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3篇 您的检索式:作者名="Pingmei Wang"
    题名 作者 年代 出处 被引量
1A Fast Blind Source Separation Algorithm Based on the Temporal Structure of Signals显示文摘Zhang Hongjuan Wang Guinan Cai Pingmei 2014Neuro- computing2014,139,2:1
2Molecular dynamics simulation study onπ-πstacking of Gemini surfactants in oil/water systems显示文摘Whereas theπ-πstacking interactions at oil/water interfaces can affect interfacial structures hence the interfacial properties,the underlying microscopic mechanism remains largely unknown.We reported an all-atom molecular dynamics(MD)simulation study to demonstrate how the Gemini surfactants with pyrenyl groups affect the interracial properties,structural conformations,and the motion of molecules in the water/n-octane/surfactant ternary systems.It is found that the pyrenyl groups tend to be vertical to the interface owing to theπ-πstacking interaction.Besides,a synergistic effect between theπ-πinteraction and steric hindrance is found,which jointly affects the coalescence of liquid droplets.Therefore,the existence of aromatic groups and a moderate number of surfactants helps to form microemulsion.This work provides a molecular understanding of Gemini surfactants with aromatic groups in microemulsion preparation and applications.Jule Ma Peiwen Xiao Pingmei Wang Xue Han Jianhui Luo Ruifang Shi Xuan Wang Xianyu Song Shuangliang Zhao 2022Chinese Journal of Chemical Engineering2022,,10:0
3Functionalized Hierarchical ZSM-5 Zeolites for the Viscosity Reduction of Heavy Oil at Low Temperature显示文摘Herein,we propose a novel approach to reduce the viscosity of heavy oil by functional hierarchical CTMS-ZSM-5-PTMS zeolites.CTMS-ZSM-5-PTMS zeolites synthesized by asymmetric modification and selective alkali etching can reduce the viscosity of heavy oil through adsorbing asphaltenes.This method can reduce the viscosity of heavy oil from hundreds of thousands mPa·s to about ten thousand mPa·s.The work provides an economical and environmentally friendly candidate for heavy oil viscosity reduction under low-temperature conditions.XIAO Peiwen LI Hui WANG Pingmei LIU Bolun JING Wendan HE Lipeng WANG Runwei HAN Xue ZHANG Zongtao QIU Shilun LUO Jianhui 2022Chemical Research in Chinese Universities2022,38,4:0
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