研究员
余广炜(Guangwei YU) / 研究员
研究方向:固废低碳资源化及污染物控制
联系方式:0592-6190773
电子邮件:gwyu@iue.ac.cn

简  历:

余广炜 博士,研究员、博士生导师,中国科学院城市环境研究所城市矿产绿色开发研究组长、福建省城市固废资源化工程技术研究中心副主任;福建省高层次人才(B类)、厦门市高层次人才(B类)、新世纪百千万人才工程北京市级人选。2005年于东北大学获得博士学位。曾在首钢技术研究院、首钢能源环保部工作,担任资环所所长助理、设计技术中心副主任、首钢专业技术带头人、首钢集团技术专家等职。主要从事固废低碳资源化及污染物控制研究,近期重点围绕有机固废热化学转化、无机固废低碳\负碳建材化,以及一般固废与危废的协同处置等开展技术开发、机理解析与示范应用。发表SCI论文30篇、中文核心期刊论文10篇;以第1发明人获得授权发明专利26项、实用新型16项、国际PCT专利3项、软件著作权1项;多项技术实现产业化应用,曾获省部级科技进步奖7项。现兼任厦门大学兼职教授、厦门市海洋专家组成员、福建省环境影响评价专家、中国硅酸盐学会固废与材料分会危废学术委员会委员等。

获奖及荣誉:

1.     北京市科技进步二等奖(2004)

2.     中国冶金科技进步二等奖(2005)

3.     北京市科技进步二等奖(2006)

4.     中国专利优秀奖(2006)

5.     北京市经济技术创新标兵(2008)

6.     国家环境保护部科技进步三等奖(2009)

7.     北京市优秀青年知识分子(2011)

8.     教育部科技进步二等奖(2013)

9.     厦门市科技进步一等奖(2021)

10.    福建省科技进步三等奖(2022)

代表性论著:

1. Karim N.; Yu, G.W. *; Muhammad N.; Fang J.; Wisal A.,Heavy metals stabilization in lead zinc mine tailings by using mechanical, mechano-chemical, and microwave oven activation; tailing waste utilization in building materials, Materials and Structures, 2025, 58, 52.

2. Zhang Q.; Yu, G.W. *; Hong R.C., Yu C., Electrochemical desalination of sea sand using Ti/PbO2 electrodes: Influencing factors, parameter optimization and removal mechanism, Desalination, 2025, 601,118576.

3. Muhammad N.; Yu, G.W. *; Ehiaghe A. E. ;Kunthea Y.,One step hydrothermal synthesis of green iron-modiffed catalyst by food waste digestate biogas residue for ozonation of ciproffoxacin: Characterization, degradation mechanism, DFT study and reactive oxygen species role, Journal of Environmental Chemical Engineering, 2025, 13, 115236. 

4. Jiang, R.Q.; Li, X.L.; Li, C.J.; Fang, J.T.; Xing, Z.J.; Yu, G.W*., An insight into the diazo dye Direct Red 23 adsorption on Ca-modified biochar in an aqueous solution: An investigation based on DFT and molecular dynamics. Separation and Purification Technology, 2025, 354, 128655.

5. Zhang, Q.; Yu, G.W. *; Hong, R.C.; Qiu, W.D.; Deng, C.T.; Yu, C., Electrochemical chlorine evolution reaction to improve the desalination of sea sand. Science of the Total Environment, 2024, 945, 174063.

6. Muhammad, N.; Yu, G.W. *; Dinkayehu, T.A.; Li, X.L., Synthesis of surficial-modified green biochar catalyst generated by biogas residue biochar and potential application for catalytic ozonation degradation of ciprofloxacin. Environmental Research, 2024, 257, 119314.

7. Jiang, R.Q.; Yu, G.W. *; Wang, Y.; Li, C.J.; Xing, Z.J.; Xue, X.M.; Wang, Y.; Yu, C.,  Migration of phosphorus in pig manure during pyrolysis process and slow-release mechanism of biochar in hydroponic application. Science of the Total Environment, 2024, 915, 170116.

8. Wang, Y.; Yu, G.W. *; Xie, S.Y.; Jiang, R.Q.; Li, C.J.; Xing, Z.J., Pyrolysis of food waste digestate residues for biochar: Pyrolytic properties, biochar characterization and heavy metals behaviours. Fuel, 2023, 353, 129185.

9. Wang, Y.; Yu, G.W. *; Lin, J.J.; Jiang, R.Q.; Xu, X.H.; Xie, S.Y.; Wang, Y., Synergistic hydrothermal treatment of food waste digestate residues and incineration fly ash: dehydration performance, heavy metals safety and PCDD/Fs detoxification. Reaction Chemistry & Engineering, 2022, DOI: 10.1039/D2RE00053A.

10. Xie, S.Y.; Yu, G.W. *; Jiang, R.Q.; Ma, J.L.; Shang, X.F.; Wang, G.; Wang, Y.; Yang, Y.A.; Li, C.X., Moderate sewage sludge biochar application on alkaline soil for corn growth: a field study. Biochar, 2021, 3, 135.

11. Xie, S.Y.; Yu, G.W. *; Ma, J.L.; Wang, G.; You, F.T.; Li, J.; Wang, Y.; Li, C.X.,  Chemical speciation and distribution of potentially toxic elements in soilless cultivation of cucumber with sewage sludge biochar addition. Environmental Research, 2020, 191, 110188.

12. Xie, S.Y.; Yu, G.W. *; Li, C.X.; Li, J.; Wang, G.; Dai, S.Q.; Wang, Y., Treatment of high-ash industrial sludge for producing improved char with low heavy metal toxicity. Journal of Analytical and Applied Pyrolysis, 2020, 150, 104866.

13. Pamphile,N.; Liu, X.J.; Li, Z.W.; Yu, G.W. *; Wang, Y.*, Optimized synthesis of a core-shell structure activated carbon and its adsorption performance for Bisphenol A. Science of the Total Environment, 2019, 689,457.

14. Li, J.; Pan, L.J.; Yu, G.W. *; Li, C.X.; Lai, D.G.; Xie, S.Y.; Li, Z.W.; Wang, Y., The synthesis of heterogeneous Fenton-like catalyst using sewage sludge biochar and its application for ciprofloxacin degradation. Science of the Total Environment, 2019, 654,1284.

15. Pamphile,N.; Liu, X.J.; Yu, G.W. *; Wang, Y.*, Synthesis of a novel core-shell-structure activated carbon material and its application in sulfamethoxazole adsorption. Journal of Hazardous Materials, 2019, 368, 602.

16. You, F.T.; Yu, G.W. *; Xing, Z.J.; Li, J.; Xie, S.Y.; Wang, G.; Ren, H.Y.; Wang, Y.*, Enhancement of the NO catalytic oxidation activity of activated carbon at room temperature by nitric acid hydrothermal treatment. Applied Surface Science, 2019, 471,633.

17. Yu, G.W. *; Xie, S.Y.; Ma, J.L.; Shang, X.F.; Wang, Y.; Yu, C.; You, F.T.; Tang, X.D.; Héctor, U. L.; Pan, L.J.; Li, J.; Li, C.X., Influence of Sewage Sludge Biochar on the Microbial Environment, Chinese Cabbage Growth, and Heavy Metals Availability of Soil. BIOCHAR- AN IMPERATIVE AMENDMENT FOR SOIL AND THE ENVIRONMENT, ISBN:978-953-51-6774-7,2018.

18. Li, J.; Yu, G.W. *; Pan, L.J.; Li, C.X.; You, F.T.; Xie, S.Y.; Wang, Y.*, Study of CIP removal by biochar obtained from used tea leaves. Journal of Environmental Sciences, 2018, 73,20

19. Li, J.; Yu, G.W. *; Xie, S.Y.; Pan, L.J.; Li, C.X.; You, F.T.; Wang, Y.*, Immobilization of heavy metals in ceramsite produced from sewage sludge biochar. Scicence of the Total Environment, 2018, 628,131.

20. You, F.T.; Yu, G.W. *; Wang, Y.*; Xing, Z.J.; Liu, X.J.; Li, J., Study of nitric oxide catalytic oxidation on manganese oxides-loaded activated carbon at low temperature. Applied Surface Science, 2017, 413,387.

承担科研项目情况:

1. 国家重点研发计划课题,2023YFD1701704,固碳减排高效农牧循环模式构建及农肥深施关键装备研发,2023.12~2027.12,310万,主持。

2. 国家重点研发计划课题,2020YFC1908904,包装废物与餐厨垃圾等城市固废协同处理生态链接技术,2020.11~2023.10,315万,主持。

3. 国家重点研发计划中国和欧盟研究创新旗舰合作计划项目,2019YFE0194000,新型移动式有机废弃物资源化装备及其技术模式研究, 2020.07~2022.12,437万,任务负责人。

4. 国家重点研发计划中日政府间国际科技创新合作重点项目,2016YFE0118000,城市污泥与餐厨垃圾协同资源回收技术研发与示范, 2016.12~2019.12,496.4万,任务负责人。

5. 福厦泉国家自主创新示范区协同创新平台项目,3502ZCQXT2022004,金属尾矿低碳高值综合利用同创新平台,2023.01~2024.12,200万,主持。

6. 中国科学院A类战略性先导科技专项子课题,XDA23020504,中小城镇固体废弃物协同资源化处置技术研究与示范,2019.01~2023.12,433.46万,主持。

7. 国家科技支撑计划课题,2013BAC12B04,钢渣矿化固定CO2关键技术研究与工程示范, 2013.1.1~2016.12.31,498万,任务负责人。

8. 国家高技术研究发展计划课题(863计划),2011AA06A105,钢渣活性组分固化与资源化利用技术,2011.01~2015.12,1159万,任务负责人。

9. 国家发改委循环经济高技术产业化重大专项,发改办高技[2008]143,利用首钢焦化工艺大规模处理废塑料垃圾高技术产业化示范工程, 2008.01~2011.12,500万,任务负责人。

10. 国家科技支撑计划课题,2006BAE03A05,新一代可循环钢铁工艺流程大型焦炉高效能源转化技术研究,2006.11~2009.12,1279万,任务负责人。

11. 福建省中科院STS计划配套项目,2023T3033,海泥资源化利用技术研究与开发项目, 2023.01~2025.12,40万,主持。

12. 福建省中科院STS计划配套项目,2023T3011,高浓度臭氧催化剂及应用技术开发, 2023.01~2025.12,70万,任务负责人。

13. 厦门市海洋发展局青年科技创新项目,23YYST061QCA09,微界面氧化对海砂表面氯元的平衡定向干预机制及其在海砂淡化中的应用, 2023.07~2025.06,30万,主持。

14. 福建省中科院STS计划配套项目,2021T3069,尾矿低碳资源化利用技术及产业化, 2021.08~2024.07,70万,任务方负责人。

15. 福建省自然科学基金面上项目,2019J01135,污泥生物炭制备多孔陶粒及其对环丙沙星的催化降解机理研究, 2019.4.01~2021.9.30,4万,主持。

16. 福建省工业引导性重点项目,2015H0044,城市垃圾废塑料与污泥混合制备炭吸附材料关键技术开发,2015.04~2018.03,15万,主持。