黄燕 教授 博士 北京市 研究领域: 新能源 研究方向: 面向国家“碳达峰碳中和”的双碳战略以及新能源发展的重大需求,致力于开发化工新能源材料和化工吸附分离材料,并推动全流程自动化的智慧安全低碳化工生产的实现。具体研究内容包括以下几方面: 1.面向化工新能源领域材料的开发 能源材料(碳基及其复合材料等) 能源转换(燃料电池、光水解及CO2还原等)能源存储(超级电容器、锌离子电池及新型电池) 2.化工吸附分离材料的开发 3.智慧安全低碳化工 所在单位: 北京化工大学

基本信息

所在单位:
北京化工大学
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
工作经历:
2024.01-至今        北京化工大学有机无机复合材料国家重点实验室  教授
2016.07-2023.12   北京化工大学有机无机复合材料国家重点实验室 副教授 
2014.06-2016.06   北京化工大学化学工程学院 科研|外事助理
2011.01-2012.01    国家科技部基础研究司
2010.06-2014.06   北京化工大学有机无机复合材料国家重点实验室  办公室主任
专家荣誉:
1.北京化工大学优秀班主任
2.北京化工大学先进个人

科研能力

研究领域:
新能源
研究方向:
面向国家“碳达峰碳中和”的双碳战略以及新能源发展的重大需求,致力于开发化工新能源材料和化工吸附分离材料,并推动全流程自动化的智慧安全低碳化工生产的实现。具体研究内容包括以下几方面:
1.面向化工新能源领域材料的开发
能源材料(碳基及其复合材料等)
能源转换(燃料电池、光水解及CO2还原等)能源存储(超级电容器、锌离子电池及新型电池)
2.化工吸附分离材料的开发
3.智慧安全低碳化工
英文标签:
Oxygen Reduction Reaction;Adsorption;Oxygen Evolution Reaction;Zn-air Battery;Bifunctional Electrocatalysts;Biomass;Biochar;Wastewater Treatment;Dye Removal;Mass Transfer
论文著作:
1. Heavy Metal Ion Removal of Wastewater by Zeolite-Imidazolate Frameworks
Yan Huang; Xiaofei Zeng; Lingling Guo; Jianhui Lan; Liangliang Zhang; Dapeng Cao
Separation and Purification Technology, 2017

2. Biochar from microwave pyrolysis of biomass: A review
Jing Li; Jianjun Dai; Guangqing Liu; Hedong Zhang; Zuopeng Gao; Jie Fu; Yanfeng He; Yan Huang
Biomass and Bioenergy, 2016

3. Cobalt-Nitrogen-Doped Ordered Macro-/Mesoporous Carbon for Highly Efficient Oxygen Reduction Reaction
Tingting Sun; Lianbin Xu; Shengyu Li; Wenxia Chai; Yan Huang; Yushan Yan; Jianfeng Chen
APPLIED CATALYSIS B-ENVIRONMENTAL, 2016

4. Biochar Applications and Modern Techniques for Characterization
Farrukh Raza Amin; Yan Huang; Yanfeng He; Ruihong Zhang; Guangqing Liu; Chang Chen
Clean Technologies and Environmental Policy, 2016

5. Adsorption Removal of Pollutant Dyes in Wastewater by Nitrogen-doped Porous Carbons Derived from Natural Leaves
Jun Chen; Xiaosu Wang; Yan Huang; Shanshan Lv; Xiaohua Cao; Jimmy Yun; Dapeng Cao
Engineered Science, 2018

6. High Thermoelectric Performances of Monolayer SnSe Allotropes
Zi-Yu Hu; Kai-Yue Li; Yong Lu; Yan Huang; Xiao-Hong Shao
Nanoscale, 2017

7. Iron Oxide with Facilitated O2– Transport for Facile Fuel Oxidation and CO2 Capture in a Chemical Looping Scheme
Nathan L. Galinsky; Yan Huang; Arya Shafiefarhood; Fanxing Li
ACS sustainable chemistry & engineering, 2013

8. Bio-energy Conversion Performance, Biodegradability, and Kinetic Analysis of Different Fruit Residues During Discontinuous Anaerobic Digestion
Chen Zhao; Hu Yan; Yan Liu; Yan Huang; Ruihong Zhang; Chang Chen; Guangqing Liu
WASTE MANAGEMENT, 2016

9. The Strain Induced Synergistic Catalysis of FeN4 and MnN3 Dual-Site Catalysts for Oxygen Reduction in Proton- /Anion- Exchange Membrane Fuel Cells
Shiqing Huang; Zelong Qiao; Panpan Sun; Kangwei Qiao; Kun Pei; Liu Yang; Haoxiang Xu; Shitao Wang; Yan Huang; Yushan Yan; Dapeng Cao
Applied Catalysis B Environment and Energy, 2022

10. Ultrastable Hydrogen Evolution Electrocatalyst Derived from Phosphide Postmodified Metal-Organic Frameworks
Yuanhui Cheng; Jianing Guo; Yan Huang; Zhijian Liao; Zhonghua Xiang
Nano Energy, 2017
发明专利:
1.Trimetallic-Organic Framework-Derived Ni-Doped MnO/PC as cathodes for High-Performance aqueous zinc-ion batteries[J]. Chem. Eng. J., 2023,478,147411.
2. Synegistic H+/Zn2+ co-insertion mechanism in vanadium trioxide composited on carbon nanotubes cathode for aqueous zinc ion batteries[J]. J. Alloys. Comp, 2023, 945:169271.
3. Ultrastable hydrated vanadium dioxide cathodes for high-performance aqueous zinc ion batteries H+/Zn2+ Co-insertion mechanism[J]. J. Mater. Chem. A, 2022,10, 22194-22204.
4. Facile  synthesis of Fe2P/Co embedded trifunctional electrocatalyst for high-performance anion exchange membrane fuel cells, rechargeable Zn–air batteries, and overall water splitting. J. Mater. Chem. A, 2022, 10, 16037−16045.
5. Electroless deposition of RuPd nanoparticles on porous carbon for hydrogen evolution in acid and alkaline media[J]. Sustain. Energ. Fuels, 2022,6, 2165-2169 (SCI,IF:6.4)
6. Covalent organic polymer derived N–doped carbon confined FeNi alloys as bifunctional oxygen electrocatalyst for rechargeable zinc-air battery[J]. Int. J. Hydrog. Energy, 2022,47, 16025-16035.
7. MOF-derived CoN/CoFe/NC bifunctional electrocatalysts for zinc-air batteries[J].Appl. Surf. Sci., 2022, 582, 152375.
8. A dual metal-organic framework strategy for synthesis of FeCo@NC bifunctional oxygen catalysts for clean energy application[J].Chin. J. Chem. Eng., 2022, 43, 161-168.
9. Improved uniformity of Fe3O4 nanoparticles on Fe–N–C nanosheets derived from a 2D covalent organic polymer for oxygen reduction[J]. Int. J. Hydrog. Energy, 2021,46, 27576-27584.
10. A telluride-doped porous carbon as highly efficient bifunctional catalyst for rechargeable Zn-air batteries[J]. Electrochim. Acta,2021.139606.
科研项目:
主要从事新能源材料和化工吸附分离材料的设计与实验研究,Angew. Chem. Int. Ed.、Chem. Eng. J、J. Mater. Chem. A等期刊上发表学术论文40余篇,主持国家重点研发计划子课题、国家自然科学基金及企业合作课题50余项。
2021年1月始从事碳达峰碳中和系列标准体系的制定、碳排放管理员职业技能标准、培训教材的撰写、石化化工企业碳排放盘查、石化化工行业重点产品碳排放基准研究及石化化工行业二氧化碳达峰方案研究。在社会服务工作上,面向企业开展绿色制造体系第三方评价、节能诊断、能源管理体系及低碳发展路径咨询等服务,协助政府开展工业节能与绿色低碳发展政策、标准和规范研究,支撑工业节能与绿色发展,部分科研项目如下:
1.国家自然科学基金青年基金,21905016,金属有机框架衍生的双功能氧催化剂多尺度结构与性能的协同调控,2019.8-2022.12
2. 国家重点研发计划,2019YFA0210300,下一代燃料电池关键纳米材料与器件,2019.7-2024.6
3. 国家重点研发计划,ZK20240043,低成本高效碱土基金属制氧吸附剂开发与规模化制备,2023.11-2026.11
4. 石化和化工行业碳中和实现路径与方案研究,2023-2024
5. 辽宁省石化化工行业碳足迹研究,2022.8
6. 集团公司能源管理体系咨询,2022.8
7. 碳中和评价理论与方法 II (行业与企业标准建设),2021.4-2021.12
8. 盛虹炼化碳排放评估及“十四五” 碳中和规划研究项目,2021.8-2022.3
9. 绿色制造体系评价,2020.4-2020.12
10. 世界级化工产业集群与世界级化工园区研究,2019.12-2020.4
11. 多孔碳材料的制备及多功能应用,2017.11-2019.11
12. 化工新材料的分子设计及可控制备,2018.1-2023.1

项目合作

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