姓 名 张舒乐 性 别 男
出生年月 1982年11月 籍贯 葫芦岛
民 族 汉族 政治面貌 群众
最后学历 研究生毕业 最后学位 工学博士
技术职称 教授 导师类别 博士生导师
导师类型 校内 兼职导师 否
行政职务 副主任 Email shulezhang@163.com
工作单位 南京理工大学化工学院化学工程系 邮政编码 210094
通讯地址 南京市玄武区孝陵卫200号
单位电话
个人主页
指导学科
学科专业(主) 0817|化学工程与技术 招生类别 博、硕士 所在学院 化工学院
研究方向 功能材料与催化材料的制备、表征、解析与分子模拟;优良催化材料的工业应用。
获奖、荣誉称号
江苏省“六大人才高峰”高层次人才、南京理工大学科研新锐、南京理工大学优秀指导教师、全国化工设计竞赛特等奖指导教师,获2019年江苏省科学技术奖一等奖。
社会、学会及学术兼职
Applied Catalysis B: Environmental、Journal of Hazardous Materials、Chemical Engineering Journal等期刊审稿人。
科研项目
目前主持国家重点研发计划、江苏省重点研发计划、国家自然科学基金青年基金、江苏省自然科学基金青年基金等,科研经费合计400多万元。
发表论文
近三年以通讯作者发表的主要论文:
2020年
[1] Wu Z H, Chen H, Wan Z D, Zhang S L*, Zeng Y Q, Guo H W, Zhong Q*, Li X H, Han J Y, Rong W L. Promotional Effect of S Doping on V2O5-WO3/TiO2 Catalysts for Low-Temperature NOx Reduction with NH3. Industrial & Engineering Chemistry Research, 2020, 59: 15478.
[2] Zeng Y Q, Wu Z H, Guo L N, Wang Y N, Zhang S L*, Zhong Q*. Insight into the effect of carrier on N2O formation over MnO2/MOx (M = Al, Si and Ti) catalysts for selective catalytic reduction (SCR) of NOx with NH3. Molecular Catalysis: 2020, 488: 110916.
[3] Wang Y N, Zhen W L, Zeng Y Q, Wan S P, Guo H W, Zhang S L*, Zhong Q*. In-situ self-assembly of Zirconium metal–organic frameworks onto ultrathin carbon nitride for enhanced visible light-driven conversion of CO2 to CO. Journal of Materials Chemistry A: 2020, 8: 6034.
[4] Meng F Y, Guo L N, Zou H C, Zhu B M, Zhou F Y, Zeng Y Q, Han J Y, Yang J, Zhang S L*, Zhong Q*. Mechanism study on TiO2 inducing ·O2- and ·OH radicals in O3/H2O2 system for high-efficiency NO oxidation. Journal of Hazardous Materials:2020,399:123033.
[5] Li X H, Wu Z H, Zeng Y Q, Han J Y, Zhang S L*, Zhong Q*.Reduced TiO2 inducing highly active V2O5 species for selective catalytic reduction of NO by NH3. Chemical Physics Letters: 2020, 750: 137494.
[6] Li G J, Wang Y N, Huang R, Hu Y Y, Guo J, Zhang S L*, Zhong Q*. In-situ growth UiO-66-NH2 on the Bi2WO6 to fabrication Z-scheme heterojunction with enhanced visible-light driven photocatalytic degradation performance. Colloids and Surfaces A: 2020, 603: 125256.
[7] Lian Z, Guo L N, Zhang S L*, Xiong Y H, Meng F Y, Zeng Y Q, Zhong Q*. Using excess O3 to facilitate the NO2 absorption in a sulfite solution: Process conditions and mechanism. Fuel Processing Technology: 2020, 206: 106457.
[8] Guo L N, Meng F Y, Zeng Y Q, Jia Y*, Qian F P, Zhang S L*, Zhong Q. Catalytic ozonation of NOx into HNO3 with low concentration ozone over MnOx-CeO2/TiO2: two-phase synergistic effect of TiO2. Molecular Catalysis: 2020, 493: 111095.
[9] Meng F Y, Zhang M J, Zhou F Y, Zou H C, Zhu B M, Zeng Y Q, Zhang S L*, Zhong Q*. CrOx anchored on the black-TiO2 surface via organic carboxylic acid ligand and their catalysis in oxidation of NO. Catalysis Letters. Accepted.
[10] Zeng Y Q, Haw K G, Wang Z G, Wang Y N, Zhang S L*, Hongmanorom P, Zhong Q*, Kawi S*. Double redox process to synthesize CuO-CeO2 catalysts with strong Cu-Ce interaction for efficient toluene oxidation. Journal of Hazardous Materials: 2020, 404: 124088.
[11] Zeng Y Q, Haw K G, Wang Y N, Zhang S L*, Wang Z G, Zhong Q, Kawi S. Recent progress of CeO2-TiO2 based catalysts for selective catalytic reduction of NOx by NH3. ChemCatChem. Accepted
[12] Zeng Y Q, Wang Y N, Zhang S L*, Zhong Q*. Partial substitution of magnesium in lanthanum manganite perovskite for NO oxidation: The effect of substitution sites. Journal of Colloid and Interface Science: 2020, 580: 49.
[13] Huang L, Zong T H, Wang H, Chang Z F, Zhang S L*, Han P. Effect of neodymium addition on the plate-type V2O5-MoO3/TiO2 catalyst for selective catalytic reduction of NO. Reaction Kinetics, Mechanisms and Catalysis, 2020, Accepted
2019年
[1] Zeng Y Q, Song W, Wang Y N, Zhang S L*, Zhong Q. Novel Fe-doped CePO4 catalyst for selective catalytic reduction of NO with NH3: The role of Fe3+ ions. Journal of Hazardous Materials, 2019, 383: 121212.
[2] Wang Y N, Guo L N, Zeng Y Q, Guo H W, Wan S P, Ou M, Liao K, Zhang S L*, Zhong Q. Amino-assisted NH2-UiO-66 anchored on porous g-C3N4 for enhanced visible-light-driven CO2 reduction. ACS Applied Materials & Interfaces, 2019,11(34): 30673-30681.
[3] Zeng Y Q, Wang Y N, Meng Y H, Zhang S L*, Zhong Q. The effect of preparation method on oxygen activation over Pt/TiO2 catalysts for toluene total oxidation. Chemical Physics Letters, 2019, 730: 95-99.
[4] Zeng Y Q, Wang Y N, Song F J, Zhang S L*, Zhong Q. The effect of CuO loading on different method prepared CeO2 catalyst for toluene oxidation. Science of The Total Environment, 2019: 135635.
[5] Wu Z H, Zeng Y Q, Song F J, Zhang S L*, Zhong Q. Active sites assembly effect on CeO2-WO3-TiO2 catalysts for selective catalytic reduction of NO with NH3. Molecular Catalysis, 2019, 479: 100-108.
[6] Huang R, Zhang S L*, Ding J, Meng Y H, Zhong Q, Kong D S, Gu C J. Effect of adsorption properties of phosphorus-doped TiO2 nanotubes on photocatalytic NO removal. Journal of Colloid and Interface Science, 2019, 553(1): 647-654.
[7] Zeng Y Q, Song W, Wang Y N, Meng Y H, Song F J, Zhang S L*, Zhong Q. The utilization of dye wastewater in enhancing catalytic activity of CeO2-TiO2 mixed oxide catalyst for NO reduction and dichloromethane oxidation. Chemosphere, 2019, 235: 1146-1153.
[8] Li X H, Meng F Y, Zhang S L*, Zhong Q. The effect of polyethylene glycol modification on CrOx/TiO2 catalysts for NO oxidation. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2019(578): 123588.
[9] Meng F Y, Zhang S L*, Zhong Q. CrOx assembled at the oxygen vacancies on black-TiO2 for NO oxidation. Molecular Catalysis, 2019, 473: 62-69.
[10] Li X H, Yu Y, Zhang S L*, Zhong Q. Synergetic effects of surface free Co3O4species on catalytic oxidation of NO over cerium-cobalt solid solution. Journal of Dispersion Science and Technology, 2019, ** .
[11] Wang Y N, Zeng Y Q, Zhang S L*, Zhong Q. Synthesis of 3D hierarchical rose-like Bi2WO6 superstructure with enhanced visible light-induced photocatalytic performance. The Journal of The Minerals, Metals & Materials Society, 2019, 71(6): 2112~2119.
[12] Wang Y N, Chen X Y, Wang Q Y, Zeng Y Q, Liao K, Zhang S L*, Zhong Q. Novel 3D hierarchical bifunctional NiTiO3 nanoflower for superior visible light photoreduction performance of CO2 to CH4 and high lithium storage performance. Energy, 2019, 169(15): 580~586.
[13] Song W, Zeng Y Q, Wang Y N, Zhang S L*, Zhong Q, Wang T X, Wang X M. Photo-induced strong active component-support interaction enhancing NOxremoval performance of CeO2/TiO2. Applied Surface Science, 2019, 476: 834~839.
[14] Wang Y N, Zeng Y Q,Wan S P, Zhang S L*, Zhong Q. Construction of octahedral BiFeWOx encapsulated in hierarchical In2S3 core@shell heterostructure for visible-light-driven CO2 reduction. Journal of CO2 Utilization, 2019, 29: 156~162.
2018年
[1] Zeng Y Q, Wang Y N, Zhang S L*, Zhong Q. Study on the NH3-SCR performance and reaction mechanism of cost-effective and environment-friendly black TiO2catalyst. Physical Chemistry Chemical Physics, 2018, 20: 22744~22752.
[2] Wang Y N, Zhang S L*, Zhong Q. In situ fabrication of 3D octahedral g-C3N4/BiFeWOx composite for highly selective CO2photoreduction to CO under visible light. ChemCatChem, 2018, 10: 2578~4585.
[3] Xiong Y H, Zhong Q, Ou M, Cai W, Wan S P, Zhang S L*. Efficient inhibition of N2O during NO absorption process using CuO&(NH4)2SO3mixed solution. Industrial & Engineering Chemistry Research, 2018, 57: 13010~13018.
[4] Zhao W Y, Li Z Q, Wang Y, Fan R R, Zhang C, Wang Y, Guo X, Wang R, Zhang S L*. Ce and Zr Modified WO3-TiO2 Catalysts for Selective Catalytic Reduction of NOxby NH3. Catalysts, 2018, 8: 375~384.
[5] Guo L N, Han C Y, Zhang S L*, Zhong Q, Ding J, Zhang B Q, Zeng Y Q. Enhancement effects of ·O2- and ·OH radicals on NOXremoval in the presence of SO2by using an O3/H2O2AOP system with inadequate O3(O3/NO molar ratio=0.5) . Fuel, 2018, 233: 769~777.
[6] Wang Y N, Zeng Y Q, Chen Y Y, Wang Q Y, Wan S P, Wang D Y, Cai W, Zhang S L*, Zhong Q. Tailoring shape and phase formation: rational synthesis of single-phase BiFeWOx nanooctahedra and phase separated Bi2WO6-Fe2WO6 microflower heterojunctions and visible light photocatalytic performances. Chemical Engineering Journal, 2018, 351(1): 295~303.
[7] Han C Y, Zhang S L*, Guo L N, Zeng Y Q, Li X H, Shi Z C, Zhang Y, Zhang B Q, Zhong Q. Enhanced catalytic ozonation of NO over black-TiO2 catalyst under inadequate ozone (O3/NO molar ratio =0.6). Chemical Engineering Research and Design, 2018 136: 219~229.
[8] Wang Y N, Zeng Y Q, Chen Y Y, Wang Q Y, Guo L N, Zhang S L*, Zhong Q. One-step hydrothermal synthesis of novel 3D BiFeWOx/Bi2WO6 composite with superior visible-light photocatalytic activity. Green Chemistry, 2018, 20, 3014~3023.
[9] Jiang D, Zhang S L*, Zeng Y Q, Zhong Q. Active site of O2 and its improvement mechanism over Ce-Ti catalyst for NH3-SCR reaction. Catalysts, 2018, 8: 336~350.
[10] Zeng Y Q, Wang Y N, Zhang S L*, Zhong Q, Rong W L, Li X H. One-pot synthesis of ceria and cerium phosphate (CeO2-CePO4) nanorod composites for selective catalytic reduction of NO with NH3: active sites and reaction mechanism. Journal of Colloid and Interface Science, 2018, 524: 8~15.
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南京理工大学化工学院导师教师师资介绍简介-张舒乐
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