张秋林

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张秋林

张秋林,男, 1983年生,湖北黄冈人,博士,教授,博士/硕士生导师,昆明理工大学环境科学与工程学院副院长。2012年毕业于四川大学,获博士学位, 2017年破格晋升教授。2018年获云南省“兴滇英才支持计划”青年拔尖人才称号。主要从事工业废气净化及高效环境功能材料开发研究工作。主持国家自然科学基金项目2项,国家重点研发计划子课题1项,省部级及横向项目5项。发表学术论文90余篇, 以第一作者或通讯作者发表SCI收录论文60余篇,申请专利40余项,获授权专利10余项。开发的低热值工业废气临氧催化氧化工业催化剂(RC-101)已应用。以第一完成人和主要完成人分获中国有色金属工业科学技术二等奖、一等奖各1项。


所属科研团队/平台

云南省工业废气净化及资源化利用创新团队

冶金及化工行业废气资源化国家地方联合工程研究中心

云南省高校环境污染防治重点实验室


教育与工作经历

2013.11-2017.9 昆明理工大学副教授(破格晋升)

2017.11- 至今 昆明理工大学教授(破格晋升)

2012.8-2013.10 昆明理工大学讲师

2007.9-2012.6 四川大学化学学院, 获物理化学博士学位 (硕博连读)

2003.9-2007.6 湖北师范大学化学与环境工程系,获理学学士学位


主要研究方向

含化学能低热值工业废气催化氧化净化与资源化利用

典型工业废气中硫、硝净化或资源化利用

CO2的催化转化与资源化利用

矿冶废水中重金属、氟磷的富集净化


负责科研项目

云南省“兴滇英才支持计划”青年拔尖人才项目(云南省人才项目,经费:50万)

铈基催化剂/ZSM-5膜双层多效催化剂协同净化HCNN2ONH3研究(国家自然科学基金,经费:25万,No. 21307047

Shell 粉煤气化制合成氨液氮洗尾气分段催化氧化及资源化研究(国家自然科学基金,经费:40万,No.21666014

铝行业炭素焙烧烟气资源化高效治理(国家重点研发计划子课题项目,2018.7-2021.6 经费: 69.5万,2018YFC0213400

气固相催化反应装置开发(企业合作经费:32万)


近两年发表的代表性论文

2020

[1] Huimin Wang, Ping Ning, Qiulin Zhang*, et al. Highly efficient WO3-FeOx catalysts synthesized using a novel solvent-free method for NH3-SCR. Journal of Hazardous Materials. 2020, 388:121812. SCIIF=9.038, 一区

[2] Qiulin Zhang*, Yaqing Zhang, Tengxiang Zhang, et al. Influence of preparation methods on iron-tungsten composite catalyst for NH3-SCR of NO: The active sites and reaction mechanism. Applied Surface Science. 2020, 503:144190. SCIIF=6.182,二区

[3] Qiulin Zhang*, Tengxiang Zhang, Ping Ning, et al. Promoting effects of acid enhancing on N2 selectivity for selectivity catalytic oxidation of NH3 over RuOx/TiO2: The mechanism study. Applied Surface Science. 2020, 500:144044. SCIIF=6.182,二区

[4] Haiyang Sun, Junjie Wen, Qiulin Zhang*, et al. et al. Insight into the role of CaO in coke-resistant over Ni-HMS catalysts for CO2 reforming of methane. Applied Surface Science. 2020, 521:146395. SCIIF=6.182,二区

[5] Tengxiang Zhang, Futing Xia, Qiulin Zhang*, et al. The property tuning of NH3-SCR over iron-tungsten catalyst: Role of calcination temperature on surface defect and acidity. Applied Surface Science. 2021, 538:147999. SCIIF=6.182,二区

[6] Xiying Chen, Ping Ning, Qiulin Zhang*, et al The reconstruction of Ni particles on SBA-15 by thermal activation for dry reforming of methane with excellent resistant to carbon deposition. Journal of the Energy Institude. 2020, 93:2255-2263. SCIIF=4.748,二区

[7] Mulan Chan,Ping Ning, Qiulin Zhang*, et al. Removal of toluene over bi-metallic Pt-Pd-SBA-15 catalysts: Kinetic and mechanistic study. Microporous and Mesoporous Materials. 2020, 302:110111. SCIIF=4.182,二区

[8] Yanli Mao, Futing Xia, Qiulin Zhang*, et al. Catalytic hydrolysis of HCN over Fe-Ti-O-x catalysts prepared by different calcination temperatures: Effect of Fe chemical valence and Ti phase. Microporous and Mesoporous Materials. 2020, 292:109753. SCIIF=4.182,二区

2019

[1] Jie Fan, Ping Ning, Qiulin Zhang*, et al. Significant promoting effect of Ce or La on the hydrothermal stability of Cu-SAPO-34 catalyst for NH3-SCR reaction. Chemical Engineering Journal. 2019, 369:908-919. SCIIF=8.355,一区

[2] Guangcheng Wei, Qiulin Zhang*, Dehua Zhang, et al. The influence of annealing temperature on copper-manganese catalyst towards the catalytic combustion of toluene: The mechanism study. Applied Surface Science. 2019, 497:143777. SCIIF=5.155,二区

[3] Huimin Wang, Ping Ning, Qiulin Zhang*, et al. Structural tuning and NH3-SCO performance optimization of CuO-Fe2O3 catalysts by impact of thermal treatment. Applied Surface Science. 2019, 485: 81-91. SCIIF=5.155,二区

[4] Qiulin Zhang, Menghan Sun, Ping Ning, et al. Effect of thermal induction temperature on re-dispersion behavior of Ni nanoparticles over Ni/SBA-15 for dry reforming of methane. Applied Surface Science. 2019, 469:368-377. SCIIF=5.155,二区

[5] Qiulin Zhang, Hu Jia, Ning Ping*, et al. In situ DRIFTS investigation of low temperature CO oxidation over manganese oxides supported Pd catalysts. Journal of the Taiwan Institute of Chemical Engineers. 2019, 97: 280-287. SCIIF=3.834,二区

[6] Weikang Su, Ping Ning, Qiulin Zhang*, et al. Catalytic performance and mechanistic study of toluene combustion over the Pt-Pd-HMS catalyst. Chemical Engineering Science. 2019, 205:230-237. SCIIF=3.372,二区


科技奖励

中国有色金属工业科技进步二等奖,基于含化学能低热值气体催化氧化的贵金属催化剂及应用技术,排名第一,2018

中国有色金属工业科技进步一等奖,铝、锡、锑、汞工业污染物排放标准(GB25465-2010GB30770-2014),排名第七,2017


研究方向及兴趣

含化学能低热值工业废气催化氧化净化与资源化利用

典型工业废气中硫、硝净化或资源化利用

CO2的催化转化与资源化利用

矿冶废水中重金属、氟磷的富集净化


招生要求

吃苦耐劳、勤奋好学,英语成绩优秀者优先考虑,欢迎具有环境工程、环境科学和化工背景的同学加盟本研究组。


联系方式

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QQ229545003

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