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个人简介

教育经历: 1998-2003,天津大学化工学院工业催化专业,获工学博士学位 1992-1995,天津大学化工学院有机化工专业,获工学硕士学位 1983-1987,天津大学化工学院工业催化专业,获工学学士学位 发明专利: 1. 用超临界抗溶剂技术制备铈锆纳米复合氧化发明物微粒的方法,ZL2008101540302,姜浩锡,李永辉,余英哲,张金彦,张敏华 2. 采用超临界抗溶剂法对铈锆纳米复合氧化物微粒掺杂铜或锰的方法,ZL2010102707748,姜浩锡、李永辉、钱胜华、张敏华 3.一种介孔碳基固体酸催化剂的制备方法及其应用,ZL201310742782.1,姜浩锡;李桂明;王凌涛;董秀芹;张敏华 4. 乙醇生产过程中催化反应精馏脱酸方法及装置,ZL2011100338851,张敏华、吕惠生、姜浩锡、董秀芹、刘 成、李永辉、钱胜华 5. 生物丁醇生产过程的排杂方法,ZL2008101546347,董秀芹、陶敏莉、姜浩锡、钱胜华、欧阳胜利、吕惠生、刘福双、张敏华 6. 超临界体系中酶催化制备甘油二酯的方法,ZL2009100689827,陶敏莉、吕惠生、姜浩锡、董秀芹、张敏华 7. 杂醇油分子筛气相脱水方法及分离提纯方法,ZL031297447,张敏华、刘宝菊、吕惠生、董秀芹、刘 成、刘宗章、李永辉、钱胜华、姜浩锡、张志强

研究领域

应用催化 超临界流体技术

近期论文

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Heteroatom zeolites with a high content of framework metal sites as Lewis-acid catalysts for the conversion of ethanol–acetaldehyde to 1,3-butadiene Catalysis Science & Technology 2023 | Journal article DOI: 10.1039/D2CY01841A CONTRIBUTORS: Haoxi Jiang; Liping Yi; Guochao Yang; Lingtao Wang Preparation of highly dispersed Pt–Sn/Al2O3 catalysts via supercritical fluid deposition and their catalytic performance New Journal of Chemistry 2021 | Journal article DOI: 10.1039/D1NJ00108F CONTRIBUTORS: Haoxi Jiang; Guangshen Li; Jing Wang; Sheng Wang Preparation of β zeolite with intracrystalline mesoporosity via surfactant -templating strategy and its application in ethanol-acetaldehyde to butadiene Microporous and Mesoporous Materials 2021-03 | Journal article DOI: 10.1016/j.micromeso.2021.110949 CONTRIBUTORS: Guochao Yang; Lingtao Wang; Haoxi Jiang Synthesis of Co-doped MnO2 catalysts with the assistance of PVP for low-temperature SCR Catalysis Science & Technology 2020 | Journal article DOI: 10.1039/D0CY01628D CONTRIBUTORS: Haoxi Jiang; Debin Kong; Ying Niu; Sheng Wang Zr-Incorporating SBA-15 for conversion of the ethanol–acetaldehyde mixture to butadiene Reaction Chemistry & Engineering 2020 | Journal article DOI: 10.1039/D0RE00160K CONTRIBUTORS: Guochao Yang; Lingtao Wang; Haoxi Jiang Jiang,Haoxi; Lin, Jing; Wu, Xiaohui; Wang, Wenyi; Chen, Yifei; Zhang, Minhua*,Efficient hydrogenation of CO2 to methanol over Pd/In2O3/SBA-15catalysts, Journal of CO2 Utilization, 2020, 36: 33-39(二区,IF=5.1) Study of Ethanol/Acetaldehyde to 1,3-Butadiene Over MgO–SiO2 Catalyst: Comparative Investigation of Deactivation Behaviour Due to Carbon Deposition Catalysis Letters 2020-05-25 | Journal article DOI: 10.1007/s10562-019-03049-2 CONTRIBUTORS: Minhua Zhang; Yu’nan Qin; Xuechao Tan; Lingtao Wang; Yingzhe Yu; Haoxi Jiang Role of Mn: Promotion of Fast-SCR for Cu-SAPO-34 in Low-Temperature Selective Catalytic Reduction with Ammonia Catalysis Surveys from Asia 2019-09-27 | Journal article DOI: 10.1007/s10563-019-09277-1 CONTRIBUTORS: Minhua Zhang; Haibo Cao; Yifei Chen; Haoxi Jiang XiuqinDong, Junwei Lei, Yifei Chen, Haoxi Jiang, Minhua Zhang*, Selectivehydrogenation of acetic acid to ethanol on Cu-In catalyst supported by SBA-15,Applied Catalysis B: Environmental, 2019, 244: 448-458(一区,IF=11.7) HaoxiJiang, Qiang Gao, Shutian Wang, Yifei Chen, Minhua Zhang*, The synergisticeffect of Pd NPs and UiO-66 for enhanced activity of carbon dioxidemethanation, Journal of CO2 Utilization, 2019, 31: 167-172(一区,IF=5.5) HaoxiJiang, Jing Wang, Jiali Zhou, Yifei Chen, Minhua Zhang*, Effect of Promoters onthe Catalytic Performance and SO2/H2O Resistance ofalpha-MnO2 Catalysts for Low Temperature NH3–SCR,Industrial & Engineering Chemistry Research, 2019, 58(4):1760-1768(二区,IF=3.1) Meixiang Gao, Haoxi Jiang, Minhua Zhang,The influence of calcination temperatures on the acid-based properties andcatalytic activity for the 1,3-butadiene synthesis from ethanol/acetaldehydemixture, Applied Surface Science, 2018, 439: 1072-1078(二区,IF=4.4) Effect of surface oxygen vacancy sites on ethanol synthesis from acetic acid hydrogenation on a defective In2O3(110) surface Physical Chemistry Chemical Physics 2018 | Journal article DOI: 10.1039/C7CP07568E CONTRIBUTORS: Huisheng Lyu; Jiatao Liu; Yifei Chen; Guiming Li; Haoxi Jiang; Minhua Zhang The deactivation of a ZnO doped ZrO2–SiO2 catalyst in the conversion of ethanol/acetaldehyde to 1,3-butadiene RSC Advances 2018 | Journal article DOI: 10.1039/C8RA06757K CONTRIBUTORS: Minhua Zhang; Xuechao Tan; Tong Zhang; Zheng Han; Haoxi Jiang

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