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DALIAN UNIVERSITY OF TECHNOLOGY Login 中文
Hongchen Guo

Professor
Supervisor of Doctorate Candidates
Supervisor of Master's Candidates


Gender:Male
Alma Mater:Dalian University of Technology
Degree:Doctoral Degree
School/Department:School of Chemical Engineering
Discipline:Industrial Catalysis. Physical Chemistry (including Chemical Physics)
Business Address:521 Room,Chemical Engineering Building B,West Campus, Dalian University of Technology.
Contact Information:+86-411-84986120
E-Mail:hongchenguo@dlut.edu.cn
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Current position: Home >> Scientific Research >> Publications
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53、The Promotion of Argon and Water Molecule on Direct Synthesis of H2O2 from H2 and O2 Yanhui Yi, Li Wang, Juan Yu, Quanren Zhu, Changgong Meng, Jialiang Zhang, Hongchen Guo* 

AIChE. J. 2018, 64, 981-992 (IF: 2.98)

 

52、CH4/NH3 Plasma Coupling Reaction for One-Pot Synthesis of N, N-dimethyl Cyanamide and Amino AcetonitrileYanhui Yi, Rui Zhang, Li Wang, Jinhui Yan, Xiaolei Yu, Xunxun Wang, Jialiang Zhang, Hongchen Guo*

ACS Omega, 2017, 2, 9199-9210.

 

51、Plasma-Triggered CH3OH/NH3 Coupling Reaction for Synthesis of Nitrile CompoundsYi Yanhui,* Wang Xunxun, Wang Li, Yan Jinhui, Zhang Jialiang, Guo Hongchen*

 Acta Phys.-Chim. Sin. 2018, 34(3), 247-255. (IF:0.767)

 

50、Atmospheric-pressure and room temperature synthesis of methanol through plasma-catalytic hydrogenation of CO2 Li Wang,Yanhui Yi,Hongchen Guo,Xin Tu*

ACS Catal.,  2018, 8, 90-100 (IF: 10.614).

 

49、One-step reforming of CO2 and CH4 to high-value liquid chemicals and fuels at room temperature via plasma-driven catalysisLi Wang,Yanhui Yi,Chunfei Wu,Hongchen Guo,Xin Tu*

Angew. Chem. Int. Ed. 2017,56,13679-13683 (IF: 11.994)

 

48、Preparation and Performance of Supported Bimetallic Catalysts for Hydrogen Production from Ammonia Decomposition by Plasma-catalysis MethodSun Shuai-Qi, Yi Yan-Hui, Wang Li,  Zhang Jia-Liang,  Guo Hong-Chen*

 Acta Phys.-Chim. Sin. 2017,33(6), 1123-1129 (IF:0.767)

 

47、Synergy of DBD plasma and Fe based catalyst in NH3 decomposition: plasma enhancing adsorption stepLi Wang, Yanhui Yi, Yanjun Guo, Yue Zhao, Jialiang Zhang, Hongchen Guo(*)

 Plasma Processes and Polymers 201714e1600111. ( IF: 2.846)

 

46Yanhui YiChao XuLi WangJuan YuQuanren ZhuShuaiqi SunXin TuChanggong MengJialiang ZhangHongchen Guo(*), Selectivity control of H2/O2 plasma reaction for direct synthesis of high purity H2O2 with desired concentration.

Chemical Engineering Journal201731337~46 (IF: 6.216)

 

45Yi, YanhuiWang, LiLi, GangGuo, Hongchen*.  A review on research progress in the direct synthesis of hydrogen peroxide from hydrogen and oxygen.

Catalysis Science & Technology, 201661593-1610,  (IF: 5.287)

 

44Wang, LiYi, YanhuiZhao, YueZhang, RuiZhang, JialiangGuo, Hongchen(*), NH3 Decomposition for H-2 Generation: Effects of Cheap Metals and Supports on Plasma-Catalyst Synerg.

ACS Catalysis, 201554167-4174 (IF: 9.307)

 

43Liu, Chunyan(#)Kong, DejiaGuo, Hongchen(*), The morphology control of zeolite ZSM-5 by regulating the polymerization degree of silicon and aluminum.

Microporous and Mesoporous Materials, 2014193: 61-68 (IF: 3.349)

 

42Zhao, YueWang, LiZhang, JialiangGuo, Hongchen(*),

Enhancing the ammonia to hydrogen (ATH) energy efficiency of alternating current arc discharge

International Journal of Hydrogen Energy, 2014397655-7663 (IF: 3.205)

 

41、Zhao, WenpingZhang, BaozhuWang, GuiruGuo, Hongchen(*), Methane formation route in the conversion of methanol to hydrocarbons.

Journal of Energy Chemistry, 201423201-206,  (IF: 2.322)

 

40、Chunyan Liu, Wenying Gu, Dejia Kong, Hongchen Guo, The significant effects of the alkali-metal cations on ZSM-5 zeolite synthesis: From mechanism to morphology,

Microporous and Mesoporous Materials, 2014, 183(1)30-36 (IF: 3.349)


39Yanhui Yi, Juncheng Zhou, Jialiang Zhang, Tianlong Gao, Hongchen Guo, Continuous and Scale-Up Synthesis of High Purity H2O2 by Safe Gas-Phase H2/O2 Plasma Reaction,

AIChE Journal, 2014, 60415-419 (IF: 2.98)


38Li Wang, Yue Zhao, Chunyang Liu, Weimin Gong and Hongchen Guo, Plasma driven ammonia decomposition on a Fe-catalyst: eliminating surface nitrogen poisoning,

Chem. Commun., 2013, 49: 3787-3789 (IF: 6.567)


37Yue Zhao, Li Wang, Jialiang Zhang, Weimin Gong, Hongchen Guo, Decomposition of ammonia by atmospheric pressure AC discharge: Catalytic effect of the electrodes,

Catalysis Today, 2013 ,211: 72-77. (IF: 4.312)


36Yanhui Yi, Juncheng Zhou, Hongchen Guo* , Jianli Zhao, Ji Su, Li Wang, Xiangsheng Wang, and Weimin Gong, Safe Direct Synthesis of High Purity H2O2 through a H2/O2 Plasma Reaction,

Angewandte Chemie International Edition, 2013, 52: 8446-8449 (IF: 11.709)


35Jiaxu Liu, Ai Sha Nu La Hong , Ning He, Guodong Liu, Cuicui Liang, Xiongfu Zhang and Hongchen Guo, The crucial role of reaction pressure in the reaction paths for i-butane conversion over Zn/HZSM-5,

Chem. Eng. J. 2013, 218: 1-8 (IF: 6.216)


34Jing Zhang, Qichao Yuan, Jialiang Zhang, Teng Li and Hongchen Guo, Direct synthesis of ethylene glycol from methanol by dielectric barrier discharge,

Chem. Commun, 2013, 4910106--10108 (IF: 6.567)


33Ai sha Nu La Hong, Liu Jiaxu, He Ning and Guo Hongchen, Catalytic conversion of n-butane over Au-Zn-modified nano-sized HZSM-5,

Chinese Journal of Catalysis, 2013, 34(6):1262-1266 (IF: 2.628)


32Wng LL, Xiong G*, Su J,Li P,Guo HC, In Situ UV Raman Spectroscopic Study on the Reaction Intermediates for Propylene Epoxidation on TS-1,

Journal of Physical Chemistry C2012,116(16)9122-9131 (IF: 4.509)


31wang L, Xin Q,Zhao Y,Zhang Ge, Dong Jie, Guo Weimin, Guo HC*, In Situ FT-IR Studies on Catalytic Nature of Iron Nitride: Identification of the N Active Site,

ChemCatChem, 2012,4(5)624-627 (IF: 4.724)


30Ji Su,Guang Xiong,Juncheng Zhou,Wenhuan Liu, Danhong Zhou,Guiru Wang,Xiangsheng Wang,Hongchen Guo, Amorphous Ti species in titanium silicalite-1: Structural features, chemical properties, and inactivation with sulfosalt ,

Journal of Catalysis, 2012, 288: 1–7 (IF: 7.354)


29Lin Sun, Xiangsheng Wang, Jichun Li, An Ma, Hongchen Guo*, Effect of acidity and diffusibility on coke deactivation over nano-sized HZSM-5 zeolites.

Reaction Kinetics, Mechanisms and Catalysis, 2011, 102: 235–247 (IF: 1.265)


28Juncheng Zhou, Yue Xu,Xu Zhou ,Junsong Gong,Yanhua Yin,Hanyong Zheng, and Hongchen Guo* Direct Oxidation of Methane to Hydrogen Peroxide and Organic Oxygenates in a Double Dielectric Plasma Reactor,

ChemSusChem, 2011, 41095-1098 (IF: 7.116)


27Ji SUJuncheng ZHOU,chunyan liu,xiangsheng wang,hongchen guo*, Gas Phase Epoxidation of Propylene with TS-1 and in Situ H2O2 Produced by a H2/O2 Plasma,

Chinese Journal of Catalysis, 2010, 31(9-10)1195-1199 (IF: 2.628)


26Peng Guo, chunyan liu,Gao Min,Xiangsheng Wang, Hongchen Guo*. Effect of ZSM-5 Crystal Size on Properties of Supported TiO2 Photocatalyst ,

Chinese Journal of Catalysis, 2010, 31(5)573-578 (IF: 2.628)


25Peng Guo, Xiangsheng Wang, Hongchen Guo*. TiO2/Na-HZSM-5 nano-composite photocatalyst: Reversible adsorption by acid sites promotes photocatalytic decomposition of methyl orange.

Applied Catalysis B- Environment, 2009, 90: 677-687. (IF: 8.328)


24Zhao Jianli; Zhou Juncheng; Guo Hongchen*; Wang Xiangsheng; Gong Weimin. Scale-up synthesis of hydrogen peroxide from H2/O2 with multiple parallel DBD tubes.

Plasma Science & Technology, 2009, 11(2): 181-186. (IF: 0.659)


23LIU Wenhuan; GUO Peng; SU Ji; HU Jia; WANG Yanmei; LIU Na; GUO Hongchen*, Acidity Characterization and Acid Catalysis Performance of Titanium Silicalite (TS-1).

Chinese Journal of Catalysis, 2009, 30(6)482-484. (IF: 2.628)

22Wang WS, Guo HC, Liu HO, Wang XSPromoting effect of SO42- on desulfurization activity on Ni/supports for fluidized catalytic cracking (FCC) gasoline

Energy & Fuels, 200822(5): 2902-2908  (IF: 2.853)


21Wang, Jincheng; Chao, Shihai; Li, Jichun; Guo, HongchenAromatization of fluid catalytic cracking light gasoline over nano-HZSM-5 zeolite catalyst

Shiyou Huagong/Petrochemical Technology, 200837: 776-782 (IF: 0.388)


20Wang WS, Guo HC, Liu HO, Wang XSHydrodesulfurization activity of nano-sized HZSM-5 catalyst modified by NiO or NiSO4

Chinese Journal of Catalysis200829(8): 705-709 (IF: 2.628)


19Wang, Anjie; Qin, Minglei; Guan, Jie; Wang, Li; Guo, Hongchen; Li, Xiang; Wang, Yao; Prins, Roel; Hu, YongkangThe synthesis of metal phosphides: Reduction of oxide precursors in a hydrogen plasma

Angewandte Chemie - International Edition, 200847: 6052-6054 (IF: 11.709)


18Zhou JH, Zhao Y , Song JF, Aisha NH, Hu J, Chen LX, Guo HCAromatization of C-5-C-8 alkane mixture over modified nano-sized HZSM-5 zeolite catalysts

Chinese Journal of Catalysis200829(7): 665-670 (IF: 2.628)


17Lidong Chen, Xiangsheng Wang, Xinwen Guo, Hongchen Guo, Hai’ou Liu and Yongying ChenIn situ nanocrystalline HZSM-5 zeolites encaged heteropoly acid H3PMo12O40 and Ni catalyst for hydroconversion of n-octane

Chemical Engineering Science, 200762(16): 4469-4478 (IF: 2.75)


16Lidong Chen, Xiangsheng Wang, Hongchen Guo, Xinwen Guo, Yanan Wang, Hai’ou Liu and Guimin Li, Hydroconversion of n-octane over nanoscale HZSM-5 zeolites promoted by 12-molybdophosphoric acid and Ni

Catalysis Communications, 20078416-423 (IF: 3.389)


15Peiqing Zhang, Xinwen Guo, Hongchen Guo and Xiangsheng WangStudy of the performance of modified nano-scale ZSM-5 zeolite on olefins reduction in FCC gasoline

J. of Molecular Catalysis A: Chemical, 2007261139-146 (IF: 3.958)


14、 Jianli Zhao, Juncheng Zhou, Ji Su, Hongchen Guo, Xiangsheng Wang, and Weimin Gong,

AIChE J. 2007533204-3209 (IF: 2.98)


13Liu N, Guo HC*, Wang XS, Chen LX, Zou LJ, Increasing the propylene epoxidation activity of TS-1 catalysts by hydrothermal treatment of ammonia solution,

Reaction Kinetics and Catalysis Letters, 200587 (1): 77-83 (IF: 1.265)


12Juncheng Zhou, Hongchen Guo*, Xiangsheng Wang, Mingxing Guo, Jiangli Zhao, Lixing Chen, Weimin GongDirect and Continuous Synthesis of Concentrated Hydrogen Peroxide by the Gaseous Reaction of H2 / O2 Non-equilibrium Plasma

Chem. Commun. 2005, 1631-1633. (IF: 6.567)


11Zhang Peiqing, Wang Xiangsheng, Guo Xinwen, Guo Hongchen, Zhao Leping, Hu Yongkang, Characterization of Modified Nano-Scale ZSM-5 Zeolite and its Application in the Olefins Reduction in FCC Gasoline,

Catalysis Letters, 200492:1-2 (IF: 2.294)


10Zhoubo XU, Hongchen GUO*, Xiangsheng WANG, Peiqing ZhANG,et al,Enhancing the Deactivation Durability of Nano-sized HZSM-5 for Aromatization by Adjusting Its Ratio of Lewis/Bronsted Acid Sites,

Chinese Chemical Letters, 2004151123-1126. (IF: 1.947)


9Fang Xiangchen, Zhao Leping, Hu Yongkang, Guo Hongchen, Gasoline sulphur removal and olefins reduction, ptq (petroleum technology quarterly)catalysis, 9, 2(2004)49-50. 


8Zhang Peiqing, Wang Xiangsheng, Guo Hongchen, Reducing Olefins in FCC Gasoline by Isomerization and Aromatization over Modified Nano-ZSM-5,

Chinese Journal of Catalysis, 200324159-160 (IF: 2.628)


7H.C. Guo, X.S. Wang and G.R Wang, Enhancing the shape selectivity of nanocrystalline HZSM-5 zeolite via comprehensive modifications,

Stud. Surf. Sci. Catal., 2001135307. 


6Guo Hongchen, Wang Xiangsheng, Modified Nano-ZSM-5 Zeolite As para-Selective Alkylation Catalyst,

Chinese Journal of Catalysis, 200021397-398 (IF: 2.628)


5、 Hongchen Guo, Toru Shigematsu, Shigeru, Morimura and Kenji Kida,Production of Calcium Hydroxyapatite and Protein Hydrolysate from Fish Scales by Enzymatic Hydrolysis or Acid Extraction, in:Japanese Symposium of Biochamical Engineering Kyushu Branch No. 6, A-34(oral,1999).


4G. Hongchen, W. Xiangsheng, and W. Guiru, The Diffusion Properties,External Acidity and Catalytic Performances of Nano-Crystalline HZSM-5 Zeolite, in: Proceedings of the 12th International Zeolite Conference, Baltimore, I-141(1998).


3W. Guiru, G. Hongchen, L. Yushan, The Preparation of Zeolite 4A Membrane Reactor and Its Use in Dehydration of Diethylene Glycolin: Proceedings of the 12th International Zeolite Conference, Baltimore, III-1795 (1998). 


2Guo Hongchen, Wang Xiangsheng, Zou Bensan, Synthesis of Cerinium-containing High Silica Zeolites: New Catalysts for Hydroxylation of Phenol, Chinese Journal of Catalysis, 18(1997)185-186


1Wang XS, Wang GR, Guo HC, Wang XQ, Ethylation of Ethylbenzene to Produce para-DiethylbenzeneStud. Surf. Sci. Catal., 105(1997)1357-1364.