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个人简介

刘洪涛,男,博士,教授,九三学社 教育经历 1999 -2003 中国石油大学(北京)化工学院 获博士学位 1995 -1998 中国石油大学(北京)化工学院 获硕士学位 工作经历 2004 - 至今 北京化工大学理学院 历任讲师、副教授、教授 2014.06-2014.12 加拿大英属哥伦比亚大学 (University of British Columbia) 化工系 访问学者 主持或参与的科研项目 1、主持:2007-2009国家自然科学基金面上项目:原位梯度孔材料的结构设计,已结题 2、主持:2015-2017中国石油天然气股份有限公司重大科技专项:高性能介孔分子筛的放大合成,已结题 3、主持:2014-2016中国石油天然气股份有限公司项目:新型介孔材料在多产尾油加氢裂化催化剂中的应用研究,已结题 4、主持:2012-2014中国石油天然气股份有限公司项目:新型催化剂材料合成及应用研究 已结题 5、主持:2015-2019 中国海洋石油总公司项目:环保型温拌沥青的制备 在研 6、主持:2016-2019 中国海洋石油总公司项目:新型润滑脂的制备与工艺研究 在研 5、主持:2016-2019中国石油天然气股份有限公司项目:介孔Y型分子筛中试放大合成,在研 6、主持:2016-2019中国石油天然气股份有限公司项目:高稳定性介孔材料的合成,在研 7、主持:2015-2018 中国石油天然气股份有限公司重大科技专项:基于介孔分子筛制备重油催化裂化催化剂的研究 在研 8、主持:2016- 中国石油天然气股份有限公司项目:由天然矿物质制备新型分子筛的研究,在研 课题组现有硕士研究生13人,博士研究生2人。 针对介孔分子筛稳定性低、酸性弱的不足和合成过程废水排量大的问题,经过十余年的持续研究,在介孔分子筛结构构造与合成体系创建方面取得了重大突破。构建了孔壁拟晶态组装法提高水热稳定性、创制了预置高含量四配位铝的方法提高酸性、发明了极高浓体系下晶种法降低模板剂用量、母液循环工艺降低合成中的废水排量。使分子筛的稳定性提高了2.5倍,接近了USY分子筛的稳定性;合成过程中的废水排量降低了75%,分子筛的合成成本降低了75%。 在国际上首次实现了介孔分子筛的连续化工业生产,开发了高稳定性的介孔分子筛MASTER-1,以分子筛为功能组分开发了中国石油天然气股份有限公司的牌号催化剂LPC-65,并在中国石油兰州石化公司的120万吨重油催化裂化装置上成功应用。在国际上首次实现了介孔分子筛的工业连续化生产和在百万吨级催化裂化装置上的应用。 2017年获中国石油天然气集团公司的“基础研究奖一等奖”1项。 作为第一完成人申报国家发明专利20余项,其中5项已经授权。 获奖情况 2017年 中国石油天然气集团公司“基础研究奖一等奖”1项,获奖名称“基于提高介孔分子筛稳定性和酸量的结构构造与新合成体系创建”。 招生专业: 化学工程与技术、化学等。 招生要求: 可以不聪明,但要勤奋。

研究领域

1、新型分子筛材料的合成 2、石油化工催化剂的制备 3、工业污水处理

近期论文

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Junsu Jin, Li Cao, Qingxun Hu, Chunyan Xu, Xionghou Gao, Wei Feng, Honghai Liu, Hongtao Liu. An efficient synthesis of hydrothermally stable mesoporous aluminosilicates with significant decreased organic templates by seed-assisted approach. Journal of Materials Chemistry A. 2014, 2(21): 7853-7861. Dekun Ji, Baojie Wang, Ting Yue, Xiaoping Li, Xiaotong Mi, Honghai Liu, Hongtao Liu, Xionghou Gao. Zeolite Beta precursors as building units toward enhancing the microporosity fraction of mesoporous aluminosilicates. Industrial & Engineering Chemistry Research. 2018, 57(31): 10234-10240. Linyi Lv, Yawen Bo, Dekun Ji, Wei Han, Honghai Liu, Xionghou Gao, Chunyan Xu, and Hongtao Liu. Layered double hydroxide method for preparing Ni−Mo/γ-Al2O3 ultradeep hydrodesulfurization catalysts. Industrial & Engineering Chemistry Research. 2018, 57: 13889-13894. Junsu Jin, Fan Hu, Honghai Liu, Jia Zhao, Xionghou Gao, Qingting Meng, Xiaotong Mi, Hongtao Liu, Chunyan Xu, Jingchang Zhang. A Ternary Balance of Chemical-Anchoring/Self-Assembly/Crystallization: The Key to the Construction of Intracrystalline Mesopores. Microporous and Mesoporous Materials. 2018, 257: 118-127. Xiaotong Mi, Jiongliang Yuan, Yueming Han, Honghai Liu, Hongtao Liu, Xionghou Gao, Chunyan Xu, Jingchang Zhang. Introduction of anionic surfactants to copolymer micelles: a key to improving utilization efficiency of P123 in synthesis of mesoporous aluminosilicates. Industrial & Engineering Chemistry Research. 2017, 56(25): 7224-7228. Xiaotong Mi, Jiongliang Yuan, Yueming Han, Honghai Liu, Hongtao Liu. Urea as efficient additive toward decreasing water amount in synthesis of hydrothermally stable mesoporous aluminosilicates. Industrial & Engineering Chemistry Research. 2017, 56(33): 9401-9407. Hongtao Liu, Lei Wang, Wei Feng, Li Cao, Xionghou Gao, Honghai Liu, Chunyan Xu. Hydrothermally stable bimodal aluminosilicates with enhanced acidity by combination of zeolite Y precursors assembly and the pH-adjusting method. Industrial and Engineering Chemistry Research. 2013, 52(10): 3618-3627. Li Cao, Xiaozheng Zhao, Junsu Jin, Chunyan Xu, Xionghou Gao, Lan Ling, Xiaoliang Yuan, Liu, Hongtao Liu. Crystal-seeds-based strategy for synthesis of hydrothermally stable mesoporous aluminosilicates with largely decreased H2O amount. Industrial and Engineering Chemistry Research. 2014, 53(44): 17286-17293. Junsu Jin, Chaoyun Peng, Jiujiang Wang, Hongtao Liu, Xionghou Gao, Honghai Liu, Chunyan Xu. Facile Synthesis of mesoporous zeolite Y with improved catalytic performance for heavy oil fluid catalytic cracking. Industrial & Engineering Chemistry Research. 2014, 53(8): 3406-3411. Hongtao Liu, Kunxi Guo, Xiaoping Li, Songsong Liu, Xionghou Gao, Honghai Liu, Li Cao, Chunyan Xu. Understanding and direct strategy to synthesize hydrothermally stable micro-mesoporous aluminosilicates with largely enhanced acidity. Microporous and Mesoporous Materials. 2014, 188(2): 108-117. Mi Yang, Baojie Wang, Fan Hu, Xiaotong Mi, Honghai Liu, Hongtao Liu, Xionghou Gao, Chunyan Xu. Synergy between crystal seeds and amphiphilic organosilane surfactant: a facile approach for mesoporous ZSM-5 with high SiO2/Al2O3 ratio. Materials Letters. 2018, 222: 153-155. Hongtao Liu, Yajuan Xu, Jiujiang Wang, Baojie Wang, Xiaotong Mi, Honghai, Liu, Yueming, Han, Xionghou Gao, Jiang Li. A triple template of P123/SDS/CS with simultaneously enhanced utilization efficiency of P123 and crystal seeds. Journal of Alloys and Compounds. 2018, 765: 907-912. Hongtao Liu, Shuyao Wei, Xiaotong Mi, Honghai Liu, Xionghou Gao, Chunyan Xu, Jingchang Zhang, Weiliang Cao. A facile strategy to synthesize mesoporous aluminosilicates with reduced particle size. Materials Letters, 2017, 204: 154-156. Hongtao Liu, Jiujiang Wang, Wei Feng, Chunyan Xu. Synthesis of La-substituted aluminosilicates with hierarchical pores by pH-adjusting method. Journal of Alloys and Compounds. 2013, 557(2): 223-227. Junsu Jin, Li Cao, Guangxun Su, Chunyan Xu, Zeting Zhang, Xionghou Gao, Honghai Liu, Hongtao Liu. A facile strategy to recycle template P123 from mesoporous aluminosilicates by ultrasonic extraction. Ultrasonics Sonochemistry. 2014, 21(5): 1688-1695. Hongtao Liu, Xiaozheng Zhao, Pinge Chen, Xionghou Gao, Honghai Liu, Li Cao, Chunyan Xu, Qingfeng Tan. Hydrothermally stable mesoporous aluminosilicates with moderate acidity via degradation-assembly process and improved catalytic properties. Journal of Porous Materials. 2014, 21(4): 379-386. Hongtao Liu, Kun Wang, Yonggan Shi, Xionghou Gao, Honghai Liu, Baojie Wang, Chunyan Xu. Hydrothermally stable macro-meso-microporous materials: synthesis and application in heavy oil cracking. RSC Advances. 2014, 4(56): 29694-29697. Li Cao, Qingxun Hu, Junsu Jin, Chunyan Xu, Xionghou Gao, Honghai Liu, Ling Lan, Xiaoliang Yuan, Hongtao Liu. A multiple-assembly/one-pot-crystallization strategy for a relatively more eco-friendly synthesis of hydrothermally stable mesoporous aluminosilicates. RSC Advances. 2014, 4(106): 61631-61633. Dekun Ji, Honghai Liu, Xiao Wang, Hongtao Liu, Xionghou Gao, Chunyan Xu, Shuyao Wei. Mesostructured Y zeolite from NaY with low Si/Al by one-step method based on bifunctional surfactant. Materials Chemistry and Physics. 2017, 196: 284-287. Zhen Wang, Honghai Liu, Qingting Meng, Junsu Jin, Chunyan Xu, Xiaotong Mi, Xionghou Gao, Hongtao Liu. Fabrication of intracrystalline mesopores within zeolite Y with greatly decreased templates. RSC Advances, 2017, 7(16): 9605-9609. Xiaotong Mi, Honghai Liu, Baojie Wang, Hongtao Liu, Li Cao, Xionghou, Gao, Chunyan Xu, Jiongliang Yuan. Synthesis of hydrothermally stable mesoporous aluminosilicates by using urea as additive. Materials Chemistry and Physics. 2018, 208: 220-225. Xiaotong Mi, Jiujiang Wang, Yueming Han, Hongtao, Liu, Honghai Liu, Xionghou Gao, Chunyan Xu. A facile strategy to synthesize hydrothermally stable mesoporous aluminosilicates with significantly decreased organic templates and H2O. Colloids and Surfaces A. 2018, 58: 179-185.

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