Yi-Ping Fan
China University of Petroleum
8 Papers
Yi-Ping Fan is an academic researcher from China University of Petroleum. The author has contributed to research in topics: Membrane & Selectivity. The author has an hindex of 1, co-authored 1 publications.
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Papers
Numerical Simulation of Influence of Feed Injection on Hydrodynamic Behavior and Catalytic Cracking Reactions in a FCC Riser under Reactive Conditions
TL;DR: In this paper, the authors proposed a method to solve the problem of energy-efficient energy harvesting in the field of chemical engineering using the state-key Laboratory of Chemical Engineering (SKL-ChE-13A05).
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Palladium-intercalated MXene membrane for efficient separation of H2/CO2: Combined experimental and modeling work
Yinsheng Wang,Yi-Ping Fan,Cheng-Xiang Wu,Yun Jin,Claudia Li,Jaka Sunarso,Xiuxia Meng,Naitao Yang +7 more
TL;DR: In this paper , a Pd-intercalated lamellar MXene membrane was designed to modify the surface chemical properties (H-spillover effect) of MXene and to expand the interlayer spacing (from 2.29 to 3.26 Å) due to the strong interaction between Pd2+ and MXene nanosheets with negative charge.
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Toward explicit anion transport nanochannels for osmotic power energy using positive charged MXene membrane via amination strategy
TL;DR: In this article , a two-dimensional layered MXene membrane with positive charge via amination strategy of 3-aminopropyltriethoxysilane (APTES) was constructed toward anion selectivity for efficient osmotic power harvesting.
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A multifunctional lactic acid based plasticizer used for plasticizing PVC and PLA: endowing PLA elastic restore capability
Minjia Lu,Pingping Jiang,Pingbo Zhang,Shan Feng,Zhixuan Cui,Qingkui Song,Yong Zhao,Jingxian Shen,Yi-Ping Fan,Huixiang Lu +9 more
TL;DR: A novel multifunctional plasticizer, cyclohexyl triethylene glycol oligo-lactate (CTLE), is designed from lactic acid, exhibiting improved thermal stability, flexibility, and migration stability in PVC and PLA blends, with enhanced elastic restore capability in PLA.
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Designing bioinspired nanofiltration membrane for enhanced water permeance and efficient ion sieving
Wenmin Wang,Yi-Ping Fan,Jaka Sunarso,Yun Jin,Jian Song,Xiuxia Meng,Naitao Yang +6 more
TL;DR: Researchers design a bioinspired nanofiltration membrane using interfacial polymerization, incorporating IU groups to enhance water transfer and ion sieving, achieving 1.5 times higher water permeance and 99.67% Na2SO4 rejection at 4000 ppm NaCl concentration.
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