人物

李芳柏

广东省生态环境技术研究所所长

  • 外文名:Li Fangbai
  • 出生日期:1968年
  • 国籍:中国
  • 主要成就:第十一届中国专利奖获奖 九届广东省丁颖科技奖 第十届大北农科技奖环境工程奖
  • 李芳柏介绍
    李芳柏,男,1968年生,研究员,杰出青年基金获得者。广东省生态环境技术研究所所长。

    正文

    李芳柏,男,1968年生,研究员,杰出青年基金获得者。

    李芳柏[广东省生态环境技术研究所所长]

    环境化学博士,博士生导师。广东省生态环境与土壤研究所所长。2010年获杰出青年基金资助。2009年入选新世纪百千万人才工程国家级人才。兼任广东省土壤学会副理事长、中国土壤学会土壤化学专业委员会委员与土壤环境专业委员会委员等社会职务。主要从事土壤重要物质循环与土壤污染控制研究,其主要创新在于红壤铁循环与污染物转化过程相互作用的化学—微生物耦合机制研究。主持了国家973前期项目、自然科学基金等国家级项目10余项,省部级项目10余项。共发表SCI收录论文106篇,EI收录论文51篇,SCI总引近2000次,他引近1800次,h-index为19;单篇最高引用316次;其中3篇论文进入美国ISI统计系统的前1%的高引行列。申请发明专利公开42件,专利授权18件。2005年以第一完成人获广东省科学技术奖一等奖;2007年获第十届中国青年科技奖、第六届“广东省十大杰出青年”提名奖;2009年获广东省科学技术奖一等奖(第2)、广东省专利金奖与中国专利优秀奖。

    李芳柏简历及部分重要论文:

    Dr. F. B. Li, Professor in Soil Environmental Chemistry, has been a full-time staff in the Guangdong Institute of Eco-Environmental and Soil Sciences since 1996. He held the deputy director of the institute and the associate director of Guangdong Key Laboratory of Agricultural Environment Pollution Integrated Control since 2002. He had also been a Postdoctoral Fellowship in the Department of Civil & Structural Engineering of the Hong Kong Polytechnic University in 2002-2004. His major research interests include the environmental application, mechanisms at molecular scale and management at regional scale of iron biogeochemical cycles, soil pollution control at regional scale and remediation in sites, and developing novel environmental materials and techniques. His works have resulted in the publication of over 100 articles in reputable journals and international conference proceedings. He is the editorial board member of Global Journal of Environmental Science & Technology.

    1. Academic Qualifications:

     Ph. D, 1999.07 (Environmental Engineering), South China Technological University, Guangzhou, China

     M. Ph., 1996.07 (Environmental Soil Science), South China Agricultural University, Guangzhou, China

     B. Sc., 1990.07 (Soil Science), Chinese Agricultural University, Beijing, China.

    2. Previous Academic Position held

     2003.11-now, Professor, Guangdong Institute of Eco-Environmental and Soil Sciences

     2002.08-2004.09, Postdoctoral Fellowship, Department of Civil & Structural Engineering, Hong Kong Polytechnic University

     2001.09-2003.11, Associate Professor, Guangdong Institute of Eco-Environmental and Soil

    Sciences

     1996.07-2001.08, Assistant Professor, Guangdong Institute of Eco-Environmental and Soil

    Sciences

    3. Professional Affiliations

     Council Member of Soil Science Society of China

     Member of Soil Chemistry Committee and Soil Environment Committee, Soil Science Society of

    China

     Vice President of Soil Science Society of Guangdong Province

     Member of Academic Committee of Pollution Control and Remediation Center, Chinese

    Academic of Science

     Member of Journal Editorial Board for Global Journal of Environmental Science & Technology

    4. Representative Research Grants and Projects as a Principal Investigator

     2011.01-2015.12, “Soil Chemistry” (National Outstanding Youth Scientific Foundation)

     2010.01-2012.12, “The dependence of the interactively interfacial reaction of reductive

    dechlorination for polychlorinated compounds with iron cycles on the weathering characteristics of red soils” (NSFC No. 40971149)

     2008.01-2010.12, “Interfacial & Interactive Dechlorination Transformation of DDTs Driven by Iron-reducing Bacterium and Iron Oxides” (NSFC No. 40771105)

     2007.01-2010.12, “Development of Arsenic Pollution Control Techniques for Soil Contamination Remediation in a Tungsten Mineral Area” (Chinese EPA and Guangdong EPA)

     2006.01-2008.12, “The Abiotic Transformation of Polychlorinated Compounds at the Interface of Red Soils and Water” (NSFC No. 20577007)

     2005.01-2009.12, “Development of Soil Polychlorinated Compounds Pollution Control Techniques in the South China” (Guangdong R&D)

     2004.01-2006.12, “The Photochemical Degradation of Organic Pollutants in the Suspension of

    Iron oxides and Carboxylic Acids under UVA Illumination” (NSFC No. 20377011)

     2003.01-2003.12, “Photocatalytic Degradation of Organic Pollutants Driven Modified TiO2

    Under UVA Illumination” (NSFC No. 20203007)

    5. Honorary and Awards

     The New Century National Hundred Talent Project (2009)

     The 10th National Young Scientist Award-National Science and Technology Association (2007)

     The 9th Ding Ying Science and Technology Award-Guangdong Provincial Science and

    Technology Association (2007)

     The First Prize in the Medal of Science and Technology in Guangdong Province, “The soil

    environmental quality and safety of agricultural products in the Typical Area of Guangdong

    Province”-the People’s Government of Guangzhou Province (2009)

    The First Prize in the Medal of Science and Technology in Guangdong Province, “Fundamental

    Research Concerning the Environmental Technique of Photocatalytic Titanium Dioxide”-the

    People’s Government of Guangzhou Province (2005)

     The Second Prize in the Medal of Science and Technology in Guangdong Province, “Non-point

    Source Pollution and Control in Zhu Hai” -the People’s Government of Guangzhou Province

    (2003)

    6. List of 20 representative publications

    (1) Wu C. Y.; *Li F. B.; Zhou S. G.; Zhuang L. (2010) Fe(III)-Enhanced Anaerobic Degradation of 2,4-Dichlorophenoxyacetic Acid by a Dissimilatory Fe(III)-Reducing Bacterium Comamonas Koreensis CY01. FEMS Microbiology Ecology. 71, 106-113.

    (2) Li F.B.*; Li X.M.; Zhou S.G.; Zhuang L.; Xu W.; Liu T.X. (2010) Reductive dechlorination of DDT in dissimilatory iron-reducing system of Shewanella decolorationis S12 and α-FeOOH. Environmental Pollution. 158, 1733-1740.

    (3) Feng C.H., Li F.B.*, Mai H.J., Li X.Z. (2010) Bio-Electro-Fenton Process Driven by Microbial Fuel Cell for Wastewater Treatment. Environ. Sci. Technol. 44, 1875-1880.

    (4) Liu C.P.; Luo C.L.; Gao Y.; Li F.B.*; Lin L.W.; Wu C.A.; Li X.D. (2010) Arsenic contamination and potential health risk implications at an abandoned Tungsten mine, southern China. Environmental Pollution. 158, 820-826.

    (5) Li F.B.*; Tao L.; Feng C.H.; Li X.Z.; Sun K.W.; Zhou S.G. (2009) Electrochemical Evidences

    for Promoted Interfacial Reactions: The Role of Fe(II) Adsorbed onto γ-Alumina and Titania in

    Reductive Transformation of 2-Nitrophenol. Environ. Sci. Technol. 43(10), 3656-3661.

    (6) Li X.M.; Zhou S.G.; Li F.B.*; Wu C.Y.; Zhuang L.; Xu W.; Liu L. (2009) Fe(III) oxide

    reduction and carbon tetrachloride dechlorination by a newly isolated Klebsiella pneumoniae

    strain L17. Journal of Applied Microbiology. 106, 130-139.

    (7) Liu L.; Li F.B.*; Feng CH.; Li XZ. (2009) Microbial fuel cell with an azo-dye-feeding

    cathode. Appl Microbiol Biotechnol. 85, 175-183.

    (8) Wang Y.; Wang L.S.; Li F.B.*; Liang J.B.; Li Y.T.; Dai J.; Loh T.C.; Ho Y.W. (2009) Effects of Oxytetracycline and Sulfachloropyridazine Residues on the Reductive Activity of Shewanella decolorationis S12. Journal of Agricultural and Food Chemistry. 57(13), 5878-5883.

    (9) Lan Q.; *Li F. B.; Liu, C. S.; Li X. Z. (2008) Heterogeneous Photodegradation of

    Pentachlorophenol with Maghemite and Oxalate under UV Illumination. Environ. Sci. Technol. 42, 7918–7923

    (10) Liu T. X.; Li X. Z.; Li F. B. (2008) AgNO3-induced photocatalytic degradation of odorous

    methyl mercaptan in gaseous phase: mechanism of chemisorption and photocatalytic reaction. Environ. Sci. Technol. 42(12); 4540-4545

    (11) X. Z. Li, F. B. Li. (2001) Study of Au/Au3+-TiO2 Photo-catalysts Toward Visible Photo-Oxidation for Water and Wastewater Treatment. Environ. Sci. & Technol. 35, 2381-2387.

    (12) *Li F. B.; Wang X. G; Liu C. S.; Li Y. T.; Zeng F.; Liu L. (2008) Reductive Transformation of Pentachlorophenol on the Interface of Subtropical Soil Colloids and Water. Geoderma. 148, 70–78

    (13) *Li F.B., Wang X. G., Li Y. T., Liu C. S., Zeng F., Zhang L. J., Hao M. D., Ruan H. D. (2008) Enhancement of the Reductive Transformation of Pentachlorophenol by Polycarboxylic Acids at the Interface of Iron Oxides-Water. Journal of Colloid and Interface Sciences. 321(2), 332-341.

    (14) Zhang H.H., *Li F.B., Wu Z.F., Li D.Q., Xu, D.R., Yuan H.X. (2008) Baseline Concentrations and Spatial Distribution of Trace Metals in Surface Soils of Guangdong Province, China. Journal of Environmental Quality. 37, 1-9.

    (15) *Li F.B., Li X. Z., Hou M. F., Cheah K. W., Choy W. C. H.. (2005) Enhanced photocatalytic

    activity of Ce3+-TiO2 for 2-mercaptobenzothiazole degradation in aqueous suspension for odor

    control. Applied Catalysis A: General, 285, 181-189.

    (16) *Li F.B., Li X. Z., Ao C. H., Hou M. F., Lee S. C. (2004) Photocatalytic Conversion of NO

    using TiO2-NH3 Catalysts in Ambient Air Environment. Applied Catalysis B: Environmental, 54, 275-283.

    (17) *Li F.B., Li X.Z., Hou M.F. (2004) Photocatalytic degradation of 2-mercaptobenzothiazole in aqueous La3+–TiO2 suspension for odor control, Applied Catalysis B: Environmental, 48, 185-194.

    (18) Li F.B. and Li X.Z. (2002) Photocatalytic properties of gold/gold ion-modified titanium dioxide for wastewater treatment, Applied Catalysis A: General, 228(1-2), 15-27.

    (19) Li F.B and Li X.Z. (2002) The enhancement of photodegradation efficiency using Pt-TiO2 catalyst, Chemosphere, 48 (10): 1103-1111.

    (20) X. Z. Li, F. B. Li, C.L.Yang and W.K.Ge. (2001) Photo-catalytic activity of WOX-TiO2 under Visible Light Irradiation. J. Photochem. & Photobio. A: Chem. 141 (2-3), 209-217.

    获得荣誉

    2023年,荣获第三届全国创新争先奖状。[1]

    参考资料

    [1]第三届全国创新争先奖牌表彰名单.新浪网. [2023-05-31].

    该页面最新编辑时间为 2023年8月7日

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