黄海保 教授 博士 新疆维吾尔自治区 研究领域: 精细化工 研究方向: 1.大气污染控制 2. VOCs废气和恶臭异味治理 3. 环境催化材料 4. 碳减排和资源化 所在单位: 新疆大学

基本信息

所在单位:
新疆大学
机构细分:
化工学院
单位类型:
高等院校
职务:
教授
职称:
教授
最高学历:
博士
教育经历:
1997-2001  华南理工大学,学士
2003-2008  华南理工大学,博士
工作经历:
2001-2003  华南理工大学,教师
2008-2009  清华大学,博士后研究员
2009-2012  香港大学,博士后/高级研究员
2011.6~8   the University of Adelaide (Australia),高级访问学者
2012-2018 中山大学,副教授、博导(2016)
2018-2023 中山大学,教授/博导,大气污染控制学科带头人
2017-2023 粤港空气污染控制研究中心主任、广东省室内空气污染控制工程技术研究中心主任
2024年~  新疆大学化工学院 教授/博导
专家荣誉:
国家重大人才工程(排名第一)
广东省科学技术发明二等奖 (排名第一)
全国VOCs监测与治理创新成果优秀人物(排名第一)
中国环境科学学会青年科技奖(排名第一)
广东省环境技术进步奖一等奖 (排名第一)
广东省课程思政优秀案例二等奖(排名第一)

科研能力

研究领域:
精细化工
研究方向:
1.大气污染控制
2. VOCs废气和恶臭异味治理
3. 环境催化材料
4. 碳减排和资源化
论文著作:
1. Exceptional ozone decomposition over δ-MnO2/AC under entire humidity environment, Environmental Science & Technology, 2023, 57, 46, 17727–17736.
2.Photocatalytic Oxidation for Volatile Organic Compounds Elimination: From Fundamental Research to Practical Applications, Environmental Science & Technology, 2022,56, 16582-16601.
3.Tunable Interfacial Electronic Pd-Si Interaction Boosts Catalysis via Accelerating O2 and H2O Activation, JACS Au, 2023, 3, 1230-1240. (封面论文)
4. Deep Oxidation of Chlorinated VOCs by Efficient Catalytic Peroxide Activation over Nanoconfined Co@NCNT Catalysts, Environmental Science & Technology, 2024, 58, 3, 1625-1635.
5. Surface Hydroxyl and Oxygen Vacancies Engineering in ZnSnAl LDH: Synergistic Promotion of Photocatalytic Oxidation of Aromatic VOCs, Environmental Science & Technology, 2024, 58, 4029-4464. (封面论文)
6. Double-confined ultrafine cobalt clusters for efficient peroxide activation, JACS Au,2023, 3, 1496-1506.
7. Deep photocatalytic oxidation of aromatic VOCs on ZnSn LDH: promoting role of electron enrichment of surface hydroxyl, ACS Catalysis,2023, 13,7857-7867. (封面论文)
8. Potassium-modulated δ-MnO2 as robust catalysts for formaldehyde oxidation at room temperature, Applied Catalysis B: Environmental, 2020, 260, 118210.
9. Highly efficient ozone decomposition against harsh environments over long-term stable amorphous MnOx catalysts. Applied Catalysis B: Environmental, 2022, 309, 121235.
10. Effective regulation of surface bridging hydroxyls on TiO2 for superior photocatalytic activity via ozone treatment. Applied Catalysis B: Environmental, 2022, 304, 120952.
11. Accelerated iron cycle inducing molecular oxygen activation for deep oxidation of aromatic VOCs in MoS2 co-catalytic Fe3+/PMS system. Applied Catalysis B: Environmental, 2022, 309, 121235.
12. The deactivation mechanism of toluene on MnOx-CeO2 SCR catalyst, Applied Catalysis B: Environmental, 2020, 277, 119257.
13. One-step synthesis of sludge-derived MnOx catalysts for highly efficient removal of gaseous ozone from industrial flue gas, Applied Catalysis B: Environment, 2024, 345, 123696.
14. Promotional role of Mn doping on catalytic oxidation of VOCs over mesoporous TiO2 under vacuum ultraviolet (VUV) irradiation, Applied Catalysis B: Environmental, 2018, 220, 78-87.
Surface-bound radicals generated from cobalt single-atom catalyst: Mechanism of boosting Fenton-like reactions, Chemical Engineering Journal, 2023, 461, 141920.
16. Harnessing air-water interface to generate interfacial ROS for ultrafast environmental remediation, Nature Communications, 2024, 15, 8860.
17. Efficient catalytic elimination of toxic volatile organic compounds via advanced oxidation process wet scrubbing with bifunctional cobalt sulfide/activated carbon catalysts, Environmental Science & Technology, 2024, 58, 8846-8856.
18. Efficient ozone elimination over MnO2 via double moisture-resistance protection of active carbon and CeO2, Environmental Science & Technology, 2024, 58, 12091-12100.
19. A Critical Review of Deep Oxidation of Gaseous Volatile Organic Compounds via Aqueous Advanced Oxidation Processes, Environmental Science & Technology, 2024, doi: 10.1021/acs.est.4c07202.
20. Mechanistic insight into the mutual-effect and key intermediate during methanol accelerating toluene decomposition over Co-spinel catalyst revealed by PTR-TOF-MS and DFT calculation, Applied Catalysis B: Environment and Energy, 2024, 353, 124075.
发明专利:
1. 一种臭氧催化氧化催化剂及其制备方法和应用,专利号2021104444001
2. 一种无定形氧化硅负载单原子钴催化剂及其制备方法和应用,专利号2021104019045
3.一种高分散钴铁双金属催化剂及其制备方法和应用,专利号2021103738101
4. 一种非晶态锰氧化物催化剂及其制备方法和应用,专利号2019101953515
5. 一种δ-MnO2/AC复合催化剂及其制备方法和应用,专利号2022107840832
科研项目:
1. 国家重点研发计划项目
2.国家自然科学基金委员会与香港联合科研资助基金(NSFC-RGC)
3. 国家自然科学基金 (4项)
4.广东省科技厅-香港创新署联合基金(粤港联合创新,GD-ITF)
5.企业委托项目

项目合作

合作意向:
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