilic and anti-fouling PVDF blend ultrafiltration membranes using polyacryloylmorpholine-based triblock copolymers as amphiphilic modifiers | |
Zhou et al. | Cellulose acetate ultrafiltration membranes reinforced by cellulose nanocrystals: Preparation and characterization | |
Liu et al. | Antifouling properties of poly (vinyl chloride) membranes modified by amphiphilic copolymers P (MMA-b-MAA) | |
Mousavi et al. | Preparation and characterization of modified polysulfone membranes with high hydrophilic property using variation in coagulation bath temperature and addition of surfactant | |
JP6950307B2 (en) | Particle-dispersed polyimide precursor solution, method for producing porous polyimide film, and porous polyimide film | |
Chen et al. | Hydrophilic modification of PVDF microfiltration membrane with poly (ethylene glycol) dimethacrylate through surface polymerization | |
Wang et al. | Enhanced antifouling performance of hybrid PVDF ultrafiltration membrane with the dual-mode SiO2-g-PDMS nanoparticles | |
CN114917764B (en) | Method for preparing high-selectivity high-flux PES (polyether sulfone) ultrafiltration membrane by using monomer self-crosslinking | |
Sadrzadeh et al. | Pure and mixed gas permeation through a composite polydimethylsiloxane membrane | |
Wang et al. | Ultra-low pressure PES ultrafiltration membrane with high-flux and enhanced anti-oil-fouling properties prepared via in-situ polycondensation of polyamic acid | |
Shao et al. | Amphiphilic poly (vinyl chloride)‐g‐poly [poly (ethylene glycol) methylether methacrylate] copolymer for the surface hydrophilicity modification of poly (vinylidene fluoride) membrane | |
CN104437121A (en) | PEO-b-PMMA modified PVDF ultrafiltration membrane and preparation process thereof | |
Aktas Eken et al. | Polysulfone‐based amphiphilic copolymers: Effect of hydrophilic content on morphology and performance of ultrafiltration membranes | |
Gao et al. | Bimetallic polyphenol networks structure modified polyethersulfone membrane with hydrophilic and anti-fouling properties based on reverse thermally induced phase separation method | |
Sun et al. | Hydrophobic SiO2 nanoparticle‐induced polyvinylidene fluoride crystal phase inversion to enhance permeability of thin film composite membrane | |
Yang et al. | Improving the hydrophilicity of polyethersulfone membrane by the combination of grafting technology and reverse thermally induced phase separation method | |
Zhang et al. | Polyethersulfone mixed matrix membrane with abundant sponge pores for high‐separation performance with high flux retention and cycling stability | |
CN106040011B (en) | A kind of catechol and the end amido caged silsesquioxane method that coating prepares solvent resistant NF membrane altogether |