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Congjie Gao

Researcher at Zhejiang University of Technology

Publications -  454
Citations -  21728

Congjie Gao is an academic researcher from Zhejiang University of Technology. The author has contributed to research in topics: Membrane & Nanofiltration. The author has an hindex of 67, co-authored 436 publications receiving 15893 citations. Previous affiliations of Congjie Gao include Zhejiang University & Chinese Ministry of Education.

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Feasibility study on surface modification of cation exchange membranes by quaternized chitosan for improving its selectivity

TL;DR: In this article, the feasibility of quaternized chitosan as a cationic layer for surface modification of two kinds of commercial cation exchange membrane (CEM, one is heterogeneous and the other is homogeneous) to enhance their selectivity was reported.
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Dopamine-induced biomimetic mineralization for in situ developing antifouling hybrid membrane

TL;DR: A novel and facile strategy for developing antifouling hybrid membranes via dopamine-induced biomimetic mineralization of dopamine/TiO2 hybrid nanoparticles in situ within polyvinylidene fluoride membrane matrix is provided.
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Codeposition Modification of Cation Exchange Membranes with Dopamine and Crown Ether To Achieve High K+ Electrodialysis Selectivity.

TL;DR: This study can provide new insights into the separation of specific alkali metal ions, especially on reducing influence of coexisting cations K+ and Na+ on Li+ ion recovery from salt lake and seawater.
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Performance of a ceramic ultrafiltration membrane system in pretreatment to seawater desalination

TL;DR: In this paper, the performance of a zirconium dioxide ceramic membrane with 0.05μm pore diameter to clarify raw seawater under different operating conditions was investigated. And the experimental results showed that the effect of concentration polarization was dominant in the ultrafiltration of raw seawATER, and various fouling components contribute to the total in the order of R cp ǫ> R sads, R pads, R cp, R pb and R irr.
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Composite nanofiltration membrane with asymmetric selective separation layer for enhanced separation efficiency to anionic dye aqueous solution

TL;DR: A novel thin-film composite nanofiltration membrane with an asymmetric separation layer composed of relatively compact skin and loose body was designed and fabricated for improved perm-selectivity and antifouling property.