程党国 教授 博士 浙江省 研究领域: 精细化工 研究方向: 催化及催化反应工程 所在单位: 浙江大学

基本信息

所在单位:
浙江大学
机构细分:
化学工程与生物工程学院
单位类型:
高等院校
职务:
教授
职称:
教授
最高学历:
博士
出生年份:
1979-01-01
专家介绍:
程党国,教授,博士生导师。国家自然科学基金优秀青年基金和浙江省杰出青年基金获得者,浙江大学求是青年学者。
1979年11月生于陕西,2001年7月、2006年3月分别获天津大学化学工艺专业学士、博士学位。2006年4月进入浙江大学化工系联合化学反应工程研究所工作至今,历任讲师、副教授、教授。其中2014年8月至2015年8月,受国家留学基金管理委员会资助赴美国伊利诺伊大学香槟分校(UIUC)访学。专业特长为催化及催化反应工程。
先后主持国家自然科学基金(联合基金重点、优青、重大计划培育、面上等)、浙江省自然科学基金(杰青、重点)项目十余项,以项目骨干参与国家重点研发计划项目3项。在研项目主要集中在新型能源催化材料的设计与制备、催化反应机理研究等方面。相关成果已在Chemical Society Reviews, Angewandte Chemie-International Edition, ACS Catalysis, Chemical Engineering Science, Chemical Engineering Journal等国内外核心期刊发表SCI收录论文80余篇,获国家授权发明专利31件。研究成果曾获石化联合会科技进步奖、侯德榜化工科技青年奖等多项荣誉。

科研能力

研究领域:
精细化工
研究方向:
催化及催化反应工程
中文标签:
氧化亚氮;乙炔氢氯化;分子筛膜;苯甲酸;催化化学;氯乙烯;苯甲醛;CeO2;氧化还原性质;活性炭颗粒
英文标签:
Methane;Plasma;Catalytic Cracking;Hydrogen Evolution;Glow Discharge;Density Functional Theory;Formic Acid;Hydrogen;Benzoic Acid;Benzaldehyde
论文著作:
76. Wang, Jinyao; Wang, Jinling; Liu, Xiaoling; Chong, Mingben; Cheng, Dang-guo*; Chen, Fengqiu. Oxidative Dehydrogenation of Cyclohexane over Halogen-Decorated Ceria Nanorods with Tuned Electronic Structure and Surface Oxygen Species, CHEMCATCHEM, 2025, in press.
75. Xie, Xiaojin; Xu, Shuman; Chen, Fengqiu; Zhan, Xiaoli; Cheng, Dang-guo*. Effect of external surface barriers over hierarchical ZSM-5 zeolite on n-heptane catalytic cracking. CHEMICAL ENGINEERING SCIENCE, 2025, 301, 120763.
74. Chen, Fengqiu; Wang, Qiu; Lin, Shengda; Luo, Huanhu; Yu, Wanjin; Liu, Wucan; Cheng, Dang-guo*. Pd/CQDs/TiO2–NH2 composite schottky catalyst for efficient hydrogen production from formic acid dehydrogenation under visible light, INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2024, 94, 1136-1145.
73. Men,Yu-Long; Liu, Peng; Cheng, Dang-Guo*; Peng, Chong*; Zhao, Yiyi; Pan, Yun-Xiang *. Enhanced selective hydrogenation of CO2 to CH4 on molybdenum carbide hollow sphere catalyst, AIChE J. 2024, 70, e18555.
72. Wang, Qiu; Lin, Shengda; Luo, Huanhu; Yu, Wanjin; Liu, Wucan; Chen, Fengqiu; Cheng, Dang-guo*. Enhanced photocatalytic dehydrogenation of formic acid over ultrafine electron-deficient Pd nanoparticles immobilized on amine-functionalized mesoporous titanium dioxide, INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2024, 77, 1307-1316.
71. Wan, Chao; Li, Rong; Wang, Jiapei; Cheng, Dang-guo*; Chen, Fengqiu; Xu, Lixin; Gao, Mingbin*; Kang, Yunqing*; Eguchi, Miharu; Yamauchi, Yusuke*. Silica Confinement for Stable and Magnetic Co-Cu Alloy Nanoparticles in Nitrogen-Doped Carbon for Enhanced Hydrogen Evolution, ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2024, 63, e202404505.
70. Zhao, Qinyang; Hou, Xinglin; Liu, Xiaoling; Chong, Mingben; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Facet-Dependent Oxygen Mobility and Reaction Pathways for Oxidative Dehydrogenation of 1-Butene over Bi2MoO6,  ACS CATALYSIS, 2024,  14, 3543−3555.
69. Wan, Chao; Liang, Yu; Zhou, Liu; Huang, Jindou; Wang, Jiapei; Chen, Fengqiu; Zhan, Xiaoli; Cheng, Dang-guo*. Integration of morphology and electronic structure modulation on cobalt phosphide nanosheets to boost photocatalytic hydrogen evolution from ammonia borane hydrolysis, GREEN ENERGY & ENVIRONMENT, 2024, 9, 333-343.
68. Hou, Xinglin; Zhao, Qinyang; Liu, Xiaoling; Chong, Mingben; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. CeO2 crystal plane engineering to modulate CuO-CeO2 interactions and modify the CO-PROX reaction pathway, CHEMICAL ENGINEERING JOURNAL, 2024, 480, 147982.
67. Wan, Chao; Li, Gui; Wang, Jiapei; Xu, Lixin; Cheng, Dang-guo*; Chen, Fengqiu; Asakura, Yusuke; Kang, Yunqing*; Yamauchi, Yusuke*. Modulating Electronic Metal-Support Interactions to Boost Visible-Light-Driven Hydrolysis of Ammonia Borane: Nickel–Platinum Nanoparticles Supported on Phosphorus-Doped Titania, ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2023, 62, e202305371.
66. Xu, Shuman; Zhang, Ke; Boruntea, Cristian-Renato; Cheng, Dang-guo*; Chen, Fengqiu; Ye, Guanghua; Zhou, Xinggui; Coppens, Marc-Olivier*. Surface barriers to mass transfer in nanoporous materials for catalysis and separations, CHEMICAL SOCIETY REVIEWS, 2023, 52, 3991–4005.
65. Zhang, Xiaoxue; Xu, Shuman; Hao, Jing; Xie, Xiaojin; Chen, Fengqiu; Cheng, Dang-guo*. Effect of particle size of single-crystalline hierarchical ZSM-5 on its surface mass transfer in n-heptane catalytic cracking, CHINESE JOURNAL OF CHEMICAL ENGINEERING, 2023, 63, 148-157.
64. Zhao, Qinyang; Hou, Xinglin; Liu, Zichen; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Engineering Specific Mo−O Bond Stretching to Activate Lattice Oxygen in V‑Doped Bi2MoO6 for Enhanced Oxidative Dehydrogenation of 1‑Butene, INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2023, 62, 329−340.(COVER PAPER)
63. Hou, Xinglin; Zhao, Qinyang; Liu, Zichen; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Modulating Cu species in copper–ceria catalyst for boosting CO preferential oxidation: elucidating the role of ceria crystal plane, INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2023, 48, 24697-24708.
62. Wan, Chao;  Liu, Xiaoling;  Wang, Jiapei;  Chen, Fengqiu;  Cheng, Dang-guo*.  Heterostructuring 2D Co2P nanosheets with 0D CoP via a salt-assisted strategy for boosting hydrogen evolution from ammonia borane hydrolysis, NANO RESEARCH, 2023, 16(5): 6260−6269.
61. Hao, Jing; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Synthesis of nanosheet epitaxial growth ZSM-5 zeolite with increased diffusivity and its catalytic cracking performance,  CATALYSIS SCIENCE & TECHNOLOGY, 2022, 12, 3912–3920.
60. Wang, Shuyan; Wan, Chao*; Chen, Fengqiu; Chong, Mingben; Cheng, Dang-guo*. Regulating bandgap of graphitic carbon nitride via Mn doping for boosting visible-light-driven water reduction, JOURNAL OF PHYSICS D: APPLIED PHYSICS, 2022, 55, 284002.
59. Liu, Zichen; Xu, Shuman; Hao, Jing; Song Lina; Chong, Mingben; Cheng, Dang-guo*; Chen, Fengqiu. Bifunctional Catalysts Composed of Low Silicon-Content SAPO-34 Nanosheets and In2O3 /ZrO2 with Improved Performance for CO2 Hydrogenation, GREENHOUSE GASES: SCIENCE AND TECHNOLOGY, 2022, 12, 305-320.
58. Wang, Jinling; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Chlorine-decorated ceria nanocubes for facilitating low−temperature cyclohexane oxidative dehydrogenation: Unveiling the decisive role of surface species and acid properties, ACS CATALYSIS, 2022, 12, 4501-4516.(COVER PAPER)
57. Chen, Fengqiu; Hao, Jing; Yu, Yueyang; Cheng, Dang-guo*; Zhan, Xiaoli. The influence of external acid strength of hierarchical ZSM-5 zeolites on n-heptane catalytic cracking, MICROPOROUS AND MESOPOROUS MATERIALS, 2022, 330,111575.
56. Wan, Chao; Zhou, Liu; Xu, Shuman; Jin, Biyu; Ge, Xin*; Qian, Xing; Xu, Lixin; Chen, Fengqiu; Zhan, Xiaoli; Yang, Yongrong; Cheng, Dang-guo*. Defect engineered mesoporous graphitic carbon nitride modified with AgPd nanoparticles for enhanced photocatalytic hydrogen evolution from formic acid, CHEMICAL ENGINEERING JOURNAL, 2022, 429, 132388.
55. Ye, Jingrui; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Metal-organic framework-derived CeO2 nanosheets confining ultrasmall Pd nanoclusters catalysts with high catalytic activity, INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2021, 46, 39892-39902.
54. Wang, Lian; Wan, Chao; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Preparation of NiZnCe composite oxide and its catalytic performance for dehydrogenation of n-butane, CIESC JOURNAL, 2021, 72(1): 534-542.
53. Wang, Jinling; Wan, Chao; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Unveiling the morphology dependence of ceria nanocrystals for boosting low-temperature cyclohexane oxidative dehydrogenation, APPLIED SURFACE SCIENCE, 2021, 565, 150609.
52. Chen, Fengqiu; Xia,Yang; Lao, Jiazheng; Cheng, Dang-guo*; Zhan, Xiaoli. Unraveling the Change in Multiple Cu Species Present in CuO/CeO2 over the Preferential CO Oxidation Reaction, INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2021, 60, 9068-9079.
51. Hao, Jing; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. n-Heptane catalytic cracking on ZSM-5 zeolite nanosheets: Effect of nanosheet thickness, MICROPOROUS AND MESOPOROUS MATERIALS, 2021, 310,110647.
50. Li, Shenglai; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Influence of Extra-Framework Al in Fe-MOR Catalysts for the Direct Conversion of Methane to Oxygenates by Nitrous Oxide, CHINESE JOURNAL OF CHEMICAL ENGINEERING, 2021, 33, 132-138.
49. Liu, Hui; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. 2D porous N-deficient g-C3N4 nanosheet decorated with CdS nanoparticles for enhanced visible-light-driven photocatalysis, ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2020, 8, 16897-16904.
48. Lao, Jiazheng; Wan, Chao; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Oxygen exchange in Bi2MoO6 nanosheet with different thickness during oxidative dehydrogenation of 1-butene, CATALYSIS SCIENCE & TECHNOLOGY, 2020, 10, 8034-8041.
47. Zhao, Ziyu; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli.Hierarchical porous TS-1/Pd/CdS catalysts for enhanced photocatalytic hydrogen evolution, INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,  2020, 45, 33532-33542.
46. Wan, Chao; Sun, Lin; Xu, Lixin; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli; Yang,Yongrong. Boosting visible-light-driven hydrogen evolution from formic acid over AgPd/2D g-C3N4 nanosheets Mott-Schottky photocatalyst, CHEMICAL ENGINEERING JOURNAL, 2020, 396, 125229.
45. Chen, Lu; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. A density functional theory study on the conversion of polycyclic aromatic hydrocarbons in hydrogen plasma, INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2020, 45, 309-321.
44. Liu, Hui; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Porous lantern-like MFI zeolites composed of 2D nanosheets for highly efficient visible light-driven photocatalysis, CATALYSIS SCIENCE & TECHNOLOGY, 2020, 10, 351-359.(COVER PAPER)
43. Ye, Jingrui; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Controlled Synthesis of Sintering-Resistant Pd@CeO2 Core−Shell Nanotube Catalysts for CO Oxidation, INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2019, 58, 21972-21982.(COVER PAPER)
42. Xia, Yang; Lao, Jiazheng; Ye, Jingrui; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Role of Two-Electron Defects on the CeO2 Surface in CO Preferential Oxidation over CuO/CeO2 Catalysts, ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2019, 7, 18421-18433.(COVER PAPER)
41. Ye, Jingrui; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Promoting effects of pretreatment on Pd/CeO2 catalysts for CO oxidation, INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2019, 44, 17985-17994.
40. Wan, Chao; Sun, Lin; Xu, Lixin; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli; Yang,Yongrong. Novel NiPt alloy nanoparticle decorated 2D layered g-C3N4Nanosheets: a highly efficient catalyst for hydrogen generation from hydrous hydrazine,  JOURNAL OF MATERIALS CHEMISTRY A, 2019, 7,8798-8804.
39. Fan, Lisong; Cheng, Dang-guo*; Song, Lina; Chen, Fengqiu Zhan, Xiaoli. Direct conversion of CH4 to oxy-organics by N2O using freeze-drying FeZSM-5, CHEMICAL ENGINEERING JOURNAL, 2019, 369, 522-528.
38. Fan, Lisong;  Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Preparation of highly dispersed iron species over ZSM-5 with enhanced metal-support interaction through freeze-drying impregnation, CHINESE JOURNAL OF CATALYSIS, 2019, 40, 1109-1115.
37. Xu, Shuman; Zhang, Xiaoxiao; Cheng, Dang-guo*; Chen, Fengqiu; Ren, Xiaohong. Effect
of hierarchical ZSM-5 zeolite crystal size on diffusion and catalytic
performance of n-heptane cracking, FRONTIERS OF CHEMICAL SCIENCE AND ENGINEERING,
2018, 12,780-789.
36. Xia, Yang; Ye, Jingrui; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Identification of a flattened Pd–Ce oxide cluster as a highly efficient catalyst for low-temperature CO oxidation, CATALYSIS
SCIENCE & TECHNOLOGY, 2018, 8, 5137-5147.(COVER PAPER)
35. Zhu, Jing; Fan, Lisong; Song, Lina; Cheng, Dang-guo*; Chen, Fengqiu. CH4 oxidation to oxygenates with N2O over iron-containing Y zeolites: Effect of preparation, CHINESE JOURNAL OF CHEMICAL ENGINEERING, 2018, 26, 2064-2069.
34. Zhang, Xiaoxiao; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. The Role of External Acidity of Hierarchical ZSM-5 Zeolites in n-Heptane Catalytic Cracking, CHEMCATCHEM,
2018, 10, 2655-2663.
33. Zhang, Xiaoxiao; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Dealumination kinetics of composite ZSM-5/mordenite zeolite during steam treatment: An in-situ DRIFTS study, CHINESE
JOURNAL OF CHEMICAL ENGINEERING, 2018, 26, 545-550.
32. Zhang, Xiaoxiao; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli.  n-Heptane catalytic cracking on hierarchical ZSM-5 zeolite: The effect of mesopores, CHEMICAL ENGINEERING SCIENCE, 2017, 168, 352-358.
31. Li, Xiaoyi; Cheng, Dang-guo*; Zhao, Zhi-jian; Chen, Fengqiu; Gong, Jinlong*. Temperature-induced Deactivation Mechanism of ZnFe2O4 for Oxidative Dehydrogenation of 1-Butene, REACTION CHEMISTRY & ENGINEERING, 2017, 2, 215-225.
30.Huang, Xiaoyuan; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Reaction pathways of hemicellulose and mechanism of biomass pyrolysis in hydrogen plasma: A density functional theory study, RENEWABLE ENERGY, 2016, 96,490-497.
29.Cheng, Dang-guo; Jin, Weiyang; Chen, Fengqiu*; Zhan, Xiaoli. Alumina membrane coated activated carbon: A novel strategy to enhance mechanical properties of solid catalyst, RSC ADVANCES, 2016, 6, 10229-10232.
28. Wan, Chao; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli.The role of active phase in Ce modified BiMo catalysts for oxidative dehydrogenation of 1-butene, CATALYSIS TODAY, 2016, 264, 180-184.
27. Wu Jingmi; Zeng, Liang; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli; Gong, Jinlong*. CeO2 Nanotube Supported Pd Nanopaticles for CO Oxidation at Low Temperatures, CHINESE JOURNAL OF CATALYSIS, 2016, 37(1):83-90.
26. Wan, Chao; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Effects of zirconium content on the catalytic performance of BiMoZrx in the oxidative dehydrogenation of 1-butene to 1,3-butadiene, JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, 2016, 91(2):353-358.
25. Do, Manh Huy; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Exceptionally stable and hierarchically porous self-standing zeolite monolith based on a solution-mediated and solid-state transformation synergistic mechanism, MATERIALS CHEMISTRY AND PHYSICS, 2015, 168, 79-84.
24. Wan, Chao; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Oxidative dehydrogenation of 1-butene over vanadium modified bismuth molybdate catalyst: an insight into mechanism, RSC ADVANCES, 2015,5,42609-42615.
23. Wan, Chao; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Fabrication of CeO2 nanotube supported Pt catalyst encapsulated with silica for high and stable performance, CHEMICAL COMMUNICATIONS, 2015, 51, 9785-9788.(COVER PAPER)
22. Do, Manh Huy; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Zeolite with oriented arrays of macrochannels from zeolitic building block disassembly, MATERIALS LETTERS, 2015,141,231-234.
21. Huang, Xiaoyuan; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. A density functional theory study on the decomposition of aliphatic hydrocarbons and cycloalkanes during coal pyrolysis in hydrogen plasma, JOURNAL OF ENERGY CHEMISTRY, 2015, 24(1): 65-71.
20. Wan, Chao; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Characterization and Kinetic Study of BiMoLax Oxide Catalysts for Oxidative Dehydrogenation of 1-Butene to 1,3-Butadiene, CHEMICAL ENGINEERING SCIENCE, 2015, 135,553-558.
19. Do, Manh Huy; Wang, Tuo; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli; Rioux, Robert M.; Gong, Jinlong*. Simple Strategies for Fabrication of a Periodic Mesoporous Aluminosilicate with Crystalline Walls, SMALL, 2014, 10(21):4249-4256.(COVER PAPER)
18. Do, Manh Huy; Wang, Tuo; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli; Gong, Jinlong*. Zeolite Growth by Synergy between Solution-mediated and Solid-phase Transformations, JOURNAL OF MATERIALS CHEMISTRY A, 2014, 2, 14360-14370.(COVER PAPER)
17. Yu,Yingying; Xu, Yiming; Cheng, Dang-guo*; Chen,Yingcai; Chen, Fengqiu; Lu, Xiaoyong; Huang,Yiping; Ni, Songbo. Transformation of syngas to light hydrocarbons over bifunctional CuO-ZnO/SAPO-34 catalysts: Effect of preparation methods, REACTION KINETICS MECHANISMS AND CATALYSIS, 2014, 112,489-497.
16. Chen, Fengqiu; Huang, Xiaoyuan; Cheng, Dang-guo*; Zhan, Xiaoli. Hydrogen production from alcohols and ethers via cold plasma: A review, INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2014, 37(17): 9036-9046.
15. Chen, Yanping; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Selective Catalytic Reduction of NOx by Hydrocarbons over Copper-Free Metal Supported Zeolite,   PROGRESS IN CHEMISTRY, 2013, 25(12): 2011-2019.
14. Chen, Fengqiu; Jin, Weiyang; Cheng, Dang-guo*; Zhan, Xiaoli; Lin, Y. S. Fabrication of AC@ZSM-5 core-shell particles and their performance in Fischer-Tropsch synthesis, JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, 2013, 88(12): 2133-2140.
13. Huang, Xiaoyuan; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. A Density Functional Theory Study on Pyrolysis Mechanism of Lignin in Hydrogen Plasma, INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2013, 52(39): 14107-14115.
12. Huang, Xiaoyuan; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Reaction pathways of beta-D-glucopyranose pyrolysis to syngas in hydrogen plasma: A density functional theory study, BIORESOURCE TECHNOLOGY, 2013, 143,447-454.
11. Huang, Xiaoyuan; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. Pathways of liquefied petroleum gas pyrolysis in hydrogen plasma: A density functional theory study,  JOURNAL OF ENERGY CHEMISTRY, 2013, 22(3): 484-492.
10. Chen, Fengqiu; Cai, Chenchen; Cheng, Dang-guo*; Zhan, Xiaoli. Heat Transfer Characteristics of Alumina Membrane Coated Activated Carbon with Core-Shell Structure,  INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2013, 52(10): 3653-3657.
9.Jin Weiyang; Cheng Dang-guo*; Chen Fengqiu; Zhan Xiaoli. Synthesis of MFI-Type Zeolite Membrane Encapsulated Activated Carbon Particles Using a Modified Seeded Method, ACTA PHYSICO-CHIMICA SINICA, 2013, 29(1): 139-143.
8. Huang, Xiaoyuan; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. The decomposition of aromatic hydrocarbons during coal pyrolysis in hydrogen plasma: A density functional theory study,  INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2012, 37(23): 18040-18049.
7. Cheng, Dang-guo; Chen, Fengqiu; Zhan, Xiaoli. Characterization of iron-containing AlPO-5 as a stable catalyst for selective catalytic reduction of N2O with CH4 in the presence of steam,  APPLIED CATALYSIS A-GENERAL, 2012, 435, 27-31.
6. Chen, Fengqiu; Ma, Liyong; Cheng, Dang-guo*; Zhan, Xiaoli. Synthesis of hierarchical porous zeolite and its performance in n-heptane cracking, CATALYSIS COMMUNICATIONS, 2012, 18,110-114.
5. Cheng, Dang-guo; Zhu, Cheng; Zhao, Xiaoxu; Chen, Fengqiu; Zhan, Xiaoli.  Influence of Pd on FeAlPO-5 zeolite in the catalytic reduction of N2O with methane, REACTION KINETICS MECHANISMS AND CATALYSIS, 2010, 103(1): 219-226.
4. Zhao Xiaoxu; Cheng, Dang-guo*; Chen, Fengqiu; Zhan, Xiaoli. nfluence of Fe Content on Catalytic Reduction of N2O with CH4 over FeAlPO-5 Catalyst, CHINESE JOURNAL OF CATALYSIS, 2010, 31(1): 68-71.
3. Cheng Dang-guo; Hou Chunyang; Chen Fengqiu; Zhan Xiaoli. Effect of manganese and potassium addition on CeO2-Al2O3 catalyst for hydrogenation of benzoic acid to benzaldehyde,  JOURNAL OF RARE EARTHS, 2009, 27(5): 723-727.
2. Cheng Dang-guo; Hou Chunyang; Chen Fengqiu; Zhan Xiaoli. An efficient and stable Mn-K/CeO2-Al2O3 catalyst for hydrogenation of benzoic acid to benzaldehyde, REACTION KINETICS AND CATALYSIS LETTERS, 2009, 97(2): 217-223.
1. Cheng, Dang-guo; Zhao Xiaoxu; Chen, Fengqiu; Zhan, Xiaoli. Effect of preparation method on iron-containing AlPO-5 for selective catalytic reduction of N2O with methane in the presence of steam, CATALYSIS COMMUNICATIONS, 2009, 10(10): 1450-1453.
发明专利:
1) 制取乳酸的方法, 中国发明专利 ZL200810061384.2, 2010.06, 3/3;
2) 一种氧化铝膜包覆的活性炭及其制备方法,中国发明专利 ZL201010220428.9, 2012.02, 3/4;
3) 一种直接合成多级有序介孔分子筛的方法,中国发明专利 ZL201110370648.4, 2013.05, 3/5;
4) 一步法合成整体型多级孔道分子筛的方法,中国发明专利 ZL201110370673.2, 2013.05, 1/5;
5) 一种以活性炭为载体的分子筛膜催化反应器的制备方法,中国发明专利 ZL201110110423.5, 2013.06, 3/4;
6) 一种整体型杂原子取代多级孔道分子筛及其合成方法,中国发明专利 ZL201110370674.7, 2013.05, 1/5;
7) 用Bi/Mo/La三组分复合氧化物催化剂合成1,3-丁二烯的方法,中国发明专利 ZL201310438570.4, 2014.11, 3/4;
8) 用Bi/Mo/Fe/Ce四组分复合氧化物催化剂合成1,3-丁二烯的方法, 中国发明专利 ZL201310205351.1, 2014.11, 3/4;
9) 一种以金属氧化物为载体的分子筛复合膜制备方法, 中国发明专利 ZL201310293237.9, 2015.1, 3/8;
10) 以金属氧化物为载体的SAPO系列分子筛膜制备方法, 中国发明专利 ZL201310020539.9, 2015.1, 3/8;
11) 用负载型催化剂实现合成气一步法制备低碳烯烃的方法, 中国发明专利 ZL201310117391.0, 2015.2, 1/4;
12) 用Bi/Mo/V三组分复合氧化物催化剂合成1,3-丁二烯的方法,中国发明专利 ZL201310232220.2, 2015.4, 3/4;
13) 复合膜核壳结构催化剂及其CO2加氢制低碳烃的方法,中国发明专利 ZL201310293239.8, 2015.5, 3/8;
14) 用Bi/Mo/La/Fe四组分复合氧化物催化剂合成1,3-丁二烯的方法, 中国发明专利 ZL201310433974.4, 2015.5, 3/4;
15) 用Bi/Mo/Ce三组分复合氧化物催化剂合成1,3-丁二烯的方法, 中国发明专利 ZL201310203755.7, 2015.6, 3/4;
16) 用Bi/Mo/Zr/Fe四组分复合氧化物催化剂合成1,3-丁二烯的方法, 中国发明专利 ZL 201310438622.8, 2015.12, 3/4;
17) 己二酸液相法生产己二腊的方法, 中国发明专利 ZL201510185122.7, 2018.5, 5/12;
18) 一种以氧化铈为载体的负载型钯催化剂及其制备方法, 中国发明专利 ZL201710475124.9, 2019.7, 1/4;
19) 用Pd@CoO-CNx核壳型催化剂催化甲醛脱氢的方法, 中国发明专利 ZL201811488288.6, 2020.4, 1/4;
20) 一种抗烧结的镶嵌型Pd@二氧化铈纳米管催化剂及其制备方法, 中国发明专利 ZL201910477725. 2, 2020.4, 1/4;
21) 一种TNT/CdS/TiO2/Pt核壳结构纳米管及制备方法, 中国发明专利 ZL201910086049.6, 2020.6, 1/4;
22) 纳米片结构的钼酸铋催化剂在催化合成1,3-丁二烯的应用,中国发明专利 ZL201910169484.5, 2020.8, 1/5;
23) 一种纳米片层MFI分子筛负载CdS-Pt复合光催化剂及其制备方法,中国发明专利 ZL201910086631.2, 2020.8, 1/4;
24) 用Pd@ CNx镶嵌型催化剂催化甲醛脱氢的方法, 中国发明专利 ZL201811488328.7, 2020.8, 1/4;
25) 用Pd@CeO2-CNx核壳型催化剂催化甲醛脱氢的方法, 中国发明专利 ZL201811488314.5, 2020.9, 1/4;
26)一种以氧化铈为载体的负载型氧化铜催化剂的制备方法, 中国发明专利 ZL201810769925.0, 2020.10, 1/4;
27)一种具有特殊结构的TS-1分子筛催化剂及其在光催化水制氢中的应用,中国发明专利 ZL 202010010808.3, 2023.2, 1/4;
28)一种可变柱撑型ZSM-5纳米片分子筛及其制备方法,中国发明专利 ZL202111394734.9, 2023.4, 3/4;
29)一种铈锆复合氧化物固溶体催化剂的制备及应用方法,中国发明专利 ZL202110823163.X, 2023.5, 3/4;
30)一种纳米片结构的钒掺杂钼酸铋三组分催化剂及其制备方法与应用,中国发明专利 ZL202210639486.8, 2024.3, 1/4;
31)一种氯修饰立方体氧化铈纳米晶催化剂的制备及应用方法,中国发明专利 ZL202110823135.8, 2024.5,1/4.
科研项目:
1. 能源催化材料的设计与应用
立项时间: 2017-2019 项目经费:1300000

2. 富氧和水蒸气条件下同时去除CH4和NOx分子筛催化剂的构建
立项时间: 2009-2011 项目经费:200000

3. 面向连串反应的核壳型催化剂的构建及其作用机理研究
立项时间: 2014-2017 项目经费:800000

4. 多级孔分子筛催化裂解的介尺度现象及其作用机理研究
立项时间: 2015-2017 项目经费:800000

5. 分子筛孔道限域下低碳烷烃氧化反应与传递协同作用机理研究
立项时间: 2011-2013 项目经费:350000

6. 多级孔分子筛晶界和表面阻力认识及其催化裂解性能优化
立项时间: 2022

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合作意向:
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