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Zhiqian Jia

Prof. Dr. Zhiqian Jia

College of Chemistry, Beijing Normal University, Beijing, China

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Research interest Membrane material separated from the membrane (I) Membrane reactor and chemical reaction process enhancement: (1) Preparation of nanomaterials and inorganic polymer flocculants by enhanced mixing of membrane liquid phase reactor; (2) Enhanced mass transfer using membrane gas-liquid contact reactor for nanomaterials preparation and bubble-free hydrogenation; (3) The liquid-liquid reaction enhanced by phase transfer catalytic membrane reactor. (II) Structure design and performance control of functional separation membranes: (1) Preparation of pervaporation membrane for dehydration of organic solvent and removal of organic matter in water; (2) Preparation of adsorption functional membrane and solid phase extraction membrane for the adsorption of trace substances in water; (3) Preparation of graphene oxide, and COFs and MOFs membranes for dialysis and nanofiltration separation; (4) Supercapacitors, metal air batteries, hydrolyzed hydrogen, and other diaphragm and electrode materials.

Research Keywords & Expertise

Adsorption
Ion Exchange
Membrane separation

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32%
Adsorption
8%
Ion Exchange
5%
Membrane separation

Short Biography

Research interest Membrane material separated from the membrane (I) Membrane reactor and chemical reaction process enhancement: (1) Preparation of nanomaterials and inorganic polymer flocculants by enhanced mixing of membrane liquid phase reactor; (2) Enhanced mass transfer using membrane gas-liquid contact reactor for nanomaterials preparation and bubble-free hydrogenation; (3) The liquid-liquid reaction enhanced by phase transfer catalytic membrane reactor. (II) Structure design and performance control of functional separation membranes: (1) Preparation of pervaporation membrane for dehydration of organic solvent and removal of organic matter in water; (2) Preparation of adsorption functional membrane and solid phase extraction membrane for the adsorption of trace substances in water; (3) Preparation of graphene oxide, and COFs and MOFs membranes for dialysis and nanofiltration separation; (4) Supercapacitors, metal air batteries, hydrolyzed hydrogen, and other diaphragm and electrode materials.