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袁霞

  • 基本信息

    bevictor伟德官网导师姓名:袁霞

    导师职称:教授

    电子邮箱:yuanxia@xtu.edu.cn

    办公室:化学化工大楼C座


    个人简介

            袁霞,博士,教授,硕士生导师。2001年毕业于bevictor伟德官网化学工程专业,获硕士学位;2007年毕业于bevictor伟德官网化学工程专业,获工学博士学位。讲授制药工程本科专业《制药工程学》、《制药设备与车间设计》课程。主要从事催化反应工程、催化新材料的设计与制备和绿色催化工艺方向的研究工作,涉及的研究体系包括烷烃和芳烃的选择性氧化、烯烃的环氧化、烯酸酯化、酮氨肟化等。先后主持国家自然科学基金青年项目1项,国家自然科学基金面上项目2项,湖南省自然科学基金3项,湖南省教育厅优秀青年项目1项,湖南省教育厅重点项目1项以及湖南省高校创新平台开放基金项目1项,主持和参与多项横向开发项目,授权发明专利5项,相关研究成果在Chemical Engineering Journal, Applied Catalysis A, Catalysis Letters,《化工学报》等国内外核心期刊上发表。

    研究方向

    (1)催化反应工程;

    (2)催化新材料的设计与制备;

    (3)绿色催化工艺。

    主持科研项目

    1、微介孔复合Hβ分子筛包嵌镍纳米颗粒催化苯加氢烷基化,湖南省教育厅科学研究重点项目(23A0137),2023.9- 2026.12

    2、磺酸功能化金属有机骨架材料封装磷钨酸复合催化剂的构建及其在环己烯甲酸酯化反应中的酸性调控,国家自然科学基金面上项目(21776237),2018.1-2021.12

    3、介孔分子筛复合固载NHPI/Cosalen催化剂的构建及其在无溶剂甲苯液相分子氧氧化反应中的性能研究,国家自然科学基金面上项目(21376200),2014.1-2017.12

    4、疏水性修饰MCM-41载体固载Cosalen在环己烷氧化中的催化性能研究,国家自然科学基金青年项目(21006080),2011.1-2013.12

    5、介孔分子筛复合固载NHPI/Cosalen催化甲苯选择性氧化,湖南省高校创新平台开放基金项目(13K044),2013.6-2015.12

    6、SBA-15复合固载NHPI/Cosalen在甲苯氧化反应中的催化性能研究,湖南省自然科学基金项目(14JJ2065),2014-2016

    7、改性Y型分子筛封装杂多酸盐及其催化烯烃环氧化性能研究,湖南省自科基金项目(10JJ4009),2010.1-2012.12

    8、MCM-41固载Cosalen配合物催化环己烷氧化制备环己醇/酮,湖南省教育厅优秀青年项目(09B099),2009.1-2011.12

    9、β-环糊精固定化席夫碱配合物仿酶催化环己烷氧化反应研究,湖南省自科基金目(04JJ3042),2004.8-2006.12

    10、NaY分子筛固载席夫碱钴配合物的制备及其仿酶催化性能研究,湖南省教育厅项目(05C083),2005.12-2007.1

    发表论文

    1. Kinetics of Benzene Hydroalkylation over Bifunctional Catalyst Ru/Hβ, Catalysis Letters, 2025, 155: 55

    2. Direct thermal reduction of Ni/Hβ and its improved catalytic performance with stability in hydroal- kylation of benzene, Journal of Porous Materials, 2025, 32: 341-351.

    3. Chromium and cobalt bimetallic MOF material as an effective and stable catalyst for the decompo- sition of cyclohexyl hydrogen peroxide, Microporous and Mesoporous Materials, 2023, 352: 112497.

    4.Hβ分子筛负载非贵金属催化苯加氢烷基化制备环己基苯,石油学报(石油加工),2023,39(2):340-348.

    5. Acid Regulation of Defective Sulfonic‑Acid‑Functionalized UiO‑66 in the Esterification of Cyclohexene with Formic Acid, Catalysis Letters, 2023, 153:836-849.

    6. Improved catalytic performance and stability of defected UiO‑66–SO3H in the esterifcation reaction of cyclohexene with cyclohexanecarboxylic acid,Journal of Porous Materials,2022,29:1957-1968.

    7.核壳材料Co3O4@SiO2催化环己基过氧化氢分解,无机材料学报, 2022,37(1):65-71.

    8. In situ sulfonic acid-functionalized MIL-101(Cr) catalyzed liquid-phase Beckmann rearrangement of cyclohexanone oxime,Microporous and Mesoporous Materials,2020,297:110031.

    9. Catalytic Epoxidation of Propylene over a Schiff-Base Molybdenum Complex Supported on a Silanized Mesostructured Cellular Foam,Research on Chemical Intermediates,2020,46:4705-4721.

    10. Efficient oxidation of p-xylene to terephthalic acid by using N,Ndihydroxypyromellitimide in conjunction with Co-benzenetricarboxylate, Applied Catalysis A, General,2020, 599: 117569.

    11. Effect of Crystal Form Control on Improving Performance of Cu3(BTC)2 Immobilized Phosphotungstic Acid in Esterification of Cyclohexene with Formic Acid, Catalysis Letters, 2020150: 1786-1797.

    12.MCF介孔分子筛负载Co催化环己基过氧化氢分解,分子催化,2019,33(2):140-148.

    13. Comparative research on three types of MIL-101(Cr)-SO3H for esterification of cyclohexene with formic acid, RSC Advances, 2019,9(10): 5692-5700.

    14. Effect of preparation conditions of benzene bridged Ti incorporated periodic mesoporous organosilicas on selectivity improvement of cyclohexene epoxidation, Journal of Porous Materials,2018, 25(6): 1625.

    15. Phosphotungstic acid immobilized on sulphonic-acid-functionalized SBA-15 as a stable catalyst for the esterification of cyclohexene with formic acid, Journal of the Taiwan Institute of Chemical Engineers,2018, 88: 1-7.

    16. Catalytic performance of surface-silylated and phenyl-bridged Ti-containing mesoporous silica for epoxidation of propylene, Microporous and Mesoporous Materials, 2018, 262: 251-257.

    17.介孔材料Co/SBA-15催化环己基过氧化氢分解的研究,无机材料学报,2017,32(5):543-549.

    18. Co-SBA-15-Immobilized NDHPI as a new composite catalyst for toluene aerobic oxidation, Catalysis Letters, 2017, 147: 856-864.

    19. A New Method for Immobilization of NDHPI on SBA-15 Carrier Used as Catalyst for Selective Oxidation of Toluene, Catalysis Letters, 2016, 146(2):383-390.

    20. Preparation of surface-silylated and benzene-bridged Ti-containing mesoporous silica for cyclohexene epoxidation, J Porous Mater, 2016, 23:895-903.

    21. Decomposition of Cyclohexyl Hydroperoxide Over Bimetallic Mesoporous Materials Containing Cobalt and Chromium, The Canadian Journal of Chemical Engineering, 2016, 94: 1987-1994.

    22. N-hydroxyphthalimide incorporated onto Cu-BTC metal organic frameworks: An novel catalyst for aerobic oxidation of toluene, Research on Chemical Intermediates, 2016, 42(6): 5527-5539.

    23. Methyl Group Modified MCM-41 Supported Schiff-Base Cobalt Complex and Its Catalytic Performance in Cyclohexane Oxidation, Catalysis Letters, 2015, 145: 868-874.

    24. Preparation of Keggin-type mono-lacunary phosphotungstic-ammonium salt and its catalytic performance in ammoximation of cyclohexanone, Chemical Engineering Journal, 2015, 280: 670-676.

    25. Ti掺杂苯基与乙基桥连的有序介孔有机硅的制备及其催化环己烯氧化反应,分子催化,2015,29(2):135-142.

    26. 疏水性Cosalen/SBA-15的制备及在甲苯选择性氧化中的应用,高等学校化学学报,2013,34(11):2617-2622.

    27.超稳Y沸石封装磷钨酸的制备、表征及其催化性能,化工学报,2010,61(6):1463-1468.

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