基本信息

单玉龙 男 中国科学院生态环境研究中心
电子邮件: ylshan@rcees.ac.cn
通信地址: 北京市海淀区双清路18号
邮政编码: 100085
电子邮件: ylshan@rcees.ac.cn
通信地址: 北京市海淀区双清路18号
邮政编码: 100085
研究方向
主要从事大气温室气体与污染物协同减排技术的基础与应用研究
招生信息
欢迎化学、能源、催化、环境、材料等相关专业的学生加入
招生专业
083001-环境科学
083002-环境工程
070304-物理化学
083002-环境工程
070304-物理化学
招生方向
大气污染物与温室气体排放控制
教育背景
2014-09--2019-06 中国科学院生态环境研究中心 博士 环境科学
2010-09--2014-07 浙江大学 本科 环境工程
2010-09--2014-07 浙江大学 本科 环境工程
工作经历
工作简历
2025-01~现在, 中国科学院生态环境研究中心, 研究员
2023-01~2025-01,中国科学院生态环境研究中心, 副研究员
2019-07~2023-01,中国科学院生态环境研究中心, 助理研究员
2023-01~2025-01,中国科学院生态环境研究中心, 副研究员
2019-07~2023-01,中国科学院生态环境研究中心, 助理研究员
社会兼职
2024-12-09-今,北京市密云区青年联合会委员会, 委员
2024-01-01-今,中国环境科学学会青年科学家分会, 秘书
2023-01-01-今,Journal of Rare Earths, 青年编委
2023-01-01-今,内燃机工业协会后处理委员会, 委员
2024-01-01-今,中国环境科学学会青年科学家分会, 秘书
2023-01-01-今,Journal of Rare Earths, 青年编委
2023-01-01-今,内燃机工业协会后处理委员会, 委员
专利与奖励
奖励信息
(1) 中国科学院杰出科技成就奖 技术发明奖, 部委级, 2024
(2) 《稀土学报(英文)》2024年度优秀青年编委, , 其他, 2024
(3) Natioanl Science Review 2023 Best Paper, 其他, 2023
(4) 《环境科学研究院》2023年度最佳论文, 其他, 2023
(2) 《稀土学报(英文)》2024年度优秀青年编委, , 其他, 2024
(3) Natioanl Science Review 2023 Best Paper, 其他, 2023
(4) 《环境科学研究院》2023年度最佳论文, 其他, 2023
专利成果
( 1 ) 一种金属氧化物负载的催化剂的制备方法和应用, 发明专利, 2023, 第 3 作者, 专利号: CN116510774A
( 2 ) 一种负载稀土金属氧化物或过渡金属氧化物的Cu-SSZ-13复合催化剂的制备方法及其应用, 发明专利, 2023, 第 3 作者, 专利号: CN116550376A
( 3 ) 一种负载型CeO2 /Cu-SSZ-13复合催化剂的制备方法及其应用, 发明专利, 2023, 第 3 作者, 专利号: CN116532151A
( 4 ) 一种NH3 -SCR催化剂及其制备方法和应用, 发明专利, 2023, 第 3 作者, 专利号: CN116510773A
( 5 ) 一种基于电化学的含铜含硅碱性废水的资源化处理方法, 发明专利, 2023, 第 4 作者, 专利号: CN116514309A
( 6 ) 一种兼具氮氧化物吸附和氧化的双功能催化剂及其制备方法与应用, 发明专利, 2022, 第 5 作者, 专利号: CN114984968A
( 7 ) 一种兼具氮氧化物吸附与氧化的催化剂及其制备方法与应用, 发明专利, 2022, 第 5 作者, 专利号: CN115041177A
( 8 ) 一种复合沸石SCR催化剂及其制备方法与应用, 发明专利, 2022, 第 2 作者, 专利号: CN114733564A
( 9 ) 一种Cu-CHA与H-AEI的复合催化剂及其制备方法与应用, 发明专利, 2022, 第 2 作者, 专利号: CN114733563A
( 10 ) 一种氮氧化物吸附催化剂及其制备方法和应用, 发明专利, 2022, 第 2 作者, 专利号: CN114669297A
( 11 ) 一种氮氧化物被动吸附催化剂及其制备方法和应用, 发明专利, 2022, 第 2 作者, 专利号: CN114917896A
( 12 ) 一种适用于高温的脱硝催化剂及其制备方法与应用, 发明专利, 2022, 第 6 作者, 专利号: CN113908826A
( 13 ) 一种用于氨选择性催化还原NO x 的铜基催化剂及其制备方法, 发明专利, 2021, 第 3 作者, 专利号: CN113070097A
( 14 ) 一种Beta分子筛吸附剂及其制备方法和应用, 发明专利, 2021, 第 3 作者, 专利号: CN112892472A
( 15 ) 一种用于氮氧化物被动吸附的吸附剂及其制备方法和用途, 发明专利, 2020, 第 2 作者, 专利号: CN111408341A
( 16 ) 一种Cu-SAPO-34分子筛催化剂、其制备方法和用途, 发明专利, 2020, 第 4 作者, 专利号: CN111195527A
( 17 ) 一种稀土金属修饰Cu-SSZ-13分子筛及其制备方法和应用, 2023, 第 5 作者, 专利号: CN111135860B
( 18 ) 一种稀土金属修饰Cu-SSZ-13分子筛及其制备方法和应用, 发明专利, 2020, 第 5 作者, 专利号: CN111135860A
( 19 ) 用于催化净化氮氧化物的铈锡基复合氧化物催化剂、制备方法及其应用, 发明专利, 2021, 第 6 作者, 专利号: CN110947377B
( 20 ) 一种Cu-SSZ-39分子筛及其制备方法和用途, 发明专利, 2019, 第 3 作者, 专利号: CN110510635A
( 21 ) 一种改性Cu-SSZ-13催化剂及其制备方法和用途, 专利授权, 2019, 第 2 作者, 专利号: CN109364989A
( 22 ) 一种钒钛氧化物催化剂及其制备方法和应用, 发明专利, 2018, 第 5 作者, 专利号: CN108568296A
( 23 ) 一种用于NH 3 -SCR反应的复合催化剂及其制备方法和用途, 发明专利, 2018, 第 2 作者, 专利号: CN108097301A
( 24 ) 一种用于NH 3 -SCR反应的复合催化剂及其制备方法和用途, 发明专利, 2018, 第 2 作者, 专利号: CN108097301A
( 25 ) 一种用于氨选择性还原氮氧化物的RTH分子筛催化剂及其制备方法和用途, 发明专利, 2017, 第 2 作者, 专利号: CN107159305A
( 26 ) 一种Cu‑SSZ‑13催化剂的制备方法及其用途, 发明专利, 2017, 第 2 作者, 专利号: CN107115888A
( 27 ) 一种钒钛氧化物催化剂及其制备方法和用途, 发明专利, 2017, 第 4 作者, 专利号: CN106984300A
( 28 ) COMPOSITE ZEOLITE SCR CATALYST, AND PREPARATION METHOD THEREFOR AND USE THEREOF, 发明专利, 2022, 第 2 作者, 专利号: PCT/CN2022/112422
( 29 ) CU-CHA AND H-AEI COMPOSITE CATALYST, AND PREPARATION METHOD THEREFOR AND APPLICATION THEREOF, 发明专利, 2022, 第 2 作者, 专利号: pct/cn2022/112423
( 2 ) 一种负载稀土金属氧化物或过渡金属氧化物的Cu-SSZ-13复合催化剂的制备方法及其应用, 发明专利, 2023, 第 3 作者, 专利号: CN116550376A
( 3 ) 一种负载型CeO
( 4 ) 一种NH
( 5 ) 一种基于电化学的含铜含硅碱性废水的资源化处理方法, 发明专利, 2023, 第 4 作者, 专利号: CN116514309A
( 6 ) 一种兼具氮氧化物吸附和氧化的双功能催化剂及其制备方法与应用, 发明专利, 2022, 第 5 作者, 专利号: CN114984968A
( 7 ) 一种兼具氮氧化物吸附与氧化的催化剂及其制备方法与应用, 发明专利, 2022, 第 5 作者, 专利号: CN115041177A
( 8 ) 一种复合沸石SCR催化剂及其制备方法与应用, 发明专利, 2022, 第 2 作者, 专利号: CN114733564A
( 9 ) 一种Cu-CHA与H-AEI的复合催化剂及其制备方法与应用, 发明专利, 2022, 第 2 作者, 专利号: CN114733563A
( 10 ) 一种氮氧化物吸附催化剂及其制备方法和应用, 发明专利, 2022, 第 2 作者, 专利号: CN114669297A
( 11 ) 一种氮氧化物被动吸附催化剂及其制备方法和应用, 发明专利, 2022, 第 2 作者, 专利号: CN114917896A
( 12 ) 一种适用于高温的脱硝催化剂及其制备方法与应用, 发明专利, 2022, 第 6 作者, 专利号: CN113908826A
( 13 ) 一种用于氨选择性催化还原NO x 的铜基催化剂及其制备方法, 发明专利, 2021, 第 3 作者, 专利号: CN113070097A
( 14 ) 一种Beta分子筛吸附剂及其制备方法和应用, 发明专利, 2021, 第 3 作者, 专利号: CN112892472A
( 15 ) 一种用于氮氧化物被动吸附的吸附剂及其制备方法和用途, 发明专利, 2020, 第 2 作者, 专利号: CN111408341A
( 16 ) 一种Cu-SAPO-34分子筛催化剂、其制备方法和用途, 发明专利, 2020, 第 4 作者, 专利号: CN111195527A
( 17 ) 一种稀土金属修饰Cu-SSZ-13分子筛及其制备方法和应用, 2023, 第 5 作者, 专利号: CN111135860B
( 18 ) 一种稀土金属修饰Cu-SSZ-13分子筛及其制备方法和应用, 发明专利, 2020, 第 5 作者, 专利号: CN111135860A
( 19 ) 用于催化净化氮氧化物的铈锡基复合氧化物催化剂、制备方法及其应用, 发明专利, 2021, 第 6 作者, 专利号: CN110947377B
( 20 ) 一种Cu-SSZ-39分子筛及其制备方法和用途, 发明专利, 2019, 第 3 作者, 专利号: CN110510635A
( 21 ) 一种改性Cu-SSZ-13催化剂及其制备方法和用途, 专利授权, 2019, 第 2 作者, 专利号: CN109364989A
( 22 ) 一种钒钛氧化物催化剂及其制备方法和应用, 发明专利, 2018, 第 5 作者, 专利号: CN108568296A
( 23 ) 一种用于NH 3 -SCR反应的复合催化剂及其制备方法和用途, 发明专利, 2018, 第 2 作者, 专利号: CN108097301A
( 24 ) 一种用于NH 3 -SCR反应的复合催化剂及其制备方法和用途, 发明专利, 2018, 第 2 作者, 专利号: CN108097301A
( 25 ) 一种用于氨选择性还原氮氧化物的RTH分子筛催化剂及其制备方法和用途, 发明专利, 2017, 第 2 作者, 专利号: CN107159305A
( 26 ) 一种Cu‑SSZ‑13催化剂的制备方法及其用途, 发明专利, 2017, 第 2 作者, 专利号: CN107115888A
( 27 ) 一种钒钛氧化物催化剂及其制备方法和用途, 发明专利, 2017, 第 4 作者, 专利号: CN106984300A
( 28 ) COMPOSITE ZEOLITE SCR CATALYST, AND PREPARATION METHOD THEREFOR AND USE THEREOF, 发明专利, 2022, 第 2 作者, 专利号: PCT/CN2022/112422
( 29 ) CU-CHA AND H-AEI COMPOSITE CATALYST, AND PREPARATION METHOD THEREFOR AND APPLICATION THEREOF, 发明专利, 2022, 第 2 作者, 专利号: pct/cn2022/112423
出版信息
发表论文
[1] Yu Fu, Wenqing Ding, Huarong Lei, Yu Sun, Jinpeng Du, Yunbo Yu, Ulrich Simon, Peirong Chen, Yulong Shan, Guangzhi He, Hong He. Spatial Distribution of Brønsted Acid Sites Determines the Mobility of Reactive Cu Ions in the Cu-SSZ-13 Catalyst during the Selective Catalytic Reduction of NO x with NH 3. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY[J]. 2024, 第 9 作者 通讯作者 null(null):
[2] Yingjie Wang, Xiaoyan Shi, Yuxin Wang, Guangyan Xu, Yulong Shan, Yunbo Yu, Hong He. Redispersion of PdOx to Pd ions in Pd/BEA and Pd/ZSM-5 during low-temperature NO adsorption in the presence of H2O and CO. APPLIED CATALYSIS A, GENERAL[J]. 2024, 第 5 作者null(null): http://dx.doi.org/10.1016/j.apcata.2024.119605.
[3] Liu, Zhongqi, Fu, Yu, Shan, Yulong, Zhang, Tongliang, Wang, Yingjie, Du, Jinpeng, Sun, Yu, He, Guangzhi, Shi, Xiaoyan, Yu, Yunbo, He, Hong. Understanding the Hydrothermal Stability of Potential NH3 -SCR Catalyst Cu-KFI Zeolite. ACS CATALYSIS[J]. 2024, 第 3 作者 通讯作者 14(3): 1678-1689, http://dx.doi.org/10.1021/acscatal.3c05155.
[4] Jinpeng Du, Xiaomin Tang, Huang Chi, Jianqi Liu, Yulong Shan, Yan Zhang, Mingsong Ren, Yinhuan Wang, Wenpo Shan, Yunbo Yu, Zheng Anmin, Hong He. Facile one-pot synthesis of Cu-SSZ-39 catalysts with excellent catalytic performance in NH3-SCR reaction. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2024, 第 5 作者 通讯作者 null(null):
[5] Shan Yulong, He Hong. One zeolite for multiple Fe species. NATURE CATALYSIS[J]. 2024, 第 1 作者7(12): 1255-1256, https://www.nature.com/articles/s41929-024-01272-8.
[6] Yu Sun, Tongliang Zhang, Wenqing Ding, Jingjing Liu, Diru Liu, Jinpeng Du, Zhi Liu, Xiaoyan Shi, Yunbo Yu, Peirong Chen, Yan Zhang, Wenpo Shan, Yulong Shan, Hong He. Inhibiting the Formation of Toxic HCN Induced by C3H6 Coexistence and Enhancing C3H6 Resistance of Cu-Zeolite in the NH3-SCR Reaction. ENVIRONMENTAL SCIENCE & TECHNOLOGY[J]. 2024, 第 13 作者 通讯作者 null(null):
[7] Zhuocan Li, Meng Gao, Zhihui Lv, Yulong Shan, Hongwei Li, Guangzhi He, Hong He. Uncovering the dinuclear mechanism of NO2‑involved NH3-SCR over supported V2O5/TiO2 catalysts. ENVIRONMENTAL SCIENCE & TECHNOLOGY[J]. 2023, 第 4 作者null(null):
[8] 薛森, 丁文庆, 韩学旺, 曹贺贺, 张燕, 余运波, 单玉龙, 单文坡. 贵金属中毒对Cu-SSZ-13分子筛NH3-SCR性能的影响. 能源环境保护[J]. 2023, 第 7 作者37(6): 36-42, http://lib.cqvip.com/Qikan/Article/Detail?id=7110972837.
[9] Xiong, Wuwan, Liu, Linhui, Guo, Anqi, Chen, Dongdong, Shan, Yulong, Fu, Mingli, Wu, Junliang, Ye, Daiqi, Chen, Peirong. Economical and Sustainable Synthesis of Small-Pore Chabazite Catalysts for NOx Abatement by Recycling Organic Structure- Directing Agents. ENVIRONMENTAL SCIENCE & TECHNOLOGY[J]. 2023, 第 5 作者57(1): 655-665, http://dx.doi.org/10.1021/acs.est.2c07239.
[10] 何沭纬, 韩颖慧, 徐文斌, 张元勋, 单玉龙, 余运波. 不同能源策略下北京市私有机动车辆CO2排放系统仿真模拟. 综合智慧能源[J]. 2023, 第 5 作者45(8): 26-35, http://lib.cqvip.com/Qikan/Article/Detail?id=7110284082.
[11] Gao, Meng, Li, Zhuocan, He, Guangzhi, Shan, Yulong, Sun, Yu, He, Hong. Unveiling the Origin of Selectivity in the Selective Catalytic Reduction of NO with NH3 over Oxide Catalysts. ENVIRONMENTAL SCIENCE & TECHNOLOGY[J]. 2023, 第 4 作者57(22): 8426-8434,
[12] Chen, Junlin, Shan, Yulong, Sun, Yu, Ding, Wenqing, Xue, Sen, Han, Xuewang, Du, Jinpeng, Yan, Zidi, Yu, Yunbo, He, Hong. Hydrothermal Aging Alleviates the Phosphorus Poisoning of Cu- SSZ-39 Catalysts for NH3-SCR Reaction. ENVIRONMENTAL SCIENCE & TECHNOLOGY[J]. 2023, 第 2 作者 通讯作者 57(10): 4113-4121, http://dx.doi.org/10.1021/acs.est.2c08876.
[13] Tian, Xudong, Shan, Yulong, Zhang, Jian, Yan, Zidi, Sun, Yu, Ding, Wenqing, Yu, Yunbo. The study of Pt/zeolites for CO oxidation: Effects of skeleton structure and Si/Al ratio. CATALYSIS COMMUNICATIONS[J]. 2023, 第 2 作者 通讯作者 178: http://dx.doi.org/10.1016/j.catcom.2023.106679.
[14] Liu, Zhongqi, Shan, Yulong, Han, Shichao, Fu, Yu, Du, Jinpeng, Sun, Yu, Shi, Xiaoyan, Yu, Yunbo, He, Hong. Insights into SO2 Poisoning Mechanisms of Fresh and Hydrothermally Aged Cu-KFI Catalysts for NH3 -SCR Reaction. ENVIRONMENTAL SCIENCE & TECHNOLOGY[J]. 2023, 第 2 作者 通讯作者 57(10): 4308-4317, http://dx.doi.org/10.1021/acs.est.2c09805.
[15] Xu, Guangyan, Shan, Wenpo, Yu, Yunbo, Shan, Yulong, Wu, Xiaodong, Wu, Ye, Zhang, Shaojun, He, Liqiang, Shuai, Shijin, Pang, Hailong, Jiang, Xuefeng, Zhang, Heng, Guo, Lei, Wang, Shufen, Xiao, FengShou, Meng, Xiangju, Wu, Feng, Yao, Dongwei, Ding, Yan, Yin, Hang, He, Hong. Advances in emission control of diesel vehicles in China. JOURNAL OF ENVIRONMENTAL SCIENCES[J]. 2023, 第 4 作者123(1): 15-29,
[16] 单玉龙, 彭悦, 楚碧武, 单文坡, 徐光艳, 陈建军, 余运波, 李俊华, 贺泓. 我国重点行业氮氧化物管控现状及减排策略. 环境科学研究[J]. 2023, 第 1 作者36(3): 431-438,
[17] Li, Daiqiang, Wang, Lian, Lu, Yuqin, Deng, Hua, Zhang, Zhilin, Wang, Yingjie, Ma, Ying, Pan, Tingting, Zhao, Qian, Shan, Yulong, Shi, Xiaoyan, Ma, Jinzhu, He, Hong. New insights into the catalytic mechanism of VOCs abatement over Pt/Beta with active sites regulated by zeolite acidity. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2023, 第 10 作者334(null):
[18] Shan, Yulong, He, Guangzhi, Du, Jinpeng, Sun, Yu, Liu, Zhongqi, Fu, Yu, Liu, Fudong, Shi, Xiaoyan, Yu, Yunbo, He, Hong. Strikingly distinctive NH3-SCR behavior over Cu-SSZ-13 in the presence of NO2. NATURE COMMUNICATIONS[J]. 2022, 第 1 作者13(1): http://dx.doi.org/10.1038/s41467-022-32136-z.
[19] 王莹洁, 石晓燕, 刘忠其, 单玉龙, 石炜, 余运波, 贺泓. The study of Pd-SSZ-13 as low-temperature passive NOx adsorber materials: High dispersal of Pd in small-pore CHA zeolites by thermal treatment. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2022, 第 4 作者SCI(324): 122254, https://doi.org/10.1016/j.apcatb.2022.122254.
[20] Sun, Yu, Fu, Yu, Shan, Yulong, Du, Jinpeng, Liu, Zhongqi, Gao, Meng, Shi, Xiaoyan, He, Guangzhi, Xue, Sen, Han, Xuewang, Yu, Yunbo, He, Hong. Si/Al Ratio Determines the SCR Performance of Cu-SSZ-13 Catalysts in the Presence of NO2. ENVIRONMENTAL SCIENCE & TECHNOLOGY[J]. 2022, 第 3 作者 通讯作者 56(24): 17946-17954, http://dx.doi.org/10.1021/acs.est.2c03813.
[21] Yulong Shan, Jinpeng Du, Yan Zhang, Wenpo Shan, Xiaoyan Shi, Yunbo Yu, Runduo Zhang, Xiangju Meng, FengShou Xiao, Hong He. Selective catalytic reduction of NOx with NH3: opportunities and challenges of Cu-based small-pore zeolites. NATIONAL SCIENCE REVIEW[J]. 2021, 第 1 作者8(10): 134-153, https://www.sciengine.com/doi/10.1093/nsr/nwab010.
[22] Shan, Yulong, Sun, Yu, Li, Yaobin, Shi, Xiaoyan, Shan, Wenpo, Yu, Yunbo, He, Hong. Passive NO Adsorption on Hydrothermally Aged Pd-Based Small-Pore Zeolites (vol 63, pg 944, 2020). TOPICS IN CATALYSIS. 2021, 第 1 作者64(5-6): 466-466, http://dx.doi.org/10.1007/s11244-020-01402-z.
[23] Du, Jinpeng, Shan, Yulong, Sun, Yu, Gao, Meng, Liu, Zhongqi, Shi, Xiaoyan, Yu, Yunbo, He, Hong. Unexpected increase in low-temperature NH3-SCR catalytic activity over Cu-SSZ-39 after hydrothermal aging. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2021, 第 2 作者 通讯作者 294: http://dx.doi.org/10.1016/j.apcatb.2021.120237.
[24] Zhang, Wenshuo, Shi, Xiaoyan, Shan, Yulong, Liu, Jingjing, Xu, Guangyan, Du, Jinpeng, Yan, Zidi, Yu, Yunbo, He, Hong. Promotion effect of cerium doping on iron-titanium composite oxide catalysts for selective catalytic reduction of NOx with NH3. CATALYSIS SCIENCE & TECHNOLOGY[J]. 2020, 第 3 作者10(3): 648-657, https://www.webofscience.com/wos/woscc/full-record/WOS:000514293400027.
[25] Zhu, Na, Shan, Wenpo, Shan, Yulong, Du, Jinpeng, Lian, Zhihua, Zhang, Yan, He, Hong. Effects of alkali and alkaline earth metals on Cu-SSZ-39 catalyst for the selective catalytic reduction of NOx with NH3. CHEMICAL ENGINEERING JOURNAL[J]. 2020, 第 3 作者388: http://dx.doi.org/10.1016/j.cej.2020.124250.
[26] Liu, Kuo, Yan, Zidi, Shan, Wenpo, Shan, Yulong, Shi, Xiaoyan, He, Hong. Quantitative determination of the Cu species, acid sites and NH3-SCR mechanism on Cu-SSZ-13 and H-SSZ-13 at low temperatures. CATALYSIS SCIENCE & TECHNOLOGY[J]. 2020, 第 4 作者10(4): 1135-1150, https://www.webofscience.com/wos/woscc/full-record/WOS:000518579100020.
[27] Du, Jinpeng, Shi, Xiaoyan, Shan, Yulong, Xu, Guangyan, Sun, Yu, Wang, Yingjie, Yu, Yunbo, Shan, Wenpo, He, Hong. Effects of SO2 on Cu-SSZ-39 catalyst for the selective catalytic reduction of NOx with NH3. CATALYSIS SCIENCE & TECHNOLOGY[J]. 2020, 第 3 作者10(5): 1256-1263, https://www.webofscience.com/wos/woscc/full-record/WOS:000536775400033.
[28] Yan, Zidi, Shan, Wenpo, Shi, Xiaoyan, He, Guangzhi, Lian, Zhihua, Yu, Yunbo, Shan, Yulong, Liu, Jingjing, He, Hong. The way to enhance the thermal stability of V2O5-based catalysts for NH3-SCR. CATALYSIS TODAY[J]. 2020, 第 7 作者355: 408-414, http://dx.doi.org/10.1016/j.cattod.2019.07.037.
[29] Shan, Yulong, Shan, Wenpo, Shi, Xiaoyan, Du, Jinpeng, Yu, Yunbo, He, Hong. A comparative study of the activity and hydrothermal stability of Al-rich Cu-SSZ-39 and Cu-SSZ-13. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2020, 第 1 作者264: http://dx.doi.org/10.1016/j.apcatb.2019.118511.
[30] Shan, Yulong, Sun, Yu, Du, Jinpeng, Zhang, Yan, Shi, Xiaoyan, Yu, Yunbo, Shan, Wenpo, He, Hong. Hydrothermal aging alleviates the inhibition effects of NO2 on Cu-SSZ-13 for NH3-SCR. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2020, 第 1 作者275: http://dx.doi.org/10.1016/j.apcatb.2020.119105.
[31] Zhu, Na, Shan, Yulong, Shan, Wenpo, Sun, Yu, Liu, Kuo, Zhang, Yan, He, Hong. Distinct NO2 Effects on Cu-SSZ-13 and Cu-SSZ-39 in the Selective Catalytic Reduction of NOx with NH3. ENVIRONMENTAL SCIENCE & TECHNOLOGY[J]. 2020, 第 2 作者54(23): 15499-15506, http://dx.doi.org/10.1021/acs.est.0c06256.
[32] Wang, Yingjie, Shi, Xiaoyan, Shan, Yulong, Du, Jinpeng, Liu, Kuo, He, Hong. Hydrothermal Stability Enhancement of Al-Rich Cu-SSZ-13 for NH3 Selective Catalytic Reduction Reaction by Ion Exchange with Cerium and Samarium. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH[J]. 2020, 第 3 作者59(14): 6416-6423, https://www.webofscience.com/wos/woscc/full-record/WOS:000526422700006.
[33] Zhang, Juan, Shan, Yulong, Zhang, Ling, Du, Jinpeng, He, Hong, Han, Shichao, Lei, Chi, Wang, Sen, Fan, Weibin, Feng, Zhaochi, Liu, Xiaolong, Meng, Xiangju, Xiao, FengShou. Importance of controllable Al sites in CHA framework by crystallization pathways for NH3-SCR reaction. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2020, 第 2 作者277: http://dx.doi.org/10.1016/j.apcatb.2020.119193.
[34] Du, Jinpeng, Wang, Jingyi, Shi, Xiaoyan, Shan, Yulong, Zhang, Yan, He, Hong. Promoting Effect of Mn on In Situ Synthesized Cu-SSZ-13 for NH3-SCR. CATALYSTS[J]. 2020, 第 4 作者10(12): https://www.webofscience.com/wos/woscc/full-record/WOS:000601726200001.
[35] Du, Jinpeng, Shi, Xiaoyan, Shan, Yulong, Zhang, Wenshuo, Yu, Yunbo, Shan, Wenpo, He, Hong. Investigation of Suitable Templates for One-Pot-Synthesized Cu-SAPO-34 in NOx Abatement from Diesel Vehicle Exhaust. ENVIRONMENTAL SCIENCE & TECHNOLOGY[J]. 2020, 第 3 作者54(13): 7870-7878, https://www.webofscience.com/wos/woscc/full-record/WOS:000548584900018.
[36] Shan, Yulong, Du, Jinpeng, Yu, Yunbo, Shan, Wenpo, Shi, Xiaoyan, He, Hong. Precise control of post-treatment significantly increases hydrothermal stability of in-situ synthesized cu-zeolites for NH3-SCR reaction. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2020, 第 1 作者266: http://dx.doi.org/10.1016/j.apcatb.2020.118655.
[37] Du, Jinpeng, Shi, Xiaoyan, Shan, Yulong, Wang, Yingjie, Zhang, Wenshuo, Yu, Yunbo, Shan, Wenpo, He, Hong. The effect of crystallite size on low-temperature hydrothermal stability of Cu-SAPO-34. CATALYSIS SCIENCE & TECHNOLOGY[J]. 2020, 第 3 作者10(9): 2855-2863, https://www.webofscience.com/wos/woscc/full-record/WOS:000534338900010.
[38] Shi, Xiaoyan, Wang, Yingjie, Shan, Yulong, Yu, Yunbo, He, Hong. Investigation of the common intermediates over Fe-ZSM-5 in NH3-SCR reaction at low temperature by in situ DRIFTS. JOURNAL OF ENVIRONMENTAL SCIENCES[J]. 2020, 第 3 作者94(8): 32-39, http://lib.cqvip.com/Qikan/Article/Detail?id=7102928407.
[39] Yang, Weiwei, Li, Li, Fang, Yarong, Shan, Yulong, Xu, Jue, Shen, Huan, Yu, Yunbo, Guo, Yanbing, He, Hong. Interfacial structure-governed SO2 resistance of Cu/TiO2 catalysts in the catalytic oxidation of CO. CATALYSIS SCIENCE & TECHNOLOGY[J]. 2020, 第 4 作者10(6): 1661-1674, https://www.webofscience.com/wos/woscc/full-record/WOS:000526708900007.
[40] He, Guangzhi, Zhang, Bo, He, Hong, Chen, Xueyan, Shan, Yulong. Atomic-scale insights into zeolite-based catalysis in N2O decomposition. SCIENCE OF THE TOTAL ENVIRONMENT[J]. 2019, 第 5 作者673: 266-271, http://dx.doi.org/10.1016/j.scitotenv.2019.03.481.
[41] Shan, Yulong, Shi, Xiaoyan, Du, Jinpeng, Yu, Yunbo, He, Hong. Cu-exchanged RTH-type zeolites for NH3-selective catalytic reduction of NOx: Cu distribution and hydrothermal stability. CATALYSISSCIENCETECHNOLOGY[J]. 2019, 第 1 作者9(1): 106-115, https://www.webofscience.com/wos/woscc/full-record/WOS:000454918600007.
[42] Shan, Yulong, Shi, Xiaoyan, Du, Jinpeng, Yan, Zidi, Yu, Yunbo, He, Hong. SSZ-13 Synthesized by Solvent-Free Method: A Potential Candidate for NH3-SCR Catalyst with High Activity and Hydrothermal Stability. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH[J]. 2019, 第 1 作者58(14): 5397-5403,
[43] Zhang, Bo, He, Guangzhi, Shan, Yulong, He, Hong. Experimental and DFT study of the adsorption of N2O on transition ion-exchanged ZSM-5. CATALYSIS TODAY[J]. 2019, 第 3 作者327: 177-181, http://dx.doi.org/10.1016/j.cattod.2018.05.008.
[44] Shan, Yulong, Shi, Xiaoyan, Yan, Zidi, Liu, Jingjing, Yu, Yunbo, He, Hong. Deactivation of Cu-SSZ-13 in the presence of SO2 during hydrothermal aging. CATALYSIS TODAY[J]. 2019, 第 1 作者320: 84-90, http://dx.doi.org/10.1016/j.cattod.2017.11.006.
[45] Shan, Yulong, Shi, Xiaoyan, He, Guangzhi, Liu, Kuo, Yan, Zidi, Yu, Yunbo, He, Hong. Effects of NO2 Addition on the NH3-SCR over Small-Pore Cu-SSZ-13 Zeolites with Varying Cu Loadings. JOURNAL OF PHYSICAL CHEMISTRY C[J]. 2018, 第 1 作者122(45): 25948-25953, http://ir.rcees.ac.cn/handle/311016/40808.
[46] Liu, Jingjing, Shi, Xiaoyan, Shan, Yulong, Yan, Zidi, Shan, Wenpo, Yu, Yunbo, He, Hong. Hydrothermal Stability of CeO2-WO3-ZrO2 Mixed Oxides for Selective Catalytic Reduction of NOx by NH3. ENVIRONMENTAL SCIENCE & TECHNOLOGY[J]. 2018, 第 3 作者52(20): 11769-11777, http://ir.rcees.ac.cn/handle/311016/40815.
[2] Yingjie Wang, Xiaoyan Shi, Yuxin Wang, Guangyan Xu, Yulong Shan, Yunbo Yu, Hong He. Redispersion of PdOx to Pd ions in Pd/BEA and Pd/ZSM-5 during low-temperature NO adsorption in the presence of H2O and CO. APPLIED CATALYSIS A, GENERAL[J]. 2024, 第 5 作者null(null): http://dx.doi.org/10.1016/j.apcata.2024.119605.
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[4] Jinpeng Du, Xiaomin Tang, Huang Chi, Jianqi Liu, Yulong Shan, Yan Zhang, Mingsong Ren, Yinhuan Wang, Wenpo Shan, Yunbo Yu, Zheng Anmin, Hong He. Facile one-pot synthesis of Cu-SSZ-39 catalysts with excellent catalytic performance in NH3-SCR reaction. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2024, 第 5 作者 通讯作者 null(null):
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[6] Yu Sun, Tongliang Zhang, Wenqing Ding, Jingjing Liu, Diru Liu, Jinpeng Du, Zhi Liu, Xiaoyan Shi, Yunbo Yu, Peirong Chen, Yan Zhang, Wenpo Shan, Yulong Shan, Hong He. Inhibiting the Formation of Toxic HCN Induced by C3H6 Coexistence and Enhancing C3H6 Resistance of Cu-Zeolite in the NH3-SCR Reaction. ENVIRONMENTAL SCIENCE & TECHNOLOGY[J]. 2024, 第 13 作者 通讯作者 null(null):
[7] Zhuocan Li, Meng Gao, Zhihui Lv, Yulong Shan, Hongwei Li, Guangzhi He, Hong He. Uncovering the dinuclear mechanism of NO2‑involved NH3-SCR over supported V2O5/TiO2 catalysts. ENVIRONMENTAL SCIENCE & TECHNOLOGY[J]. 2023, 第 4 作者null(null):
[8] 薛森, 丁文庆, 韩学旺, 曹贺贺, 张燕, 余运波, 单玉龙, 单文坡. 贵金属中毒对Cu-SSZ-13分子筛NH3-SCR性能的影响. 能源环境保护[J]. 2023, 第 7 作者37(6): 36-42, http://lib.cqvip.com/Qikan/Article/Detail?id=7110972837.
[9] Xiong, Wuwan, Liu, Linhui, Guo, Anqi, Chen, Dongdong, Shan, Yulong, Fu, Mingli, Wu, Junliang, Ye, Daiqi, Chen, Peirong. Economical and Sustainable Synthesis of Small-Pore Chabazite Catalysts for NOx Abatement by Recycling Organic Structure- Directing Agents. ENVIRONMENTAL SCIENCE & TECHNOLOGY[J]. 2023, 第 5 作者57(1): 655-665, http://dx.doi.org/10.1021/acs.est.2c07239.
[10] 何沭纬, 韩颖慧, 徐文斌, 张元勋, 单玉龙, 余运波. 不同能源策略下北京市私有机动车辆CO2排放系统仿真模拟. 综合智慧能源[J]. 2023, 第 5 作者45(8): 26-35, http://lib.cqvip.com/Qikan/Article/Detail?id=7110284082.
[11] Gao, Meng, Li, Zhuocan, He, Guangzhi, Shan, Yulong, Sun, Yu, He, Hong. Unveiling the Origin of Selectivity in the Selective Catalytic Reduction of NO with NH3 over Oxide Catalysts. ENVIRONMENTAL SCIENCE & TECHNOLOGY[J]. 2023, 第 4 作者57(22): 8426-8434,
[12] Chen, Junlin, Shan, Yulong, Sun, Yu, Ding, Wenqing, Xue, Sen, Han, Xuewang, Du, Jinpeng, Yan, Zidi, Yu, Yunbo, He, Hong. Hydrothermal Aging Alleviates the Phosphorus Poisoning of Cu- SSZ-39 Catalysts for NH3-SCR Reaction. ENVIRONMENTAL SCIENCE & TECHNOLOGY[J]. 2023, 第 2 作者 通讯作者 57(10): 4113-4121, http://dx.doi.org/10.1021/acs.est.2c08876.
[13] Tian, Xudong, Shan, Yulong, Zhang, Jian, Yan, Zidi, Sun, Yu, Ding, Wenqing, Yu, Yunbo. The study of Pt/zeolites for CO oxidation: Effects of skeleton structure and Si/Al ratio. CATALYSIS COMMUNICATIONS[J]. 2023, 第 2 作者 通讯作者 178: http://dx.doi.org/10.1016/j.catcom.2023.106679.
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[15] Xu, Guangyan, Shan, Wenpo, Yu, Yunbo, Shan, Yulong, Wu, Xiaodong, Wu, Ye, Zhang, Shaojun, He, Liqiang, Shuai, Shijin, Pang, Hailong, Jiang, Xuefeng, Zhang, Heng, Guo, Lei, Wang, Shufen, Xiao, FengShou, Meng, Xiangju, Wu, Feng, Yao, Dongwei, Ding, Yan, Yin, Hang, He, Hong. Advances in emission control of diesel vehicles in China. JOURNAL OF ENVIRONMENTAL SCIENCES[J]. 2023, 第 4 作者123(1): 15-29,
[16] 单玉龙, 彭悦, 楚碧武, 单文坡, 徐光艳, 陈建军, 余运波, 李俊华, 贺泓. 我国重点行业氮氧化物管控现状及减排策略. 环境科学研究[J]. 2023, 第 1 作者36(3): 431-438,
[17] Li, Daiqiang, Wang, Lian, Lu, Yuqin, Deng, Hua, Zhang, Zhilin, Wang, Yingjie, Ma, Ying, Pan, Tingting, Zhao, Qian, Shan, Yulong, Shi, Xiaoyan, Ma, Jinzhu, He, Hong. New insights into the catalytic mechanism of VOCs abatement over Pt/Beta with active sites regulated by zeolite acidity. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2023, 第 10 作者334(null):
[18] Shan, Yulong, He, Guangzhi, Du, Jinpeng, Sun, Yu, Liu, Zhongqi, Fu, Yu, Liu, Fudong, Shi, Xiaoyan, Yu, Yunbo, He, Hong. Strikingly distinctive NH3-SCR behavior over Cu-SSZ-13 in the presence of NO2. NATURE COMMUNICATIONS[J]. 2022, 第 1 作者13(1): http://dx.doi.org/10.1038/s41467-022-32136-z.
[19] 王莹洁, 石晓燕, 刘忠其, 单玉龙, 石炜, 余运波, 贺泓. The study of Pd-SSZ-13 as low-temperature passive NOx adsorber materials: High dispersal of Pd in small-pore CHA zeolites by thermal treatment. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2022, 第 4 作者SCI(324): 122254, https://doi.org/10.1016/j.apcatb.2022.122254.
[20] Sun, Yu, Fu, Yu, Shan, Yulong, Du, Jinpeng, Liu, Zhongqi, Gao, Meng, Shi, Xiaoyan, He, Guangzhi, Xue, Sen, Han, Xuewang, Yu, Yunbo, He, Hong. Si/Al Ratio Determines the SCR Performance of Cu-SSZ-13 Catalysts in the Presence of NO2. ENVIRONMENTAL SCIENCE & TECHNOLOGY[J]. 2022, 第 3 作者 通讯作者 56(24): 17946-17954, http://dx.doi.org/10.1021/acs.est.2c03813.
[21] Yulong Shan, Jinpeng Du, Yan Zhang, Wenpo Shan, Xiaoyan Shi, Yunbo Yu, Runduo Zhang, Xiangju Meng, FengShou Xiao, Hong He. Selective catalytic reduction of NOx with NH3: opportunities and challenges of Cu-based small-pore zeolites. NATIONAL SCIENCE REVIEW[J]. 2021, 第 1 作者8(10): 134-153, https://www.sciengine.com/doi/10.1093/nsr/nwab010.
[22] Shan, Yulong, Sun, Yu, Li, Yaobin, Shi, Xiaoyan, Shan, Wenpo, Yu, Yunbo, He, Hong. Passive NO Adsorption on Hydrothermally Aged Pd-Based Small-Pore Zeolites (vol 63, pg 944, 2020). TOPICS IN CATALYSIS. 2021, 第 1 作者64(5-6): 466-466, http://dx.doi.org/10.1007/s11244-020-01402-z.
[23] Du, Jinpeng, Shan, Yulong, Sun, Yu, Gao, Meng, Liu, Zhongqi, Shi, Xiaoyan, Yu, Yunbo, He, Hong. Unexpected increase in low-temperature NH3-SCR catalytic activity over Cu-SSZ-39 after hydrothermal aging. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2021, 第 2 作者 通讯作者 294: http://dx.doi.org/10.1016/j.apcatb.2021.120237.
[24] Zhang, Wenshuo, Shi, Xiaoyan, Shan, Yulong, Liu, Jingjing, Xu, Guangyan, Du, Jinpeng, Yan, Zidi, Yu, Yunbo, He, Hong. Promotion effect of cerium doping on iron-titanium composite oxide catalysts for selective catalytic reduction of NOx with NH3. CATALYSIS SCIENCE & TECHNOLOGY[J]. 2020, 第 3 作者10(3): 648-657, https://www.webofscience.com/wos/woscc/full-record/WOS:000514293400027.
[25] Zhu, Na, Shan, Wenpo, Shan, Yulong, Du, Jinpeng, Lian, Zhihua, Zhang, Yan, He, Hong. Effects of alkali and alkaline earth metals on Cu-SSZ-39 catalyst for the selective catalytic reduction of NOx with NH3. CHEMICAL ENGINEERING JOURNAL[J]. 2020, 第 3 作者388: http://dx.doi.org/10.1016/j.cej.2020.124250.
[26] Liu, Kuo, Yan, Zidi, Shan, Wenpo, Shan, Yulong, Shi, Xiaoyan, He, Hong. Quantitative determination of the Cu species, acid sites and NH3-SCR mechanism on Cu-SSZ-13 and H-SSZ-13 at low temperatures. CATALYSIS SCIENCE & TECHNOLOGY[J]. 2020, 第 4 作者10(4): 1135-1150, https://www.webofscience.com/wos/woscc/full-record/WOS:000518579100020.
[27] Du, Jinpeng, Shi, Xiaoyan, Shan, Yulong, Xu, Guangyan, Sun, Yu, Wang, Yingjie, Yu, Yunbo, Shan, Wenpo, He, Hong. Effects of SO2 on Cu-SSZ-39 catalyst for the selective catalytic reduction of NOx with NH3. CATALYSIS SCIENCE & TECHNOLOGY[J]. 2020, 第 3 作者10(5): 1256-1263, https://www.webofscience.com/wos/woscc/full-record/WOS:000536775400033.
[28] Yan, Zidi, Shan, Wenpo, Shi, Xiaoyan, He, Guangzhi, Lian, Zhihua, Yu, Yunbo, Shan, Yulong, Liu, Jingjing, He, Hong. The way to enhance the thermal stability of V2O5-based catalysts for NH3-SCR. CATALYSIS TODAY[J]. 2020, 第 7 作者355: 408-414, http://dx.doi.org/10.1016/j.cattod.2019.07.037.
[29] Shan, Yulong, Shan, Wenpo, Shi, Xiaoyan, Du, Jinpeng, Yu, Yunbo, He, Hong. A comparative study of the activity and hydrothermal stability of Al-rich Cu-SSZ-39 and Cu-SSZ-13. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2020, 第 1 作者264: http://dx.doi.org/10.1016/j.apcatb.2019.118511.
[30] Shan, Yulong, Sun, Yu, Du, Jinpeng, Zhang, Yan, Shi, Xiaoyan, Yu, Yunbo, Shan, Wenpo, He, Hong. Hydrothermal aging alleviates the inhibition effects of NO2 on Cu-SSZ-13 for NH3-SCR. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2020, 第 1 作者275: http://dx.doi.org/10.1016/j.apcatb.2020.119105.
[31] Zhu, Na, Shan, Yulong, Shan, Wenpo, Sun, Yu, Liu, Kuo, Zhang, Yan, He, Hong. Distinct NO2 Effects on Cu-SSZ-13 and Cu-SSZ-39 in the Selective Catalytic Reduction of NOx with NH3. ENVIRONMENTAL SCIENCE & TECHNOLOGY[J]. 2020, 第 2 作者54(23): 15499-15506, http://dx.doi.org/10.1021/acs.est.0c06256.
[32] Wang, Yingjie, Shi, Xiaoyan, Shan, Yulong, Du, Jinpeng, Liu, Kuo, He, Hong. Hydrothermal Stability Enhancement of Al-Rich Cu-SSZ-13 for NH3 Selective Catalytic Reduction Reaction by Ion Exchange with Cerium and Samarium. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH[J]. 2020, 第 3 作者59(14): 6416-6423, https://www.webofscience.com/wos/woscc/full-record/WOS:000526422700006.
[33] Zhang, Juan, Shan, Yulong, Zhang, Ling, Du, Jinpeng, He, Hong, Han, Shichao, Lei, Chi, Wang, Sen, Fan, Weibin, Feng, Zhaochi, Liu, Xiaolong, Meng, Xiangju, Xiao, FengShou. Importance of controllable Al sites in CHA framework by crystallization pathways for NH3-SCR reaction. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2020, 第 2 作者277: http://dx.doi.org/10.1016/j.apcatb.2020.119193.
[34] Du, Jinpeng, Wang, Jingyi, Shi, Xiaoyan, Shan, Yulong, Zhang, Yan, He, Hong. Promoting Effect of Mn on In Situ Synthesized Cu-SSZ-13 for NH3-SCR. CATALYSTS[J]. 2020, 第 4 作者10(12): https://www.webofscience.com/wos/woscc/full-record/WOS:000601726200001.
[35] Du, Jinpeng, Shi, Xiaoyan, Shan, Yulong, Zhang, Wenshuo, Yu, Yunbo, Shan, Wenpo, He, Hong. Investigation of Suitable Templates for One-Pot-Synthesized Cu-SAPO-34 in NOx Abatement from Diesel Vehicle Exhaust. ENVIRONMENTAL SCIENCE & TECHNOLOGY[J]. 2020, 第 3 作者54(13): 7870-7878, https://www.webofscience.com/wos/woscc/full-record/WOS:000548584900018.
[36] Shan, Yulong, Du, Jinpeng, Yu, Yunbo, Shan, Wenpo, Shi, Xiaoyan, He, Hong. Precise control of post-treatment significantly increases hydrothermal stability of in-situ synthesized cu-zeolites for NH3-SCR reaction. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2020, 第 1 作者266: http://dx.doi.org/10.1016/j.apcatb.2020.118655.
[37] Du, Jinpeng, Shi, Xiaoyan, Shan, Yulong, Wang, Yingjie, Zhang, Wenshuo, Yu, Yunbo, Shan, Wenpo, He, Hong. The effect of crystallite size on low-temperature hydrothermal stability of Cu-SAPO-34. CATALYSIS SCIENCE & TECHNOLOGY[J]. 2020, 第 3 作者10(9): 2855-2863, https://www.webofscience.com/wos/woscc/full-record/WOS:000534338900010.
[38] Shi, Xiaoyan, Wang, Yingjie, Shan, Yulong, Yu, Yunbo, He, Hong. Investigation of the common intermediates over Fe-ZSM-5 in NH3-SCR reaction at low temperature by in situ DRIFTS. JOURNAL OF ENVIRONMENTAL SCIENCES[J]. 2020, 第 3 作者94(8): 32-39, http://lib.cqvip.com/Qikan/Article/Detail?id=7102928407.
[39] Yang, Weiwei, Li, Li, Fang, Yarong, Shan, Yulong, Xu, Jue, Shen, Huan, Yu, Yunbo, Guo, Yanbing, He, Hong. Interfacial structure-governed SO2 resistance of Cu/TiO2 catalysts in the catalytic oxidation of CO. CATALYSIS SCIENCE & TECHNOLOGY[J]. 2020, 第 4 作者10(6): 1661-1674, https://www.webofscience.com/wos/woscc/full-record/WOS:000526708900007.
[40] He, Guangzhi, Zhang, Bo, He, Hong, Chen, Xueyan, Shan, Yulong. Atomic-scale insights into zeolite-based catalysis in N2O decomposition. SCIENCE OF THE TOTAL ENVIRONMENT[J]. 2019, 第 5 作者673: 266-271, http://dx.doi.org/10.1016/j.scitotenv.2019.03.481.
[41] Shan, Yulong, Shi, Xiaoyan, Du, Jinpeng, Yu, Yunbo, He, Hong. Cu-exchanged RTH-type zeolites for NH3-selective catalytic reduction of NOx: Cu distribution and hydrothermal stability. CATALYSISSCIENCETECHNOLOGY[J]. 2019, 第 1 作者9(1): 106-115, https://www.webofscience.com/wos/woscc/full-record/WOS:000454918600007.
[42] Shan, Yulong, Shi, Xiaoyan, Du, Jinpeng, Yan, Zidi, Yu, Yunbo, He, Hong. SSZ-13 Synthesized by Solvent-Free Method: A Potential Candidate for NH3-SCR Catalyst with High Activity and Hydrothermal Stability. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH[J]. 2019, 第 1 作者58(14): 5397-5403,
[43] Zhang, Bo, He, Guangzhi, Shan, Yulong, He, Hong. Experimental and DFT study of the adsorption of N2O on transition ion-exchanged ZSM-5. CATALYSIS TODAY[J]. 2019, 第 3 作者327: 177-181, http://dx.doi.org/10.1016/j.cattod.2018.05.008.
[44] Shan, Yulong, Shi, Xiaoyan, Yan, Zidi, Liu, Jingjing, Yu, Yunbo, He, Hong. Deactivation of Cu-SSZ-13 in the presence of SO2 during hydrothermal aging. CATALYSIS TODAY[J]. 2019, 第 1 作者320: 84-90, http://dx.doi.org/10.1016/j.cattod.2017.11.006.
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[46] Liu, Jingjing, Shi, Xiaoyan, Shan, Yulong, Yan, Zidi, Shan, Wenpo, Yu, Yunbo, He, Hong. Hydrothermal Stability of CeO2-WO3-ZrO2 Mixed Oxides for Selective Catalytic Reduction of NOx by NH3. ENVIRONMENTAL SCIENCE & TECHNOLOGY[J]. 2018, 第 3 作者52(20): 11769-11777, http://ir.rcees.ac.cn/handle/311016/40815.
科研活动
科研项目
( 1 ) 移动源尾气净化, 负责人, 国家任务, 2025-01--2027-01
( 2 ) 氢氨内燃机近零排放控制关键材料与技术, 负责人, 国家任务, 2024-12--2027-11
( 3 ) 近零排放高效能柴油车控制技术及示范应用, 参与, 国家任务, 2023-12--2027-03
( 4 ) 铜基小孔分子筛催化剂用于柴油车紧耦合SCR催化剂研究, 负责人, 国家任务, 2023-01--2026-12
( 5 ) 第八届中国科协青年人才托举工程, 负责人, 其他, 2023-01--2026-12
( 6 ) 小孔径脱硝催化剂材料晶化合成工艺与技术, 负责人, 其他, 2022-06--2025-06
( 7 ) 交通节能低碳材料生产应用示范线,小孔分子筛子平台, 负责人, 境内委托项目, 2022-06--2025-05
( 8 ) DOC及SCR催化剂失活与再生机制研究, 负责人, 境内委托项目, 2021-10--2022-12
( 9 ) 在用车排放及运行情况数据分析和深度挖掘服务, 负责人, 境内委托项目, 2020-12--2022-12
( 10 ) NOx控制技术研究, 负责人, 研究所自主部署, 2020-10--2021-10
( 11 ) 高效稳定的新型Cu基小孔分子筛NH3-SCR催化剂研究, 负责人, 国家任务, 2020-01--2022-12
( 2 ) 氢氨内燃机近零排放控制关键材料与技术, 负责人, 国家任务, 2024-12--2027-11
( 3 ) 近零排放高效能柴油车控制技术及示范应用, 参与, 国家任务, 2023-12--2027-03
( 4 ) 铜基小孔分子筛催化剂用于柴油车紧耦合SCR催化剂研究, 负责人, 国家任务, 2023-01--2026-12
( 5 ) 第八届中国科协青年人才托举工程, 负责人, 其他, 2023-01--2026-12
( 6 ) 小孔径脱硝催化剂材料晶化合成工艺与技术, 负责人, 其他, 2022-06--2025-06
( 7 ) 交通节能低碳材料生产应用示范线,小孔分子筛子平台, 负责人, 境内委托项目, 2022-06--2025-05
( 8 ) DOC及SCR催化剂失活与再生机制研究, 负责人, 境内委托项目, 2021-10--2022-12
( 9 ) 在用车排放及运行情况数据分析和深度挖掘服务, 负责人, 境内委托项目, 2020-12--2022-12
( 10 ) NOx控制技术研究, 负责人, 研究所自主部署, 2020-10--2021-10
( 11 ) 高效稳定的新型Cu基小孔分子筛NH3-SCR催化剂研究, 负责人, 国家任务, 2020-01--2022-12