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教授
- 电子邮箱:8e4ac4b5440de151d60703119fce584007b855d2d5aba3660992903b0345874d36d7fb7704df12491863adb094be32072145fc8c972e796530880284eb2aa99edc1d15ce3946c25a12c1967271b2684c36753f965f227587cd895b5269f7fac530a976865066f39e802d9471ee972d3b2f2f673db3050c875e50ce4c84ef4c95
- 职务:环境科学与工程系执行主任
- 联系方式:0551-63607592
- 学位:博士
- 2006当选:国家杰出青年科学基金获得者
- 2002年获选教育部“跨世纪优秀人才培养计划”
- 2003年获中国环境科学学会青年科技奖
- 2003年获优秀留学回国人员成就奖
- 2004年入选人事部首批“新世纪百千万人才工程”
- 2005年入选享受国务院特殊津贴专家
- 2006年获国家自然科学基金委员会杰出青年基金
- 2007年获选教育部长江学者特聘教授
- 2014年获国家自然科学二等奖
访问量:
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[61]俞汉青.Electrocatalytic hydrodehalogenation of atrazine in aqueous solution by
Cu@Pd/Ti catalyst.CHEMOSPHERE,2015,12557-63.
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[62]俞汉青.A plate-based electrochromic approach for the high-throughput detection
of electrochemically active bacteria.NATURE PROTOCOLS,2013,9(1):112-119.
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[63]俞汉青.Characterization of autotrophic and heterotrophic soluble microbial
product (SMP) fractions from activated sludge.WATER RESEARCH,2012,46(19):6210-6217.
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[64]俞汉青.Roles of glutathione and L-cysteine in the biomimetic green synthesis of
CdSe quantum dots.FRONTIERS OF ENVIRONMENTAL SCIENCE & ENGINEERING,2017,11(6):
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[65]俞汉青.Anaerobic reduction of 2,6-dinitrotoluene by Shewanella oneidensis MR-1:
Roles of Mtr respiratory pathway and NfnB.BIOTECHNOLOGY AND BIOENGINEERING,2017,114(4):761-768.
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[66]俞汉青.Preparation of microvillus-like nitrogen-doped carbon nanotubes as the
cathode of a microbial fuel cell.JOURNAL OF MATERIALS CHEMISTRY A,2015,4(5):1632-1636.
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[67]俞汉青.Changing profiles of bound water content and distribution in the
activated sludge treatment by NaCl addition and pH modification.CHEMOSPHERE,2017,186702-708.
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[68]俞汉青.High-sensitivity infrared attenuated total reflectance sensors for in
situ multicomponent detection of volatile organic compounds in water.NATURE PROTOCOLS,2016,11(2):377-386.
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[69]俞汉青.Enhanced dewatering of excess activated sludge through decomposing its
extracellular polymeric substances by a Fe@Fe2O3-based composite
conditioner.BIORESOURCE TECHNOLOGY,2016,218526-532.
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[70]俞汉青.Tuning the catalytic selectivity in electrochemical CO2 reduction on
copper oxide-derived nanomaterials.FRONTIERS OF ENVIRONMENTAL SCIENCE & ENGINEERING,2015,9(5):861-866.