
高冠道
博士,教授
Email: gaoguandao@nju.edu.cn
南京大学环境学院C412室
Tel:025-89681675
教育及工作背景
2016 ~至今 南京大学,环境学院,教授
2005 ~ 2016 南开大学,环境科学与工程学院,历任讲师(2005),副教授(2008),教授/博导(2013)
2010 ~ 2012 哈佛大学,工程与应用科学学院,博士后
2002 ~ 2005 南京大学,环境工程,博士
1995 ~ 2002 兰州铁道学院,给水排水工程,学士(1999);市政工程,硕士(2002)
代表性学术论文
1. Lin Duan, Zhongyuan Wang, Yan Hou, Zepeng Wang, Guandao Gao, Wei Chen*, Pedro J.J. Alvarez*, The oxidation capacity of Mn3O4 nanoparticles is significantly enhanced by anchoring them onto reduced graphene oxide to facilitate regeneration of surface-associated Mn(III), Water Research 2016 103,101-108
2. Wenyan Zhou, Xingtong Jia, Liyao Chen, Zheng Yin, Zhe Zhang, Guandao Gao*, Low cost NiS as an efficient counter electrode for dye-sensitized solar cells, Materials Letters 2016, 163: 1-3
3. Lu Liu*, Meiqing Sun, Haijun Zhang, Qilin Yu, Mingchun Li, Chengdong Zhang, Guandao Gao, Yingjin Yuan, Huanhuan Zhai, Wei Chen*, Pedro J. J. Alvarez*, More Reactive CdS Nanorods with {001} Facets Are Less Cytotoxic than Lower-Energy {101}-Faceted Nanorods, Nano Letter (IF 13.779), 2016, 16 (1): 688-694
4. Zhe Xu, Guandao Gao, Bingcai Pan*, Weiming Zhang, Lu LV, A new combined process for efficient removal of Cu(II) organic complexes from wastewater: Fe(III) displacement/ UV degradation/ alkaline precipitation, Water Research , 2015, 87, 378-384
5. Meilan Pan, Haijun Zhang, Guandao Gao*, Lu Liu, Wei Chen, Synthesis and Facet-Dependent Catalytic Activity of Nanosheets-Assembled BiOI Microspheres: Theoretical Calculation and Experimental Validation, Environmental Science & Technology, 2015 , 49 (10): 6240-6248
6. Guandao Gao *, Qiaoying Zhang, Zhenwei Hao and Chad D. Vecitis, Carbon Nanotube Membrane Stack for Flow-through Sequential Regenerative Electro-Fenton, Environmental Science & Technology, 2015 , 49 (4): 2375 – 2383
7. Guandao Gao , Chad D. Vecitis *, Electrochemical Carbon Nanotube Filter Oxidative Performance as a Function of Surface Chemistry. Environmental Science & Technology ,2011, 45(22): 9726-9734
8. Changsheng Guo, Ming Ge, Lu Liu, Guandao Gao, Yinchang Feng and Yuqiu Wang, Directed Synthesis of Mesoporous TiO2 Microspheres: Catalysts and Their Photocatalysis for Bisphenol A Degradation, Environmental Science & Technology, 2010, 44 (1): 419-425
9. Lu Liu, Huajie Liu, Yaping Zhao, Yuqiu Wang, Yueqin Duan, Guandao Gao, Ming Ge, Wei Chen,Directed Synthesis of Hierarchical Nano-Structured TiO2 Catalysts and their Morphology-Dependent Photocatalysis for Phenol Degradation, Environmental Science & Technology, 2008, 42(7): 2342-2348
10. Guandao Gao *, Meilan Pan and Chad D. Vecitis, Effect of Oxidation Approach on Carbon Nanotube Surface Functional Groups and Electrochemical Filtration of Aqueous Phenol, Journal of Materials Chemistry A (IF 8.262) , 2015, 3, 7575 - 7582
11. Gao Guandao , Qiaoying Zhang, Chad D. Vecitis*, CNT-PVDF Composite Flow-Through Electrode for Single-Pass Sequential Reduction-Oxidation, Journal of Materials Chemistry A (IF 8.262), 2014, 2, 6185 - 6190
12. Shengqi Guo, Xiao Zhang, Zhen Zhou, Guandao Gao*, Lu Liu*, Facile preparation of hierarchical Nb2O5 microspheres with photocatalytic activities and electrochemical properties, Journal of Materials Chemistry A (IF 8.262), 2014, 2, 9236-9243
13. Li Guang, Xiaoshuang Chen*, Guandao Gao*, Bi2S3 microspheres Grown on Graphene Sheets as low-cost counter-electrode materials for dye-sensitized solar cells, Nanoscale (IF 7.76), 2014, 6:3283-3288
14. Guandao Gao , Chad D. Vecitis*, Reactive Depth and Performance of an Electrochemical Carbon Nanotube Network as a Function of Mass Transport, ACS Applied Materials & Interfaces (IF 7.145), 2012, 4(11): 6096–6103
15. Guandao Gao , Chad D. Vecitis*, Doped Carbon Nanotube Networks for Electrochemical Filtration of Aqueous Phenol: Electrolyte Precipitation and Phenols Polymerization, ACS Applied Materials & Interfaces (IF 7.145), 2012, 4(3):1478-1489
16. Mengmeng Zhen, Shengqi Guo, Guandao Gao, Zhen Zhou*, and Lu Liu*, TiO2-B Nanorods on Reduced Graphene Oxides as Anode Materials, Chemical Communications (IF: 6.834), 2015, 51: 507-510
17. Mengmeng Zhen, Xuejing Guo, Guandao Gao, Zhen Zhou* and Lu Liu*, Rutile TiO2 nanobundles on reduced graphene oxides as anode materials, Chemical Communication s(IF: 6.567), 2014,50: 11915-11918
18. Mengmeng Zhen, Meiqing Sun, Guandao Gao, Lu Liu*, Zhen Zhou*, Synthesis of Mesoporous Wall-Structured TiO2 on Reduced Graphene Oxide Nanosheets with High Rate Performance for Lithium-Ion Batteries, Chemistry - A European Journal , 2015, 21 (14): 5317–5322
19. Chad D. Vecitis*, Guandao Gao, and Han Liu , Electrochemical Carbon Nanotube Filter for Adsorption, Desorption, and Oxidation of Aqueous Dyes and Anions, Journal of Physical Chemistry C , 2011, 115(9): 3621–3629
20. Guandao Gao *, Vecitis, C. D., Electrocatalysis Aqueous Phenol with Carbon Nanotubes Networks as Anodes: Electrodes Passivation and Regeneration and Prevention, Electrochimica Acta , 2013, 98: 131-138
21. Guo Sheng-qi, Sun Mei-qing, Gao Guan-dao*, Lu Liu*, Scalable low-cost CdS nanospheres@graphene nanocomposites counter electrode for high efficiency dye-sensitized solar cells, Electrochimica Acta, 2015, 176: 1165-1170
22. Xiao Zhang, Tian-zeng Jing, Sheng-qi Guo, Guan-dao Gao* and Lu Liu*, Synthesis of NiSe2/reduced graphene oxide crystalline materials and their efficient electrocatalytic activity in dye-sensitized solar cells, RSC Advance , 2014, 4 (92): 50312-50317
23. Sheng-qi Guo, Xiao Zhang, Zhen-wei Hao, Guan-dao Gao*, Guang Li and Lu Liu*, In2O3 cubes: synthesis, characterization and photocatalytic properties, RSC Advance, 2014, 4 (59): 31353-31361
24. Xiao Zhang, Shengqi Guo, Mengmeng Zhen, Guandao Gao*, Lu Liu*, Morphology-Property Effect in Electrocatalysis Based on Ni1-xSe@Graphene Series with Specific Stoichiometric Ratio, Journal of The Electrochemical Society , 2015, 162 (10): H774-H779
25. Fanfan Wang, Fang Wang, Guandao Gao, Wei Chen*, Transformation of Graphene Oxide by Ferrous Ion: Environmental Implications, Environmental Toxicology and Chemistry, 2015, 34(9): 1975-1982
26. Hongwen, Sun, Xiaoyang Xu, Guandao Gao, A novel integrated active capping technique for the remediation of nitrobenzene-contaminated sediment, Journal of Hazardous Material , 2010,182(1-3):184-190
发明专利
1. 高冠道 ,丁杰,一种导电吸附树脂的制备方法,申请号: 201511001479.1
2. 高冠道 ,郝振威,张秀丽,一种基于碳纳米管制备膜电极及其电解去除有机污染物的方法,申请号: 201310208195.4
3. 高冠道 ,郝振威,张秀丽,一种阴阳两极协同降解硝基苯类污染物的三明治型膜电极系统及方法,申请号:201310213119.2
4. 高冠道 ,张萌,张爱勇,任玉辉,尹玉玲,朱莹佳,中孔材料HMS固载磺酸铁酞菁光催化剂的制备方法,公开号: CN101590428
5. 高冠道 ,张萌,张爱勇,任玉辉,尹玉玲,朱莹佳,一种利用可见光催化降解有机污染物的树脂催化剂及其制备方法,公开号: CN101590429
6. 肖羽堂,高冠道 ,赵美姿,1-氨基-8-萘酚-3,6-二磺酸生产废水的治理及其回收利用方法,公开号: CN101066824, 2010-10-27授权
7. 孙红文,高冠道 ,徐晓阳,张子种,高效修复水体中有机物污染沉积物的反应格栅技术,公开号: CN101289255
8. 张全兴,鲁秀国,高冠道 ,陈金龙,李爱民,龙超,韩永忠,氯酸盐法制备二氧化氯的方法,专利号: ZL200410013828.7
9. 龙超,李爱民,高冠道 ,费正皓,张全兴,陈金龙,硝基氯苯生产废水中硝基氯苯的树脂吸附回收工艺,专利号: ZL200410014428.8
10. 李爱民,吴林,高冠道 ,钱洪明,朱兆连,吴春金,胡学伟,陈金龙,一种负载金属酞菁光催化剂及其制备方法,专利号: ZL 200610098315.X
11. 李爱民,费正皓,钱洪明,龙超,张根成,刘福强,高冠道 ,刘伟,蔡建国,石鸿雁,王穆君,陈金龙,张全兴,间苯二甲酸二甲酯-5-磺酸钠生产废水的治理及资源化方法,专利号: ZL 200310106127.3
承担科研项目
1. 973 纳米专项“典型人工纳米材料的水环境过程、生物效应及其调控研究”(2014CB932001 ,参与, 2013.10-2018.09)
2. 国家自然科学基金项目“基于碳纳米管内孔(壁)的电化学特性高效降解有机污染物的过程和机理”(21577069 ,主持, 2016.01-2019.12 )
3. 天津市应用基础研究重点项目“碳纳米管内孔(壁)的电化学特性及污染物在其内高效催化降解”(2015 , 主持, 2015.5-2018.04)
4. 国家自然科学基金项目“仿生光催化剂的合成及其对有毒有机废水的降解研究”(20803036 ,主持, 已完成
5. 国家科技人员服务企业行动计划“功能树脂的开发及对有毒有机化工废水的治理及资源化应用”(2009GJA10014 ,主持 ,已完成)
6. 国家水体污染控制与治理科技重大专项“典型行业再生水规模化循环利用水质安全保障关键技术”(2008ZX0
7. 南开大学创新基金“难降解有毒有机废水治理及资源化技术应用研究”(ZB0698 ,主持 ,已完成)
8. 南开大学“985工程”循环经济哲学社会科学创新基地项目“高浓度有毒有机工业废水资源化处理技术应用研究”(A06024 ,主持 ,已完成)
9. 国家环保总局“反应格栅技术修复松花江硝基苯污染沉积物的应急研究”(吉林石化爆炸引起的松花江污染应急科研项目,主研,已完成)
10. 河北省无极开发区节能减排规划(主持,已完成)
11. 河北省金隅赞皇水泥节能减排规划(主持,已完成)
12. 鹿泉东方鼎鑫水泥有限公司循环经济规划方案(主持)
13. 曲寨水泥有限公司能源审计及规划(主持,已完成)
14. 石家庄新世纪焦化有限公司能源审计及规划(主持,已完成)
15. 鹿泉东方鼎鑫水泥有限公司能源审计及规划(主持,已完成)
16. 深圳海量存储设备有限公司清洁生产审计(技术负责人,已完成)
专业技能证书及其它
1. 清洁生产审核师(证书编号:E003178;颁发日期:2005-10-26;颁发机构:国家环境保护部)
研究方向
1. 新型电化学水处理功能材料及技术
2. 高通量-高截留荷电滤膜的制备及应用
近年研究成果简介
主要从事难降解有机废水的处理与资源化/能源化研究。首次提出了集过滤和电解功能为一体的“电过滤”式废水处理新概念;并基于碳纳米管率先制备出“电过滤”技术的核心部件-导电滤膜,进而阐明了制备导电滤膜的相关调控机制;并初步用于去除水中难降解有机污染物、回收贵重金属离子以及杀灭微生物。我们的研究最终为开发导电滤膜,发展新型“电过滤”式废水处理技术提供科学支撑。上述部分研究成果得到了《SCIENCE》(2013,339,6119:535-539)的高度评价,认为我们基于碳纳米管制备的导电滤膜在废水处理领域中具有重要的应用前景。