徐文青 研究员
  • 学历/学位: 研究生学历/博士学位
  • 研究方向:

    工业烟气减污协同降碳

  • 邮箱: wqxu@ipe.ac.cn
  • 地址: 北京市海淀区中关村北二街1号
  • 邮编: 100190
  • 课题组网站:

简历介绍

徐文青,研究员/博士生导师,国家自然科学基金青年科学基金项目(A类)获得者。2004年本科毕业于北京科技大学,2009年于中国科学院生态环境研究中心获博士学位,进入中国科学院过程工程研究所工作至今。主要从事工业烟气污染物控制协同碳减排方向研究。

相关研究成果在Nat. Commun.、Angew. Chem. Int. Ed.、Adv. Mater.等期刊发表SCI论文90余篇,参与出版专著3部,授权发明专利70余件,参与编制标准5项。任中国环境科学学会青年科学家分会副主任委员、Greenverse Science期刊编委、The Innovation MaterialscScienceBiomass Utilization期刊青年编委。承担国家重点研发计划项目、国家科技重大专项课题、企业合作项目等。先后入选中科院青年创新促进会、北京市科技新星,获得国家自然科学二等奖(排名第五)及北京市科技进步一等奖、环境保护科技进步一等奖等省/部/学会/协会一等奖5项。

代表论著

1. Yuan Y.§; Wang Y.§; Xu W.*; Wang Y.; Yang Y.; Ma X.; Zhu T.*; Hydroxyl‑mediated SO₂ promotion enables efficient NOx reduction by CO over IrIn/Beta under oxygen‑rich conditions. Nature Communications. 2026, 17, 9020

2. Gao J.; Ma X.; Wu P.; Shen K.; Zhang Y.*; Zhu T.; Xu W.*; Structure-activity relationship of NH3-treated spherical KNbO3 in catalytic COS hydrolysis: oxygen vacancy engineering vs. nitrogen doping. Advanced Functional Materials. 2026, 36, e74999

3. Wang S.; Yang Y.*; Xu W.*; Bai Z.; Su F.; Wang Y.; Bai D.; Zhu T.; Crucial role of active hydroxyl in CO selectivity for integrated CO2 capture and electrocatalytic reduction. Carbon Neutrality. 2026, 5, 4

4. Chen W.§; Wang Y.§; Xu W.*; Li C.; Yang Y.; Zhu T.; Identifying spatially segregated Ir sites within ZSM-5 for enhanced redox cycle in NOx reduction by CO. Angewandte Chemie International Edition. 2025, 64, e202425312

5. Zhang X.§; Wang Y.§; Xu W.*; Jia L.*; Su F.; Zhu T.; Co0 and CoOx nanoclusters encapsulated in carbon microspheres for the low-temperature enhanced reduction of NOx by CO. Advanced Functional Materials. 2025, 35, 2424956

6. Geng Z.; Yang Y.; Xu W.*; Wang Y.; Li Y.; Li C.; Liu J.; Zhu T. Regulating WOx coordination environment improves proton transfer for catalytic amine regeneration in CO2 capture. Green Energy & Environment. 2025, 10, 1085

7. Liu H.; Wang Y.; Xu W.*; Yang Y.; Yang J.; Li C.; Zhu T.; Unraveling the synergistic mechanism of Ir species with various electron densities over Ir/ZSM-5 catalyst enables high-efficiency NO reduction by CO. Environmental Science & Technology. 2024, 58, 12082-12090

8. Xu W.§*; Wang Y.§; He H.; Yang J.; Yang Y.; Ma J.; Li C.; Zhu T.*; Insight into hydroxyl groups in anchoring Ir single-atoms on vacancy-deficient rutile TiO2 supports for selective catalytic oxidation of ammonia. Applied Catalysis B: Environmental and Energy. 2024, 345, 123684

9. Ji Y.§*; Liu S.§; Zhu H.§; Xu W.*; Jiang R.; Zhang Y.; Yu J.; Chen W.; Jia L.; Jiang J.*; Zhu T.; Zhong Z.; Wang D.; Xu G.; Su F.*; Isolating contiguous Ir atoms and forming Ir-W intermetallics with negatively charged Ir for efficient NO reduction by CO. Advanced Materials. 2022, 34, 2205703

10. Zhang T.§; Wang W.§; Gu F.*; Xu W.*; Zhang J.; Li Z.*; Zhu T.; Xu G.; Zhong Z.; Su F.*; Enhancing the low-temperature CO2 methanation over Ni/La-CeO2 catalyst: The effects of surface oxygen vacancy and basic site on the catalytic performance. Applied Catalysis B: Environmental. 2022, 312, 121385