
孙厚祥:副教授、博士、硕士生导师、攀枝花市学术和技术带头人后备人选。
研究方向:多孔材料的定向设计和制备、环境催化和能源应用研究
主讲课程:化工分离工程、化学工艺学、有机化学实验、化学化工创新实验等
联系方式:sunhouxiang8402@163.com
个人简介
孙厚祥,副教授、博士、硕士生导师、攀枝花市学术和技术带头人后备人选。主要研究方向为多孔材料的定向设计和制备、环境催化和能源应用研究。主研国家级项目2项,主持省级项目1项,市级项目1项,四川省重点实验室3项。在国内外期刊上共发表论文35篇,其中SCI论文24篇(ACS Catalysis、Chemical Engineering Journal、Applied Catalysis B: Environment and Energy、Separation and Purification Technology等SCI一区论文9篇),中文核心3篇。获得教育教学成果奖2项。指导学生参加大学生创新创业项目8项。
教育背景(含进修)
2004.09-2008.06信阳师范学院,应用化学专业读本科;
2008.09-2011.07辽宁石油大学,化学工艺专业读硕士;
2014.09-2018.12 中国石油大学(北京),化学工程与技术博士;
主要荣誉和获奖
2021年攀枝花学院教学成果二等奖(排名第3)
2020年中国化工教育协会教学成果二等奖(排名第3)
工作及研究经历
2011.08-2012.10 中石油乌鲁木齐石化分公司
2012.12-2014.1 河南心连心化肥有限公司
2019.01-至今 攀枝花学院生物与化学工程学院
主要科研项目
1.省级项目:CO2-CH4重整制合成气高效抗积碳Ni基双功能催化剂的设计制备(23NSFSC0269),2023.1-2024.12(主持)
2.四川省重点实验室项目:短纳米片晶高堆垛NiWS活性相加氢脱硫催化剂的构筑及其催化机理(LYJ2403),2024-2027年(主持)
3.四川省重点实验室项目:中空多壳层复合催化剂及其光催化CO2还原性能的研究(2021-FTGC-YB-06)2022-2023年(主持)
4.四川省重点实验室项目:基于光催化杂原子钛硅分子筛的合成研究(LYJ2003),2024-2027年(主持)
5.市厅级项目:市厅级自筹经费项目,钛硅分子筛的合成及其光催化性能研究,(2021ZD-G-9),2021-2023.12(主持)
主要学术论文
[1] Houxiang Sun, Lei Li, Huabing Zhang*, Haiyan Yang, Tao Yang, MingYong Shu, Zicong Zhong, Ming Yi, Bo Meng. Effect of Zirconium modified Y zeolite via in situ synthesis and its regulation on the formation of excellent NiW catalyst for ultra-deep hydrodesulfurization of 4,6-DMDBT. Chemical Engineering Journal, 2023, 478, 147514. (SCI一区,top期刊,IF: 13.3, JCR Q1, 一作)
[2] Houxiang Sun, Lei Li*, Wenjie Huang, Mingxia Huo, Huabing Zhang*, Haiyan Yang, Bi Foua Claude Alain Gohi, Wei Gao, Jun Wang, Jie Luo, Wenwu Zhou*. In situ synthesis of Nb-modified AFI topology molecular sieve and its modulation on the formation of high-efficiency catalyst for 4,6-dimethyldibenzothiophene hydrodesulfurization. Separation and Purification Technology, 2025, 356, 129914. (中科院SCI一区 Top, IF=8.1, JCR Q1, 一作)
[2] Houxiang Sun, Huayang Sun, Xinyue Zhang, Qianqian Yu, Penghui Zeng, Qiaoxia Guo, Dan Wang, Guangming Wen, Wencheng Zhang, Shengbao He, Baojian Shen. Effect of Divalent Tinon the SnSAPO-5 Molecular Sieve and Its Modulation to Alumina Support To Form a Highly Efficient NiW Catalyst for Deep Hydrodesulfurization of 4,6-Dimethyldibenzothiophene, ACS Catalysis, 2019, 9(8): 6613-6623. (中科院SCI一区,Top,IF:11.7,JCR Q1,一作)
[4] Wenwu Zhou *, Xiaodi Zhu, Jie Kang, Fei Fan, Houxiang Sun*, Zhiping Chen, Fengfei He. Theoretical investigation on hydrogen storage into N-ethylcarbazole catalyzed by electron-rich Ni4/TiO2-Al2O3, Fuel 2024, 367, 131496. (中科院SCI一区Top,IF:7.8,JCR Q1,通讯).
[5] Wenwu Zhou*, Le Zhang, Jiale Chang, Cheng Yang, Fei Fan, Houxiang Sun*, Huabing Zhang, Zhiping Chen, Xiaoyuan Tang. Theoretical investigation on the CO2 hydrogenation to methanolmechanism at electron- rich active interface over Cu/Ga-Ti-Al-O catalyst. Chemical Engineering Science, 2024, 293: 120099. (中科院SCI二区,IF4.7,JCR Q2通讯).
[6] Haiyan Yang*, Changqing Li, Mingfan Mao, Houxiang Sun*, Xuejun Zhu, Yi Zhang, Yulong Li, Zhiqiang Jiang*, Synthesis of Type-S Ni3S4/ZnCdS Quantum Dots via Constitution Controller l-Cysteine for Photocatalytic H2 Evolution, (中科院SCI二区, IF: 5.3, JCR Q2, 通讯一作)
[7] Huabing Zhang, Wenxin Luo, Houxiang Sun*, Haiyan Yang, Tao Yang, Dongqi Liu, Xuejun Zhu, Lihua Zhao, Mingyong Shu*, Fengli Yang*, Ce-Doped Nanosheet as Visible Light Photocatalyst for the Photocatalytic Degradation of Tetracycline Hydrochloride. ACS Applied Nano Materials, 2024 2024, 7, 10, 11506–11517. (SCI二区,IF: 5.9, 通讯)
[8] Houxiang Sun, Qian Wang, Xinyue Zhang, Qianqian Yu, Lei Li, Yandan Wang, Baojian Shen. Hydrodesulfurization of dibenzothiophene over NiW/(SnAlPO4-5+Al2O3) catalyst, the tuning effect of SnAlPO4-5 to the desulfurization reaction pathway, Applied Catalysis A: General, 2018, 563: 137-145. (中科院SCI二区,IF5.5,JCR Q2,一作).
[9] Lei Li, Yan Du, Houxiang Sun*, Huabing Zhang*, Zicong Zhong. Synthesis of Nano CdZnS/SnS2/SnO2 Heterojunction for Photocatalytic Degradation of Rhodamine B. ChemCatChem, 2023, 15, 4, e202201436. (SCI三区,TOP, IF: 3.8, 通讯)
[10]孙厚祥, 张立中, 张化冰*.复合材料TiO2/MCM-41光催化降解四环素的研究.工业水处理, 2023, 43(09). (中文核心,一作)
[11] 张化冰, 张立中, 孙厚祥*. 花状镉掺杂ZnO的制备及其光催化降解盐酸四环素的研究.工业水处理, 2023, 43(07). (中文核心, 通讯)