主要学历:
1984.09-1988.07 陕西师范大学化学系获理学学士学位
1988.09-1991.07 大连理工大学化工学院工业催化获工学硕士学位
1996.03-2000.11 大连理工大学化工学院化学工艺获工学博士学位
2001.05-2003.05 香港科技大学化学工程博士后
工作经历:
1991.07-1992.11 大连石油化工公司工作,工程师
1992.12-2001.04 大连理工大学化工学院
2003.06-至 今 大连理工大学化工学院
1993.12-至 今 大连理工大学化工学院,讲师,副教授,教授,博士生导师
联系方式:
Email: xfzhang@
电话:0411-84986155;13591131787
现为“Chemical Engineering Journal(IF: 4.058).” 国际杂志编委(editorial board)
国家自然科学基金评审人
国外多种杂志的审稿人
主要研究领域:(主要涉及石油化工领域)
1. 催化领域的高效催化剂设计和催化反应过程强化
2. 能源领域的高效催化转化和催化剂设计与吸附剂研发和化工分离新方法
主要包括以下几方面:
1. 各种高效吸附剂研制和吸附分离应用于产品净化、提纯和分离;
2. 分子筛膜设计制备及其催化、分离应用;
3. 无机膜(陶瓷膜和金属钯膜)制备与催化分离技术;
4. 分子筛催化剂研制及其应用于精细化学品催化合成;
5. 微反应器、微分离器和微化工技术;
6. 金属有机骨架(MOFs)及其膜多孔材料的设计制备与催化分离应用;
7. 新型核-壳催化剂设计制备及其高效催化应用。
近期已经承担和正在承担的主要研究课题:
18. 国家自然科学面上基金: 多孔载体引入同源金属氧化物层诱导形成高稳定金属有机骨架分离膜的设计制备与成膜机理. (No. 21476039);
17. 教育部高校博士点基金项目:微通道内ZIF类MOF膜的制备与方法并构建高效微反应器/分离器应用的基础研究. (No.20130041110022);
16. 辽宁省自然科学基金:管式载体上ZIF-8 MOF 膜的设计制备及其成膜机理(No.21022027);
15. 国家自然科学面上基金:具有择形功能分子筛膜包覆的夹层结构式高稳定化纳米贵金属核-壳型催化剂的设计制备与催化性能(No.21176030);
14. 国家自然科学重点基金:分子筛及其膜材料的吸附、扩散与分离性能研究 (No.21036006),(与浙江师大合作申请);
13. 国家自然科学面上基金:优先渗透分离CO2的ZIF结构型金属有机骨架结构类分子筛膜的设计制备研究(No.21076030));
12. 辽宁省高校优秀人才支持计划项目:分子筛功能复合膜的制备与应用研究(LR201008));
11. 辽宁省教育厅高校重点实验室项目:微通道内沸石膜的制备并构建高效膜微反应器新技术(No2009S019));
10. 国家863计划项目:直接内重整熔融碳酸盐燃料电池关键技术研究 (No.2007AA05Z137)(与大连化物所合作申请;
9. 国家自然科学面上基金:新型分子筛-钯复合膜催化苯一步绿色合成苯酚及其催化机理(No.20673017) ;
8. 中石油科技创新基金项目:新型双层无机复合膜催化苯一步绿色高效合成苯酚(No.2008D-5006-05-06);
8. 教育部留学回国科研基金项目:分子筛原位合成和组装新型微反应器 (教外司留527号)。
7. 辽宁省高校石油化工技术与装备重点实验室开放基金(PTE-0402);
5. 企业委托项目:小晶粒分子筛的合成研究开发;
4. 企业委托项目:工业级乙腈净化提纯制取色谱级高纯乙腈研究开发;
3. 企业委托项目:吸附回收酮苯装置密闭气排放携带溶剂新技术研究;
2. 企业委托项目:无机膜和沸石膜应用于废水处理
1. 企业委托项目:航煤颗粒白土脱色吸附原理及失活加快原因的分析;
催化领域的高效催化剂设计和催化反应过程强化;
能源领域的高效催化转化和催化剂设计与化工分离新方法;
主要包括以下几方面:
1.纳米分子筛的合成与多孔材料组装;
2.新型分子筛复合膜的设计制备及应用;
3.分子筛膜制备与分离、反应耦合集成领域研究;
4.分子筛膜催化高效合成有机产品研究;
5.核-壳结构催化剂的研制与应用;
6.分子筛膜微反应器的构建与应用;
7.金属有机骨架(MOFs)类分子筛及其膜的设计制备与应用;
8.新型复合吸附剂的设计制备与分离净化研究。
现已发表国内外核心杂志论文近110余篇, 其中, SCI收录80余篇,EI收录60余篇。
Publications (国内外核心杂志发表的论文):
113. Tong Zhang, Lu Lin, Xiongfu Zhang*, et al.. Facile Preparation of ZIF-8@Pd-CSS Sandwich-Type Microspheres via In Situ Growth of ZIF-8 Shells over Pd-Loaded Colloidal Carbon Spheres with Excellent Aggregation-Resistant and Leach-Proof Properties for the Pd Nanoparticles, Appl. Surf. Sci., 2015, Submitted. (IF: 2.538).
112. Lingyin Kong, Xiongfu Zhang*, et al. Synthesis of a highly stable and scalable ZIF-8 membrane on a macroporous ceramic tube by manual-rubbing ZnO deposition as a multifunctional layer, J. Membr. Sci., 2015, revised. (IF: 4.903).
111. Lu Lin, Tong Zhang, Haiou Liu, Jieshan Qiu, Xiongfu Zhang*. In situ fabrication of a perfect Pd/ZnO@ZIF-8 core-shell microsphere as an efficient catalyst by a ZnO support-induced ZIF-8 growth strategy, Nanoscale, 2015, in press, (IF: 6.749).
110. Tong Zhang, Lu Lin, Xiongfu Zhang*, et al. Synthesis and Characterization of ZIF-8@SiO2@Fe3O4 Core@Double-Shell Microspheres with Noble Metal Nanoparticles Sandwiched between Two Shell Layers. Mater. Letter, 2015, in press. (IF: 2.269).
109. Lingyin Kong, Guangcai Zhang, Haiou Liu, Xiongfu Zhang*, APTES-assisted synthesis of ZIF-8 films on the inner surface of capillary quartz tubes via flow system, Mater. Letters, 2015, 141: 344-346. (IF: 2.269).
108. Lingyin Kong, Xiongfu Zhang*, et al, Preparation of ZIF-8 membranes supported on macroporous carbon tubes via a dipcoating–rubbing method. J. Phy. Chem. Solids. 2015, 77:23-29. (IF: 1.594).
107. Yu Guo*, Yujia Jin, Hongmei Wu, Lidai Zhou, Qiangqiang Chen, Xiongfu Zhang, Xingxun Li. Preparation of palladium membrane on Pd/silicalite-1 zeolite particles modified macroporous alumina ubstrate for hydrogen separation. Inter. J. Hydrogen Energy, 2014, 39: 21044-21052. (IF: 2.930)
106. Yaguang Liu, Shaohui Li, Xiongfu Zhang*, et al. New membrane architecture: ZnO@ZIF-8 mixed matrix membrane exhibiting superb H2 permselectivity and excellent stability. Inorg. Chem. Communs., 2014, 48: 77-80. (IF=2.062)
105. Xiaobin Wang*, Bo Meng, Xiongfu Zhang, Xiaoyao Tan, Shaomin Liu. Synthesis of stable Ti-containing mesoporous tubular membrane using silicalite-1 nanoparticles as seeds. Chem. Eng. J. 2014 255: 344-355. (IF=4.058).
104. Yu Guo*,Hongmei Wu,Lidai Zhou,Zhenbin Zhang,Haiou Liu,Xiongfu Zhang*. Fabrication of palladium membranes supported on a silicalite-1 zeolite-modified alumina tube for hydrogen separation. Chem. Eng. Technol. 2014, 37(10): 1778-1786.(IF=2.175).
103. Lingyin Kong, Xiongfu Zhang*, Yaguang Liu, Shaohui Li, Haiou Liu, Jieshan Qiu, King Lun Yeung. In situ fabrication of high-permeance ZIF-8 tubular membranes in a continuous flow system. Mater. Chem. Phys., 2014, 148 (1-2): 10-16. (IF=2.129)
102. Tong Zhang,Bo Li, Xiongfu Zhang*, Jieshan Qiu, Wei Han, King Lun Yeung. Pd nanoparticles immobilized in a microporous/mesoporous composite ZIF-8/MSS: a multifunctional catalyst for the hydrogenation of alkenes. Microporous and Mesoporous Materials, 2014, 197: 324-330. (IF=3.209)
101. Lu Lin, Tong Zhang, Xiongfu Zhang*, et al. A New Pd/SiO2@ZIF-8 core-shell catalyst with selective, anti-poisoning and anti-leaching properties for the hydrogenation of alkenes. Ind. Eng. Chem. Res. 2014, 53: 10906-10913 .(IF=2.235)
100. Shaohui Li, Haiou Liu, Xiongfu Zhang*. Synthesis of stable ZIF-8 membranes on macroporous α-Al2O3 ceramic tubes by using ZnO layer as linker and induction sites. Membrane Science and Technology (Chinese), 2014, 34(5): 65-72.
99. Jian Zhang, Tong Zhang, Xiongfu Zhang*, etal. New synthesis strategies for Ni/Al2O3-Sil-1 core-shell catalysts for steam reforming of methane. Catal Today, 2014, 236: 36-40. (IF=3.309)
98.Tong Zhang, Xiongfu Zhang*, etal. Core-shell Pd/ZSM-5@ZIF-8 membrane micro-reactors with size selectivity properties for alkene hydrogenation. Catal Today, 2014, 236: 41-48. (IF=3.309)
97. Yu Guo*, Hongye Zou, Hongmei wu, Lidai Zhou, Haiou Liu, Xiongfu Zhang*. Preparation of Hydrogen Permeable Palladium membrane by Bio-membrane Assisted Electroless Plating. Inter. J. Hydrogen Energy, 2014, 39: 7069-7076. (IF: 2.930)
96. Wancang Song, Yi Zuo, Guang Xiong, Xiongfu Zhang, Fengying Jin, Liping Liu, Xiangsheng Wang*. Transformation of SiO2 in Titanium Silicalite-1/SiO2 extrudates during tetrapropylammonium hydroxide treatment and improvement of catalytic properties for propylene epoxidation. Chem. Eng. J. 2014, 253: 464-471. (IF=4.058).
95. Xiongfu Zhang,* Yaguang Liu, Shaohui Li, Lingyin Kong, et al. New membrane architecture with high performance: ZIF-8 membrane supported on vertically-aligned ZnO nanorods for gas permeation and separation. Chem. Mater. 2014, 26: 1975-1985. (IF: 8.535)
94. Jian Zhang, Xiongfu Zhang*, etal. A New Alkali-resistant Ni/Al2O3-MSU-1 Core-Shell Catalyst for Methane Steam Reforming in a direct internal reforming molten carbonate fuel cell. J. Power Sources, 2014, 246: 74-83. (IF=5.211)
93. Xiaobin Wang,* Bo Meng, Xiaoyao Tan, Xiongfu Zhang, Shujuan Zhuang, Lihong Liu. Direct Hydroxylation of Benzene to Phenol Using Palladium-Titanium Silicalite Zeolite Bifunctional Membrane Reactors. Ind. Eng. Chem. Res. 2014, 53, 5636-5645.(IF=2.235)
92. Xiongfu Zhang*, Yaguang Liu, etal. A simple and scalable method for preparing low-defect ZIF-8 tubular membranes. J. Mater. Chem. A, 2013, 1: 10635-10638. (IF=6.626)
91. Xiaobin Wang*, Xiaoyao Tan, Bo Meng, Xiongfu Zhang, Qi Lianga, Hui Pan, Shaomin Liu. TS-1 zeolite as an effective diffusion barrier for highly stable Pd membrane supported on acroporous α-Al2O3 tube. RSC. Adv. 2013, 3: 4821-4834. (IF=3.708)
90. Xiaobin Wang,* Xiaoyao Tan, Bo Meng, Xiongfu Zhang, Qi Liang, Hui Pan and Shaomin Liu. One-step hydroxylation of benzene to phenol via a Pd capillary membrane microreactor. Catal. Sci. Technol. 2013, 3: 2380-2391. (IF=4.760)
89. Zihua, Kang, Xiongfu Zhang*, etal. Factors affecting the formation of Sn-Beta zeolites by steam-assisted conversion method. Mater. Chem. Phys., 2013, 141: 519-529. (IF=2.129)
88. Tong Zhang, Xiongfu Zhang*, etal. Synthesis of Fe3O4@ZIF-8 magnetic core–shell microspheres and their potential application in a capillary microreactor. Chem. Eng. J. 2013, 228: 398-404. (IF=4.058)
87. Jiaxu Liu, Ai Sha Nu La Hong, Ning He, Guodong Liu, Cuicui Liang, Xiongfu Zhang, 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=4.058)
86. Zihua Kang, Xiongfu Zhang*, etal. A rapid synthesis route for Sn-Beta zeolites by steam-assisted conversion and their catalytic performance in Baeyer–Villiger oxidation. Chem. Eng. J. 2013, 218:425-432.(Featured cover, 封面文章; IF=4.058).
85. Shuhui Du, Yaguang Liu, Lingyin Kong, Jian Zhang Haiou Liu, Xiongfu Zhang*. Seeded Secondary Growth Synthesis of ZIF-8 Membranes Supported on α-Al2O3 Ceramic Tubes. J. Inorganic Mater., 2012, 27(10): 1105-1111.
84. Guangcai Zhang, Xiongfu Zhang*, etal. Zeolite capillary microreactor by flow synthesis method, Catal Today, 2012, 193:221-225. (IF=3.309)
83. Xiaobin, Wang, Xiongfu Zhang*, etal. Investigation of Pd membrane reactors for one-step hydroxylation of benzene to phenol, Catal Today, 2012, 193: 151-157. (IF=3.309)
82. Zihua Kang, Haiou Liu, Xiongfu Zhang*, Preparation and characterization of sn-β zeolites by a two-step postsynthesis method and their catalytic performance for baeyer-villiger oxidation of cyclohexanone, Chin. J. Catal., 2012, 33(5) : 898-904.
81. Chuang Li, Zhengfeng Shao, Min Pang, Christopher T. Williams, Xiongfu Zhang, Changhai Liang*. Carbon Nanotubes Supported Mono- and Bimetallic Pt and Ru Catalysts for Selective Hydrogenation of Phenylacetylene. Ind. Eng. Chem. Res., , 2012, 51, 4934-4941. (IF=2.235)
80. Pengjie Wang, Li Zhou*, Guanglong Li, Huaxin Lin, Zhigang Shao, Xiongfu Zhang, Baolian Yi. Direct internal reforming molten carbonate fuel cell with coreeshell catalyst, Internal. J. Hydrogen Energy, 2012, 37 : 2588-2595. (IF=2.930)
79. Jian Zhang, Xiongfu Zhang*, et al. Preparation of Core (Ni base)-Shell (Silicalite-1) Catalysts and their application for Alkali Resistance in the direct internal reforming molten carbonate fuel cell. J. Power Sources, 2012, 198: 14-22. (IF=5.211)
78. Xiaobin Wang, Xiongfu Zhang*, et al. Investigating the role of zeolite nanocrystal seeds in the synthesis of mesoporous catalysts with zeolite wall structure. Chem. Mater., 2011, 23: 4469-4479. (IF=8.535)
77. Xiaobin Wang, Xiongfu Zhang*, et al. Preparation and Performance of TS-1/SiO2 Egg-Shell Catalysts. Chem. Eng. J., 2011, 175: 408-416. (IF=4.058)
76. Nan Jiang, Guohui Yang, Xiongfu Zhang*, et al. A novel silicalite-1 zeolite shell encapsulated iron-based catalyst for controlling synthesis of light alkenes from syngas. Catal. Commun. 2011, 12: 951-954.(IF=3.320)
75. Xiaobin Wang, Xiongfu Zhang*, et al. Performance of TS-1-Coated Structured Packing Materials for Styrene Oxidation Reaction. ACS Catal., 2011, 1:437-445. (IF=7.572)
74. Jing Lv, Guangcai Zhang, Qiangzhi Ma, Haiou Liu, Xiongfu Zhang*, Continuous-flow synthesis of submicron and nano-zeolites in capillary microchannel reactor, Chinese Journal of Inorganic Materials, 2011, 26(12) : 1304-1308.
73. Jian Zhang, Xiongfu Zhang*, etal. Preparation and application of core??shell structured compositematerials, Chinese Modern Chemical Industry, 2010, 30(8) : 16-23.
72. Min Tu, Jian Zhang, Xiongfu Zhang*, etal. Advances in alkali poisoning resistance of reforming catalysts in DIR-MCFC, Chinese Battery Bimonthly, 2010, 40(5) : 285-288.
71. Xiaobin Wang, Yu Guo, Xiongfu Zhang*, et al. Catalytic properties of benzene hydroxylation by TS-1 film reactor and Pd–TS-1 composite membrane reactor. Catalysis Today. 2010, 156, 288-294.(SCI和EI, IF=3.320)
70. Yu Guo, Xiaobin Wang, Xiongfu Zhang*, et al. Pd–silicalite-1 composite membrane reactor for direct hydroxylation of benzene to phenol. Catalysis Today. 2010, 156, 282-287.(SCI和EI, IF=3.320)
69. Yu Guo, Xiongfu Zhang*, et al. A novel approach for the preparation of highly stable Pd membrane on macroporous α-Al2O3 tube. J. Membr. Sci. 2010, 362 , 241-248.(SCI和EI, IF=4.903)
68. Xiaobin Wang; Xiongfu Zhang*, et al. Preparation of titanium silicalite-1 catalytic films and application as catalytic membrane reactors. Chem. Eng. J. 2010, 156(3), 562-570.(SCI和EI, IF=4.058)
67. Yu.Guo, Xiongfu Zhang*, etal. Preparation of palladium composite membrane supported on macroporous α-Al2O3 tube modified with zeolite silicalite-1 layer, Chinese Modern Chemical Industry, 2009, 29(1) (Supl.): 196-199.
66. Yu Guo, Xiongfu Zhang*, et al. Pd–silicalite-1 composite membrane for direct hydroxylation of benzene. Chem. Communs., 2009, 5898–5900.(SCI, IF=6.718)
65. Jinglin Zhou, Xiongfu Zhang*, et al. Preparation of alkali-resistant, Sil-1 encapsulated nickel catalysts for direct internal reforming-molten carbonate fuel cell. Catal. Commun. 2009, 10: 1804-1807.(SCI, IF=3.320)
64. Fangrui Qiu, XiaobinWang, Xiongfu Zhang*, et al. Preparation and properties of TS-1 zeolite and film using Sil-1 nanoparticles as seeds. Chem. Eng. J. 2009, 147, 316-322.(SCI和EI, IF=4.058)
63.Chen Wang, Gao-mai Yang, Jun Li, Giuseppe Mele, Rudolf S1ota, Ma1gorzata A. Broda, Ming-yue Duan, Giuseppe Vasapollo, Xiongfu Zhang, Feng-Xing Zhang. Novel meso-substituted porphyrins: Synthesis, characterization and photocatalytic activity of their TiO2-based composites. Dyes and Pigments. 2009, 80: 321-328..(SCI和EI)
62.Shuqin Liu, Changgong Meng, Huilong Wang, Xiongfu Zhang. Synthesis and Structure of [Cu2(DMF)(H2O)(C7H4NO4)2(C7H3NO4)]2 3.5DMF. Chin. J. Struct. Chem. 2008, 27(9): 1141-1143.(SCI)
61.Jiaoying Cui, Xiongfu Zhang*, et al. Preparation and application of zeolite/ceramic microfiltration membranes for treatment of oil contaminated water. J. Membr. Sci. 2008,325:420-426.(IF=4.903)
60.Xiongfu Zhang*. Direct Hydroxylation of Benzene to Phenol. Progress In Chemistry. 2008,20:388-397.(SCI收录)
59.CAI Hongli, ZHANG Xiongfu*, et al. Preparation and catalytic performance of zeolite layer in the microchannels of a microreactor by an on-site flow synthesis method. Chinese Journal of Catalysis. 2007, 28(9), 758-760.(SCI收录).
58.W. N. Lau, K. L. Yeung, X. F. Zhang and R. Martin-Aranda.Zeolite membrane microreactors and their performance.Studies in Surface Science and Catalysis. 2007, 170B:1460-1465.(SCI)
57.Xiongfu Zhang*, et al. Factors affecting the formation of zeolite seed layers and the effects of seed layers on the growth of zeolite silicalite-1 membranes.Front. Chem. Eng. China. 2007, 1(2): 172–177.
56.Guohui Yang, Xiongfu Zhang*, et al. A novel method for the assembly of nano-zeolite crystals on Porous Stainless Steel Microchannel and then zeolite membrane growth. J. Phys. Chem. of Solids. 2007, 68(1): 25-31.(SCI和EI)
55. Guolin Shao, Jianhua Yang, Xiongfu Zhang, Gang Zhu, Jinqu Wang, Chang Liu. Seeded growth of beta zeolite membranes using zeolite structure-directing agent.Mater. Letter. 2007, 61(7):1443-1445.(SCI和EI)
54.LIU Shu-Qin*, NING Gui-Ling, ZHANG Xiong-Fu, KONAKA H, MUNAKATA M.. Crystal Structure of an Octanuclear Sandwich Cluster of Silver(I) and 4,4'-Bis(2,5-dimethylstyryl)biphenyl. Chinese Journal of Chemistry. 2006, 24 (9): 1259-1262. ( SCI收录 )
53.E. Perozo-Rondón, R. M. Martín-Aranda, B. Casal, Carlos J. Durán-Valle, W. N. Lau, X.F. Zhang, King L. Yeung. Sonocatalysis in solvent free conditions: An efficient eco-friendly methodology to prepare chalcones using a new type of amino grafted zeolites. Catal. Today. 2006, 114(2-3):183-187.(SCI和EI收录)
52.Xiongfu Zhang*, et al. Modification of carbon membranes and preparation of carbon-zeolite composite membranes with zeolite growth. Carbon. 2006, 44(3):501-507. (SCI和EI收录)
51. Xiongfu Zhang*, et al. Influence of Seed Size on the Formation and Microstructure of Zeolite Silicalite-1 Membranes by Seeded Growth.
Materials Chemistry and Physics. 2006, 96(1): 42-50.(SCI和EI收录)
50.杨国辉,张雄福*,刘海鸥,王金渠,King Lun Yeung.一种简单组装纳米沸石粒子层的方法及其二次法成膜研究. 《高等学校化学学报》. 2006, 27 (9): 1593-1598. (SCI收录).
49.石春艳,蒋晖,张雄福*. 沸石及其膜在微型设备中的制备与应用.《现代化工》 2006, 26卷(增刊):30-33.
48. 张雄福*,王利,屈清洲,刘海鸥,蔡红丽. 喷气燃料脱色精制中颗粒白土失活加快的原因分析: Ⅱ喷气燃料馏分中有色成分的剖析及不同性质馏分油对白土脱色的影响.
《炼油技术与工程》. 2006,36(5): 4-9.
47. 张雄福*, 王利,屈清洲,刘海鸥,蔡红丽. 喷气燃料脱色精制中颗粒白土失活加快的原因分析:Ⅰ不同颗粒白土的性质剖析及其对喷气燃料脱色性能的影响.《炼油技术与工程》. 2006,36(4):17-22.
46.王利,屈清洲,张雄福*. 航煤生产精制技术进展及前景. 《现代化工》2006,26(2):14-17.
45.张雄福*,刘海鸥,王安杰,王金渠. 沸石晶种层形成的影响因素及对Silicalite-1沸石膜生长的影响. 《高校化学工程学报》, 2006, 20(4): 520-526.
44.张雄福*,刘海鸥,王安杰,王金渠. 纳米级晶种预涂层法Silicalite-1型沸石膜的合成及其结构分析. 《大连理工大学学报》, 2006, 46(2):170-174. (EI收录)
43.邹本雪, 张雄福*, 王同华,王金渠,刘海鸥,王安杰. 新型管式炭载体上Silicalite-1型沸石膜的制备与性能. 《无机材料学报》 2006, 21(1):204-210. (SCI和EI同时收录)
42.Xiongfu Zhang*, Haiou Liu, King Lun Yeung. Novel Two-layered Zeolite NaA-Silicalite-1 Membranes. J. Phy. Chem. Solids. 2005, 66:1034-1038.(SCI和EI同时收录)
41. K.L. Yeung, X.F. Zhang, W.N. Lau and R. Martin-Aranda. Experiments and modeling of membrane microreactors. Catal. Today. 2005, 110(1-2):26-37.(SCI和EI同时收录)
40.W. N. Lau, X. F. Zhang, K. L. Yeung,R. Martin-Aranda. Zeolite membrane microreactor for fine chemical synthesis. Studies in Surface Science and Catalysis. 2005, 158:1335-1342. (SCI和ISTP同时收录)
39.V. Calvino-Casilda, R.M. Martín-Aranda, W.N. Lau, X.F. Zhang,K.L. Yeung. Sonocatalysis in solvent free conditions: an efficient eco-friendly methodology to prepare N-alkyl imidazoles using zeolites. Studies in Surface Science and Catalysis. 2005,158:1985-1992. (SCI和ISTP同时收录)
38.张雄福*, 刘海鸥, King Lun Yeung,王金渠.澄清溶液体系二次生长法NaA型沸石膜的生长机制及膜厚的控制合成. 《高等学校化学学报》. 2005, 26 (5): 806-810. (SCI和EI同时收录)
37.邹本雪, 张雄福*, 刘海鸥,王同华,王金渠,王安杰. 新型炭基-沸石复合膜材料的合成研究进展. 《现代化工》 2005, 25卷(增刊):69-72.(EI收录)
36.张雄福*, 刘海鸥, 王金渠. 不同支撑体上Silicalite-1型沸石膜的形成与表征.
《无机材料学报》 2005, 20(4):947-954.(SCI和EI同时收录)
35.张雄福*, 刘海鸥, 王金渠, King Lun Yeung. 澄清溶液中亚微米级晶种涂层法NaA型沸石膜的合成及膜结构表征. 《催化学报》 2004, 25(7): 486-490.(SCI和EI同时收录)
34.Xiongfu Zhang*,Tonghua Wang, Haiou Liu, King Lun Yeung. Preparation of composite carbon-zeolite membranes using a simple method. J. Mater. Sci. 2004, 39: 5603-5605.(SCI和EI同时收录)
33.Xiongfu Zhang*, Haiou Liu, King Lun Yeung and Jinqu Wang. Carbon-Zeolite NaA Composite Membranes. AIChE 2004 Annual Meeting Conference Proceedings. Separations Division,Session 247 - Advances in Inorganic and Nano-Composite Membranes III(247f ).Proceedings, 2004, p 6427-6431 .(EI收录)
32.Xiongfu Zhang, Emily Sau Man Lai, Rosa Martin-Aranda, KingLun Yeung. An Investigation of Knoevenagel Condensation Reaction In Microreactors using a New Zeolite Catalyst. Appl.Catal.A.general. 2004, 261(1):109-118.(SCI和EI同时收录)
31.Xiongfu Zhang*,Wenqing Zhu, Haiou Liu,Tonghua Wang. Novel tubular composite carbon-zeolite membranes. Mater. Letter. 2004, 58: 2223-2226. (SCI和EI同时收录)
30.Xiongfu Zhang*, Jinqu Wang, Haiou Liu,Changhou Liu, Kinglun Yeung. Factors affecting the synthesis of hetero-atom zeolite Fe-ZSM-5 membrane. Sep.Purif.and Technol.2003,32:151-158.(SCI, EI, ISTP同时收录).
29.Yongsheng Li, Jinqu Wang , Jianlin Shi, Xiongfu Zhang, et al. Synthesis of ZSM-5 zeolite membranes with large area on porous, tubular a-Al2O3 supports. Sep.Purif.and Technol.2003,32:397-401.(SCI, EI, ISTP同时收录).
28.张雄福*,李邦民,王金渠,刘长厚. ZSM-5沸石膜的有机胺焙烧过程对膜性能的影响.
《石油化工》,2002,31(1):10-13. (EI收录)
27.Zhang Xiongfu*, Li Yongsheng , Wang Jinqu , Tong Huairong , Liu Changhou. Synthesis and characterization of Fe-MFI zeolite membrane on a porous a-Al2O3 tube. Sep.Purif.and Technol.2001,25: 269-274.(SCI, EI, ISTP同时收录).
26.Yongsheng Li, Xiongfu Zhang, Jinqu Wang, Preparation for ZSM-5 membranes by a two-stage varying-temperature synthesis. Sep.Purif.and Technol.2001,25: 459-464(SCI, EI, ISTP同时收录).
25.张雄福, 王金渠, 刘海鸥, 刘长厚, 沸石膜反应器乙苯脱氢反应性能.《高校化学工程学报》,2001,15(2):121-126.(EI 收录).
24.张雄福, 王金渠, 刘海鸥, 刘长厚, ZSM-5沸石膜的合成及其重要影响因素.《石油学报(石油加工)》, 2001, 17(3): 9-15. (EI收录).
23.张雄福,王金渠,刘长厚.ZSM-5沸石膜的合成及应用于乙苯脱氢反应研究进展. 《膜科学和技术》,2001, 21(2): 56-61.
22.殷德宏,王金渠, 张雄福,. PBTCA合成与结构研究, 《大连理工大学学报》, 2001, 41(1): 46-49.
21.张雄福,王金渠,殷德宏,刘长厚.多孔陶瓷管基膜上合成ZSM-5沸石膜新方法. 《大连理工大学学报》, 2000, 40(6): 672-675.(EI 收录).
20.ZHANG Xiong-fu, LI Yong-sheng, WANG Jin-qu, LIU Hai-ou, LIU Chang-hou. Dehydrogenation of ethylbenzene to styrene using ZSM-5 type zeolite membranes as reactors.Stud. Surf. Sci. Catal. 2000, p135(附全文光盘).
19.Yongsheng Li, Xiongfu Zhang, Jinqu Wang et al. Preparation of high-permeance ZSM-5 tubular membranes by varying-temperature synthesis. Stud. Surf. Sci. Catal. 2000, p135(附全文光盘).
18.张雄福, 王金渠, 殷德宏, 刘长厚. 喷涂晶种法ZSM-5沸石膜合成及影响因素考察. 《催化学报》 2000, 21(5): 451-454.
17.王永忠,王桂茹, 张雄福, 王波,刘海鸥,郭新闻,王祥生,合成方法对Ti-SiZSM-5分子筛合成的影响及合成过程的探讨. 《大连理工大学学报》, 2000, 40(5): 540-545.(EI 收录).
16.王桂茹,王波, 张雄福, 王永忠,刘海鸥,郭新闻,王祥生, 廉价原料合成Ti-SiZS M-5分子筛的表征及催化性能. 《大连理工大学学报》, 2000, 40(2): 1-5.
15.王波,王桂茹, 张雄福, 刘海鸥,王祥生, 合成原料、添加剂及模板剂对Ti-SiZSM-5分子筛合成的影响, 《石油学报(石油加工)》, 2000,16(2): 83-89.
14.张雄福, 王金渠,王青川, 炭分子筛改性及其对乙烯和氧气的吸附分离性能, 《化工学报》 1999 , 50(3):343-350. (EI 收录)
13.张雄福,王金渠, 沸石分子筛膜的合成与应用研究进展,《石油化工》 1999,28(4):266-269.
12.张雄福,陈连璋,王金渠,刘海鸥.杂原子Zn-ZSM-5沸石分子筛合成及影响因素研究.《大连理工大学学报》1999,39(3):391-395.
11.张雄福,王金渠, 无机膜催化低碳烃脱氢芳构化制芳烃研究进展. 《膜科学和技术》,1998,18(2):3-5.
10.张雄福,王桂茹,刘海鸥,王祥生, 不同廉价模板剂合成的Ti-ZSM-5分子筛结构与性能. 《石油学报(石油加工)》1998,14(4):35-39. (EI收录).
9.张雄福,王金渠, 吸附法脱除乙醛装置尾气乙烯中的二氧化碳以回收乙烯的新吸附剂研究. 《石油学报(石油加工)》1998,14(2):70-74. (EI收录).
8.张雄福,鲍钟英,殷德宏,王金渠.吸附法脱除乙烯中少量氧气的吸附剂研究.《石油化工》1998,27(1):8-12. (EI 收录).
7.张雄福, 王金渠, 炭分子筛脱除乙醛装置尾气乙烯中少量氧气和氮气的研究,《大连理工大学学报》, 1998,38(2):166-170.
6.张雄福,殷德宏,王金渠, 吸附法脱除乙烯中少量氮气的研究.《离子交换与吸附》 1998,14(5):455-449. (EI 收录).
5.Guo Xinwen, Li Gang, Zhang Xiongfu, Wang Xiangsheng, Synthessis of titanium silicalite-1 from TPABr system. 《Stud. Surf. Sci. Catal.》, 1997,112:499-508. (SCI, ISTP 收录)
4.张雄福,王桂茹,刘海鸥,王祥生.在己二胺体系中Ti-ZSM-5沸石的合成因素研究. 《石油学报(石油加工)》1997,13(3):21-26.
3.张雄福, 王金渠,陈连璋, 低碳烃脱氢芳构化制芳烃研究进展. 《化工进展》, 1997, 6:12-15.
2.张雄福, 王桂茹, 王祥生, Ti-SiZSM-5沸石合成的影响因素. 《石油学报(石油加工)》1994,10(4):37-42
1.张雄福, 王桂茹, 王祥生.Ti-SiZSM-5沸石在苯酚-双氧水反应中的催化性能, 《石油学报(石油加工)》994,10(4):43-49.
出版著作:参与了3部校内教材的编写:
1.《石油炼制基础》.
2.《石油化工专业实验讲义》.
3.《石油化工生产实习讲义》.
申请国家发明专利:
申请15余项;授权8项。
讲授课程:《化工工艺学》(石油化工篇);《新型膜材料与过程》.
先后完成和承担了“低成本钛硅类分子筛合成” 国家自然科学基金、“沸石膜乙苯催化脱氢制苯乙烯技术”中石化八五基础项目、“沸石膜乙苯催化脱氢制苯乙烯模试放大”中国石化公司重大项目和“乙醛装置尾气回收乙烯新技术” 、‘工业乙腈提纯制备色谱级乙腈等企业横向课题及“低碳烃芳构化制芳烃研究”、“无机膜低碳烃芳构化制芳烃”和“沸石膜脱除有机物中微量水”等热门前沿探索课题。其中有两项已通过了中石化主持的鉴定,成果属国际领先和首创。“沸石膜乙苯催化脱氢制苯乙烯技术模试放大”重大项目中全面负责该项目的关键技术-沸石膜放大制备技术,该技术工作量大、难度高,在国际上无先例。
1. 1996年优秀班导师二等奖
2. 1996年获辽宁省第二届青年学术年会论文三等奖
3. 1997年获大连市“技术开发一等奖”
4. 1997~1998年度教学质量优良奖
5. 1998年获辽宁省第三届青年学术会优秀论文三等奖
6. 1999年获美国IET教育基金会研究奖
7. 2000年“沸石膜乙苯催化脱氢制苯乙烯”项目获大连市发明创新奖”
8. 2007年“沸石分子筛膜制备与应用”辽宁省技术发明二等奖
9. 2013年度教学质量优良奖
在读博士生7人,硕士生 7人
已毕业博士生5人(协助指导2人),硕士生23人
办公地点:西部新校区化工实验楼C段427房间;
实验室:西部新校区化工实验楼 C 段 402、403、405和407房间。
2016年有博士招生名额,欢迎报考。