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大氣污染與控制教研所

陳建軍

郵箱:chenjianjun@tsinghua.edu.cn

電話:010-62771093

地點:bevictor伟德官网環境節能樓117信箱

教育背景

09/2000-06/2004           複旦大學 環境科學與工程系 學士

09/2004-06/2007           bevictor伟德官网 環境科學與工程系 碩士

10/2011-12/2014           法國卡昂大學 催化與化學光譜實驗室 博士



工作履曆

10/2016-至今  bevictor伟德官网,副研究員


學術兼職

Nature Catalysis, Angewandte Chemie, Applied Catalysis B: Environmental, ACS catalysis 等期刊審稿人。


研究領域

煙氣多污染物協同控制;

CO2捕集和資源化利用;




研究概況

1. 主持/參與主要項目

1) 生物質鍋爐煙氣多污染物短流程協同控制技術研究,國家重點研發計劃課題,起止日期202210-202603,課題複負責人。

2) 工業煙氣除塵脫硝一體化濾料開發及多污染物協同脫除機理研究,國家自然科學基金委面上項目,起止日期20210101~20241231,項目負責人。

3) 重點行業多介質碳污排放協同控源策略研究,中國工程院戰略研究與咨詢項目,起止日期202210-202409,核心/主要研究人員。

4) 氮氧化物和二噁英低溫協同脫除催化劑研制和反應機理研究,國家自然科學基金委面上項目,起止日期20190101~20221231,項目負責人。

5) CoMo基催化劑MoS2的形貌調控對活性中心的形成和性能的影響研究,國家自然科學基金委青年項目,起止日期20170101~20191231,項目負責人。

6) 玻璃窯煙氣SCR脫硝技術适應性研究,中建材蚌埠玻璃工業設計研究院有限公司,起止日期20170701~20200630,課題負責人。

7) 基于堿性位控制策略的新型抗硫LT-SCR催化劑開發,國家重點研發計劃課題,起止日期20160701~20190630, 課題負責人。

8) bevictor伟德官网—佛山先進制造研究院專項,佛山市人民政府,起止日期:20180301~2023022,課題負責人。

9) 重點行業NOx管控現狀及深度減排策略研究,生态環境部大氣治理攻關專項(總理基金項目),起止日期:20201201~20210331,課題負責人。

2. 成果轉化

1) 【成果編号:2021170】,一種三維分級陶瓷催化濾管除塵脫硝一體化技術,普通許可浙江緻遠環境科技有限公司實施,許可期限10年,許可範圍限中國境内

2) 【成果編号:2021152】,一種揮發性有機物氧化催化劑及其制備方法,普通許可江蘇中創清源科技有限公司實施,許可期限3年,許可範圍限中國境内


獎勵與榮譽

  1. 江西省科技進步二等獎(2022

  2. 江蘇省bevictor伟德官网校友會傑出貢獻獎(2021

  3. 國家科技進步一等獎(2020

  4. 中國環境保護協會環境科技進步特等獎(2019年)

  5. 47屆日内瓦國際發明展金獎(2019年)

  6. bevictor伟德官网先進集體“大氣複合污染治理團隊”(2019年)

  7. 中國石油和化學工業聯合會科技進步一等獎(2017年)

  8. 鹽城市“515” 領軍人才(2017年)

  9. bevictor伟德官网優秀畢業生(2007年)



學術成果

1. 近五年代表論文(*通訊作者,#共同一作)

(1) Jianjun Chen#, Shangchao Xiong#* , Haiyan Liu, Jianqiang Shi, Jinxing Mi, Hao Liu, Zhengjun Gong, Laetitia Oliviero, Françoise Maugé, Junhua Li*. Reverse oxygen spillover triggered by CO adsorption on Sn-doped Pt/TiO2 for low-temperature CO oxidation. Nature Communications, 2023.14, 3477.

(2) Xiaoqing Liu#, Jinxing Mi#, Lin Shi, Haiyan Liu, Jun Liu, Yun Ding, Jianqiang Shi, Minghua He, Zisha Wang, Shangchao Xiong, Qinfang Zhang, Yuefeng Liu, Zhong-Shuai Wu, Jianjun Chen*, Junhua Li. In situ modulation of A-site vacancies in LaMnO3.15 perovskite for surface lattice oxygen activation and boosted redox reactions. Angewandte Chemie International Edition, 2021, 60, 26747–26754. (hot paper)

(3) Jiaying Xing#, Qitong Xue#, Jianjun Chen*, Jinxing Mi, Xiaoping Chen, Jianqiang Shi, Zhiming Liu, Junhua Li. Potential risk of significant N2O emission without changing NOx conversion on commercial V2O5/TiO2 catalyst under working conditions. Environmental Science & Technology, 2023

(4) Jin Yuan#, Jianjun Chen#, Zhen Wang, Rongqiang Yin, Xiao Zhu, Kun Yang, Yue Peng, and Junhua Li*. Identification of Active Sites over Metal-Free Carbon Catalysts for Flue Gas Desulfurization. Environmental Science & Technology, 2023

(5) Jin Yuan, Zhen Wang, Jun Liu, Junhua Li, Jianjun Chen*. Potential risk of NH3 slip arisen from catalytic unactive site in selective catalytic reduction of NOx with metal-free carbon catalysts. Environmental Science & Technology, 2023, 57(1), 606–614.

(6) Hao Liu, Shan Yang, Guimin Wang, Haiyan Liu, Yue Peng, Chuanzhi Sun, Junhua Li*, Jianjun Chen*. Strong Electronic Orbit Coupling between Cobalt and Single-atom Praseodymium for Boosted Nitrous Oxide Decomposition on Co3O4 Catalyst. Environmental Science & Technology, 2022, 56, 16325-16335.

(7) Gongda Chen, Jianjun Chen*, Xiaoping Chen, Rongqiang Yin, Kezhi Li, and Junhua Li. Monolith or powder: unproper sample pretreatment may mislead the understanding of industrial V2O5-WO3/TiO2 catalysts operated in stationary resources. Environmental Science & Technology, 2022, 56, 16394−16399.

(8) Jianqiang Shi, Jianjun Chen*, Shangchao Xiong, Jinxing Mi, Hao Liu, Zhen Wang, Haiyan Liu, Jiancheng Wang, Junhua Li. Structure-Directing Role of Support on Hg0 Oxidation over V2O5/ TiO2 Catalyst Revealed for NOx and Hg0 Simultaneous Control in an SCR Reactor. Environmental Science & Technology, 2022, 56, 9702−9711.

(9) Shangchao Xiong, Jianjun Chen*, Hao Liu, Xiaoping Chen, Wenzhe Si, Zhengjun Gong, Yue Peng, and Junhua Li. Like Cures like: Detoxification Effect between Alkali Metals and Sulfur over the V2O5/TiO2 deNOx Catalyst. Environmental Science & Technology, 2022, 56, 3739−3747.

(10) Hao Liu, Jianjun Chen*, Ya Wang, Rongqiang Yin, Wenhao Yang, Guimin Wang, Wenzhe Si, Yue Peng, and Junhua Li. Interaction Mechanism for Simultaneous Elimination of Nitrogen Oxides and Toluene over the Bifunctional CeO2−TiO2 Mixed Oxide Catalyst. Environmental Science & Technology, 2022. 56, 4467−4476. (ESI 高被引)

(11) Gongda Chen, Shangchao Xiong, Xiaoping Chen, Xuefeng Chu, Rongqiang Yin, Changdong Liu, Jianjun Chen*, Junhua Li. Penetration of arsenic and deactivation of a honeycomb V2O5-WO3/TiO2 catalyst in a glass furnace. Environmental Science & Technology, 2021, 55, 11368-11374.(封面論文)

(12) Shangchao Xiong, Jianjun Chen*, Nan Huang Shijian Yang, Yue Peng, Junhua Li. Balance between Reducibility and N2O Adsorption Capacity for the N2O Decomposition: CuxCoy Catalysts as an Example. Environmental Science & Technology. 2019, 53(17), 10379-10386.

(13) Hao Liu, Chuan Gao, Jianjun Chen*, Jinxing Mi, Shan Yang, Deli Chen, Wenzhe Si, Yue Peng, Chuanzhi Sun, Junhua Li*. Optimized Local Geometry and Electronic Structure of MoO3/CeO2 Catalyst by Adding Copper Cations for Boosted Nitrogen Oxide Reduction Performance. Applied Catalysis B: Environmental, 332(2023)122742.

(14) Rongqiang Yin#, Jianjun Chen#, Liang Shan, Jianqiang Shi, Kun Yang, Hao Liu, Junhua Li*. Prominent difference in the deactivation rate and mechanism of V2O5/TiO2 under H2S or SO2 during selective catalytic reduction of NOx with NH3. Applied Catalysis B: Environmental, 2023, 328, 122529.

(15) Wenzhe Si, Haiyan Liu, Tao Yan, Hui Wang, Chi Fan, Shangchao Xiong, Ziqi Zhao, Yue Peng, Jianjun Chen*, Junhua Li. Sn-doped rutile TiO2 for vanadyl catalysts: Improvements on activity and stability in SCR reaction. Applied Catalysis B:  Environmental, 2020, 269, 118797.

(16) Shangchao Xiong, Jianjun Chen*, Nan Huang, Tao Yana, Yue Peng, Junhua Li*. The poisoning mechanism of gaseous HCl on low-temperature SCR catalysts: The MnOx−CeO2 as an example. Applied Catalysis B: Environmental, 2020, 267, 118668.

(17) Rongqiang Yin, Jianjun Chen*, Jinxing Mi, Haiyan Liu, Tao Yan, Liang Shan, Junyu Lang, Junhua Li. Breaking the activity-selectivity trade-off for nitric oxide and chlorobenzene simultaneously catalytic elimination via FeVO4¬-Fe2O3 interfacial charge transfer. ACS Catalysis, 2022, 12, 3797−3806.

(18) Jin Yuan, JinXing Mi, Rongqiang Yin, Tao Yan, Hao Liu, Xiaoping Chen, Jun Liu, Wenzhe Si, Yue Peng, Jianjun Chen*, and Junhua Li*. Identification of Intrinsic Active Sites for the Selective Catalytic Reduction of Nitric Oxide on Metal-Free Carbon Catalysts via Selective Passivation. ACS Catalysis, 2022, 12, 1024−1030.

(19) Tao Yan, Qi Liu, Shihao Wang, Gang Xu*, Minghong Wu, Jianjun Chen*, Junhua Li. Promoter rather than inhibitor: phosphorus incorporation accelerates the activity of V2O5WO3/TiO2 catalyst for selective catalytic reduction of NOx by NH3. ACS Catalysis, 2020, 10, 2747-2753.

(20) Xuekun Jin, Minghua He, Fengjuan Chen*, Kezhi Li, Junyong Min, Ziyu Wang, Junhua Li, Jianjun Chen*, Trace Cr(OH)3 modified α-MnO2electrocatalyst intercalated by Ag+ with superior activity and stability for oxygen reduction reaction. Chemical Engineering Journal 464 (2023) 142712.






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