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10篇 您的检索式:作者名="Li C1"
    题名 作者 年代 出处 被引量
1Preparation of Diphenyl Oxalate from Transesterification of Dimethyl Oxalate with Phenol over TS-1 Catalyst显示文摘Diphenyl oxalate was synthesized from transesterification of dimethyl oxalate with phenol over TS-1 ( 2.5 wt% Ti ) catalyst. TS-1 catalyst, as a heterogeneous catalyst, showed excellent selectivity of diphenyl oxalate and methylphenyl oxalate compared with other homogeneous catalysts. Lewis acid sites on TS-1 catalyst were the active sites for transesterification of dimethyl oxalate with phenol. The high selectivity was closely related to the weak acid sites over TS-1.Xin Bin MA*, Sheng Ping WANG, Hong Li GUO, Gen Hui XU State Key Laboratory of C1 Chemistry and Technology, School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072 2003Chinese Chemical Letters2003,14,5:2
2Efficacy of Williams Life Skills training for improving psychological health: A pilot comparison study of Chinese medical students显示文摘Li C1 Chu F Wang H 2014Asia Pae Psychiatry2014,6,2:1
3ROS\ fusions in Chinese patients with non-small- cell lung cancer显示文摘Cai W Li X Su C1 2013Ann Oncol2013,24,7:1
4Short term outcome of posterior dy- namic stabilization system in degenerative lumbar diseases 显示文摘Yang M Li C1 Chen Zl 2014In- dian J Orthop2014,48,6:1
5LY294002 and metformin cooperatively enhance the inhibition of growth and the induction of apoptosis of ovarian cancer cells显示文摘Li C1 Liu VW Chan DW 2012Int J Gynecol Cancer2012,22,1:1
6Right ventrioular outflow tract septal pa- cing is superior to right ventrioular apical pacin显示文摘Zou C1 Song J1 Li H 2015J Am Heart As- soc2015,4,4:1
7Simultaneous Removal of COS and H_2S at Low Temperatures over Nanoparticle a-FeOOH Based Catalysts显示文摘Catalysts using α-FeOOH nanoparticles as the active ingredient were tested by a microreactor-chromatography assessing apparatus at atmospheric pressure between 25 and 60 ℃ with a gas hourly spacevelocity of 10,000 h-1, while the removal performance of H2S with catalysts was investigated using thethermal gravimetric method. The results show that the catalysts are highly active for COS hydrolysis atlow temperatures (≤60 ℃) and high gas hourly space velocity, and the highest activity can reach 100%. Thecatalyst is particularly stable for 12 h, and no deactivation is observed. Nanoparticle α-FeOOH preparedusing hydrated iron sulfate shows higher COS hydrolysis activity, and the optimum calcination temperaturefor the catalyst is 260 ℃. In addition, the catalysts can remove COS and H2S simultaneously, and 60 ℃ isfavorable for the removal of H2S. The compensation effect exists in nanoparticle-based catalysts.Zhihua Gao, Chunhu Li, Kechang XieState Key Lab of C1 Chemistry and Technology, Institute of Coal Chemical Engineering, Taiyuan University of Technology,Taiyuan 030024, China 2003Journal of Natural Gas Chemistry2003,12,1:1
8Effect of exposure to volatile organic compounds (VOCs) on airway inflammatory response in mice显示文摘Wang F Li C1 Liu W 2012J Toxicol Sci2012,37,4:1
9Erythropoietin promotes bone formation through EphrinB2/EphB4 signaling 显示文摘Li C1 Shi C1 Kim J et ai 2015J Dent Res2015,,5:1
10Microkinetics of H2S Removal by Zinc Oxide in the Presence of Moist Gas Atmosphere显示文摘The microkinetics of H2S removal by ZnO desulfurization in H2O-CO2-N2, H2O-CO-N2 andH2O-O2-N2 gas mixtures was studied by thermogravimetric analysis. Experiments were carried out with100 120 mesh ZnO powder at temperatures from 473 K to 563 K. The results show that the kineticbehaviors of desulfurization could all be described by an improved shrinking-core model. The activationenergies of the reaction and the diffusion in different gas atmospheres were estimated.Hulling Fan, Chunhu Li, Hanxian Guo, Kechang XieState Key Lab of C1 Chemistry and Technology, Institute for Chemical Engineering of Coal, Taiyuan University of Technology, Taiyuan 030024, China 2003Journal of Natural Gas Chemistry2003,12,1:0
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