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    题名 作者 年代 出处 被引量
1Kinetic study of the direct hydration of turpentine显示文摘Gaodong Yang Yong Liu Zheng Zhou Zhibing Zhang 2011Chemical Engineering Journal2011,,1:2
2Microinterface intensification in hydrogenation and air oxidation processes显示文摘Hydrogenations and air oxidations usually have low apparent reaction rate,generally controlled by mass transfer rate,and widely exist in the modern chemical manufacturing process.The key to increase the mass transfer rate is the reduction of the liquid film resistance 1/kLa.In this work,the original concept of microinterface intensification for mass transfer and then for these reactions has been proposed.We derived the regulation model and set up the mathematical calculation method of micron-scale gas-liquid interface structure on mass transfer and reaction,designed the mechanical energy exchange device that can produce gas-liquid microinterface system on a large scale,and established the OMIS system which is able on line to measure the diameter and distribution of millions of microbubbles,interface area a and mass transfer film thicknessδM,as well as developed a series of microinterface intensified reactor systems(MIRs)for the applications of hydrogenation and air oxidation processes.It is believed that this research will provide an up-to-date development for the intensification of hydrogenation and air oxidation reactions.Hongliang Qian Hongzhou Tian Guoqiang Yang Gaodong Yang Lei Li Feng Zhang Zheng Zhou Weihua Huang Yufu Chen Zhibing Zhang 2022Chinese Journal of Chemical Engineering2022,,10:2
3A study of direct hydration of dihydromyrcene to dihydromyrcenol using cation exchange resins as catalyst显示文摘LIU Yong ZHOU Zheng YANG Gaodong 2010International Journal of Chemical Reactor Engineering2010,8,:1
4Kine-tics study of direct hydration of dihydromyrcene in a jet reactor显示文摘LIU Yong ZHOU Zheng YANG Gaodong 2010Ind Eng Chem Res2010,49,7:1
5Kinetic study of the direct hydration of turpentine 显示文摘Yang Gaodong Liu Yong Zhou Zheng 2011Chemical Engineer- ing Journal2011,168,1:1
6Kinetics study of the N-formylation of aniline with DMF catalyzed by temperature-controlled Brùnsted ionic liquids显示文摘A series of SO_(3)-functional Br?nsted acidic ionic liquids(SBAILs)were prepared to catalyze the Nformylation of aniline with DMF.The reaction conditions such as ionic liquid type,reaction temperature.catalyst loading and molar ratio of reactants were investigated.To the best of our knowledge,kinetic model for the N-formylation of aniline with DMF using SBAIL was firstly built and simulated.The studies on the reaction order of the reaction were evaluated by initial concentration method,and the kinetic parameters such as reaction rate constant and activation energy were proposed and used to explain the catalytic activities of the SBAILs catalysts.Accordingly,the recycling experiments showed that the SBAIL[Bsmim][HSO_(4)]can be easily recovered and reused with stable activity.Further,the temperature-controlled study emphasized that the ionic liquid was easy to be separated and environmentally friendly.Yipeng Zheng Zhennan Cao Zheng Zhou Gaodong Yang Zhibing Zhang 2022Chinese Journal of Chemical Engineering2022,,12:0
7Correlation between the lidar ratio and the Angstrom exponent of various aerosol types显示文摘Lidar ratios and AngstrOm exponents of continental,maritime,and desert aerosols were calculated to evaluate the effects of aerosol composition on these parameters.Their correlation was assessed using correlation analysis and curve fitting.The Pearson correlation coefficient between the lidar ratio and the AngstrOm exponent was larger than 0.95 in all cases.We verified the reliability of the Pearson correlation coefficient using the significance test.The relationship between the lidar ratio and the Angstrom expo- nent of continental aerosol can be described by a cubic polynomial model;thus,the function relation between the change in lidar ratios at different laser wavelengths depends on the fitting coefficients and the AngstrOm exponent.The relationship between the lidar ratio and the AngstrOm exponent of both maritime and desert aerosols can be described by a linear model.In these aerosols,the linear change in lidar ratios at different laser wavelengths remains unaffected by the AngstrOm exponent.The changes in the lidar ratio in maritime aerosol at 355nm and 532nm are -0.7times and -0.18times that at 1064nm, respectively.For desert aerosol,the changes in the lidar ratio at 355nm and 532nm are 0.37 times and 1.88times that at 1064nm,respectively.Yuehui Song Bo Zhang Gaodong Shi Shichun Li Huige Di Qing Yan Dengxin Hua 2018Particuology2018,16,5:0
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