环境科学与工程学院-朱志良导师介绍

更新于 2023-07-05 导师主页
朱志良 教授 硕,博士生导师
环境科学与工程学院
环境科学
环境功能材料,水处理技术和理论
zzl@tongji.edu.cn

同济大学环境科学与工程学院教授、博士生导师,2002年起担任同济大学化学系教授,2003年起担任同济大学环境科学与工程学院教授、博士生导师。

现任同济大学环境科学与工程学院、长江水环境教育部重点实验室、污染控制与资源化研究国家重点实验室教授、博士生导师,化学污染国际专家组(IPCP)成员, 国际水协IWA会员,美国化学会(ASC)会员,兼任同济大学财务处处长职务。受邀担任国家自然科学基金委、国务院学位办、科技部、上海市科委、清华大学、复旦大学、上海交大、浙江大学、南京大学等高校的评审专家; 兼任《应用基础与工程科学学报》等杂志编委;担任30余种国内外核心学术刊物评审专家;曾担任中国高教学会实验室管理分会常务理事、全国部分高校师资工作联络会副理事长、名誉理事等职务。多次赴瑞典、德国、法国、美国、日本、俄罗斯等进行学术交流和访问,曾担任瑞典斯德哥尔摩大学客座教授。

他先后主持和参与国家自然科学基金、国家科技重大专项、科技部国际合作重点项目、瑞典-中国国际合作重大项目等20多项重要课题研究;在国内外核心学术刊物发表学术论文200余篇,其中国际学术刊物发表SCI收录论文100余篇,有关论文被SCI引用超过3000次,H指数34。先后3次获得国家教育部、上海市政府颁发的科技进步二等奖,2022年获得上海市自然科学二等奖;申请及获得授权国家发明专利20余项;获得中国高教学会师资管理分会优秀论文一等奖,获中国高教学会实验室管理分会先进个人奖。参与编写由高等教育出版社出版的规划教材《普通化学》获得上海市高校教材二等奖;参与编写《一级注册结构工程师基础考试复习教程》(化学部分)由中国建筑工业出版社出版。

他在同济大学先后指导博士、硕士研究生70余人,指导博士后多人,毕业生分布在国内外有关高校、科研院所、企业等,成为业务和管理骨干;2015年、2021年两次获得同济大学优秀博士学位论文指导教师奖;多年来在学术和高教管理双肩挑岗位工作,先后在同济大学人事处、博士后管理办公室、环境科学与工程学院、实验室与设备管理处、发展规划部、资源配置办公室、国资办、财务处等不同管理岗位担任领导职务,2019年获得同济大学最高奖“追求卓越奖”。


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科研项目

1.国家重点研发计划课题:长江、黄河饮用水源高风险物质控制技术 2021YFC3200805(2021.12-2024.12)子课题.

2.国家水专项课题:太湖流域饮用水安全保障工程技术与综合管理技术集成研究 2017ZX 07201005(2017.01~2020.12)子课题.

3. 国际科技创新合作重点专项 International Science and Technology Cooperation Program of China (2016YFE0123700)(2017.01~2018.12)

4. 国家自然科学基金项目:含铁多金属LDH插层结构功能材料对地下水中混合价态砷的吸附作用及构效关系 项目批准号: No.41372241 (2014.01~2017.12).

5. 瑞典研究理事会-瑞中合作重大项目Swedish-Chinese Chemical Pollution Stress and Risks Research Program in the Yangtze River Delta Region(CHEMSTRRES-YRD)Contract Dnr. 639-2013-6913 (2014-2018)

6. 国家自然科学基金项目:地下水中可溶性无机态砷的分子印迹识别研究.项目批准号:41072173. (2011.01~2013.12)

7. 国家水体污染控制与治理科技重大专项--饮用水安全保障技术体系研究与示范主题---高藻、高有机物 湖泊型原水处理技术集成与示范课题(编号:2008ZX07421-002)子课题。

8. 国家高技术研究发展计划(863计划)重点课题:高效除砷氟材料制备和应用关键技术与工程示范项目编号:2009AA062905 (2009.12-2012.09)

9. 科技部“支撑计划” 项目《村镇小康住宅关键技术研究与示范》课题: 高效低成本污水处理和循环利用技术和设备开发. 2008-01-01至2011-12-31 (编号:2006BAJ04A07)

10. 污染控制与资源化研究国家重点实验室自主研究重点课题-西部地区水资源开发与循环利用. (编号:PCRRK09001)(2009.07-2010.12)

11. 国家科技支撑计划项目--小城镇饮用水水质保障关键处理工艺研究及设备开发(编号:2006BAJ08B02)(2006.11~2010.12)

12. 科技部-小城镇科技发展重大项目小城镇环境保护关键技术研究及设备开发. (2003BA808A17)责子课题【1】受污染水体人工强化修复技术研【2】组合消毒技术及设备研究开发.


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研究成果

[1] Ting Chen, Zhiliang Zhu*, Xiaolin Shen, Hua Zhang , Yanling Qiu, Daqiang Yin. Boosting peroxymonosulfate activation by porous single-atom catalysts with FeN4O1 configuration for efficient organic pollutants degradation. Chemical Engineering Journal, 450 (2022) 138469

[2] Xufei Li, Xiaolin Shen, Yanling Qiu*, Zhiliang Zhu,*, Hua Zhang, Daqiang Yin. Fe3O4 quantum dots mediated P-g-C3N4/BiOI as an efficient and recyclable Z-scheme photo-Fenton catalyst for tetracycline degradation and bacterial inactivation. Journal of Hazardous Materials, 456 (2023) 131677

[3] Wulve Fan, Ting Chen, Zhiliang Zhu*, Hua Zhang , Yanling Qiuc, Daqiang Yin*. A review of secondary organic aerosols formation focusing on organosulfates and organic nitrates. Journal of Hazardous Materials, 430 (2022) 128406

[4] Xufei Li, Yanling Qiu*, Zhiliang Zhu*, Hua Zhang, Daqiang Yin. Novel recyclable Z-scheme g-C3N4/carbon nanotubes/Bi25FeO40 heterostructure with enhanced visible-light photocatalytic performance towards tetracycline degradation. Chemical Engineering Journal, 429 (2022) 132130

[5] Jianan Yu, Zhiliang Zhu*, Hua Zhang, Yanling Qiu, Daqiang Yin. Fe–nitrogen–doped carbon with dual active sites for efficient degradation of aromatic pollutants via peroxymonosulfate activation. Chemical Engineering Journal, 427 (2022) 130898

[6] Ting Chen, Zhiliang Zhu*, Yue Wang, Hua Zhang, Yanling Qiu, Daqiang Yin. Efficient organics heterogeneous degradation by spinel CuFe2O4 supported porous carbon nitride catalyst: Multiple electron transfer pathways for reactive oxygen species generation. Chemosphere, 300 (2022) 134511

[7] Jianan Yu, Zhiliang Zhu*, Hua Zhang , Yanling Qiu, Daqiang Yin, Yi Cheng, Shaobin Wang,* Stepwise carbonization of nanocellulose to N-doped carbons with structural transformation and enhanced peroxymonosulfate activation . Chemical Engineering Journal, 2021,407:127185

[8] Jianran Ren, Zhiliang Zhu*, Yanling Qiu , Fei Yu, Jie Ma*, Jianfu Zhao. Magnetic field assisted adsorption of pollutants from an aqueous solution: A review.Journal of Hazardous Materials, 2021, 408: 124846

[9] Ting Chen, Zhiliang Zhu,* Hua Zhang, Yanling Qiu, Daqiang Yin, Guohua Zhao*. Facile Construction of a Copper-Containing Covalent Bond for Peroxymonosulfate Activation: Efficient Redox Behavior of Copper Species via Electron Transfer Regulation. ACS Appl. Mater. Interfaces 2020, 12, 42790−42802

[10] Guanglan Di, Zhiliang Zhu*, Hua Zhang, Yanling Qiu, Daqiang Yin, John Crittenden. Simultaneous sulfamethazine oxidation and bromate reduction by Pdmediated Z-scheme Bi2MoO6/g-C3N4 photocatalysts: Synergetic mechanism and degradative pathway. Chemical Engineering Journal ,2020,401: 126061

[11] Jing Zhang, Bo Tang, Zhiliang Zhu*, Guohua Zhao*. Size-Controlled microporous SiO2 coated TiO2 nanotube arrays for preferential photoelectrocatalytic oxidation of highly toxic PAEs. Applied Catalysis B: Environmental 268 (2020) 118400,1-10

[12] Yihui Zhou, Bo Yuan,* Elisabeth Nyberg, Ge Yin, Anders Bignert, Anders Glynn, Jon Øyvind Odland,Yanling Qiu, Yajie Sun, Yongning Wu, Qianfen Xiao, Daqiang Yin, Zhiliang Zhu, Jianfu Zhao, and Åke Bergman. Chlorinated Paraffins in Human Milk from Urban Sites in China, Sweden, and Norway. Environmental Science & Technology, 2020, 54, 4356−4366

[13] Ting Chen, Zhiliang Zhu*, Zeyu Wang, Hua Zhang, Yanling Qiu, Daqiang Yin, Guohua Zhao*. 3D hollow sphere-like Cu-incorporated LaAlO3 perovskites for

peroxymonosulfate activation: Coaction of electron transfer and oxygen defect. Chemical Engineering Journal 385 (2020) 123935,1-12

[14] Guanglan Di, Zhiliang Zhu*, Qi Dai, Hua Zhang, Xiaolin Shen, Yanling Qiu, Yingying Huang, Jianan Yu, Daqiang Yin, Stephan Kuppers. Wavelength-dependent effects of carbon quantum dots on the photocatalytic activity of g-C3N4 enabled by LEDs. Chemical Engineering Journal 379 (2020) 122296, 1-12

[15] Jianan Yu, Zhiliang Zhu*, Hua Zhang, Guanglan Di, Yanling Qiu, Daqiang Yin, Shaobin Wang,* Hydrochars from pinewood for adsorption and nonradical catalysis of bisphenols. Journal of Hazardous Materials 385 (2020) 121548, 1-9

[16] Guanglan Di, Zhiliang Zhu*, Hua Zhang, Jianyao Zhu, Yanling Qiu, Daqiang Yin, Stephan Küppers. Visible-light degradation of sulfonamides by Z-scheme ZnO/g-C3N4 heterojunctions with amorphous Fe2O3 as electron mediator. Journal of Colloid and Interface Science, 2019, 538: 256–266

[17] Jianan Yu, Zhiliang Zhu*, Hua Zhang, Ting Chen, Yanling Qiu, Zhaoyi Xu, Daqiang Yin. ,Efficient removal of several estrogens in water by Fe-hydrochar composite and related interactive effect mechanism of H2O2 and iron with persistent free radicals from hydrochar of pinewood. Science of the Total Environment,2019, 658: 1013–1022

[18] Guanglan Di, Zhiliang Zhu*, Qinghui Huang, Hua Zhang, Jianyao Zhuc, Yanling Qiu, Daqiang Yin Jianfu Zhao. Targeted modulation of g-C3N4 photocatalytic performance for pharmaceutical pollutants in water using ZnFe-LDH derivedmixed metal oxides: Structure-activity and mechanism. Science of the Total Environment , 2019, 650: 1112–1121

[19] Jianyao Zhu, Zhiliang Zhu*, Hua Zhang, Hongtao Lu, Wei Zhang, Yanling Qiu, Linyan Zhu, Stephan Küppers.Calcined layered double hydroxides/reduced graphene oxide composites with improved photocatalytic degradation of paracetamol and efficient oxidation-adsorption of As(III). Applied Catalysis B: Environmental, 2018, 225: 550–562

[20] Jianan Yu, Zhiliang Zhu*, Hua Zhang, Yanling Qiu, Daqiang Yin.Mg–Fe layered double hydroxide assembled on biochar derived from rice husk ash: facile synthesis and application in efficient removal of heavy metals. Environmental Science and Pollution Control, 2018, 25(24): 24293-24304

[21] Hongtao Lu, Tiantian Lu, Hua Zhang, Yanling Qiu, Daqiang Yin, Zhiliang Zhu*. Enhanced adsorption performance of aspartic acid intercalated Mg-Zn-Fe-LDH materials for arsenite. Dalton Transactions., 2018, 47, 4994–5004

[22] Guanglan Di, Zhiliang Zhu*, Hua Zhang, Jianyao Zhu, Hongtao Lu, Wei Zhang, Yanling Qiu , Linyan Zhu, Stephan Küppers. Simultaneous removal of several pharmaceuticals and arsenic on Zn-Fe mixed metal oxides: Combination of photocatalysis and adsorption. Chemical Engineering Journal, 2017,328:141–151

[23] Wei Zhang, Zhiliang Zhu*, Hua Zhang, Yanling Qiu. Selective removal of the genotoxic compound 2-aminopyridine in water using molecularly imprinted polymers based on magnetic chitosan and β-Cyclodextrin. International Journal of Environmental Research and Public Health, 2017, 14: 991.

[24] Zhou, Yihui; Asplund, Lillemor; Yin, Ge; Ioannis Athanassiadis; Anders Bignert; Yanling Qiu;  Zhiliang  Zhu; Jianfu Zhao;  Åke Bergman. Extensive organohalogen contamination in wildlife from a site in the Yangtze River Delta. Science of The Total Environment, 2016, 554: 320-328

[25] Hongtao Lu, Zhiliang Zhu*, Hua Zhang, Yanling Qiu. In Situ Oxidation and Efficient Simultaneous Adsorption of Arsenite   and Arsenate by Mg–Fe–LDH with Persulfate Intercalation, Water, Air, Soil Pollut., 2016,227: 1-12.

[26] Zhou, Yihui; Yin, Ge; Asplund, Lillemor; Yanling Qiu; Anders Bignert; Zhiliang Zhu; Jianfu Zhao; Åke Bergman. A novel        pollution pattern: Highly chlorinated biphenyls retained in Black-crowned night heron (Nycticorax nycticorax) and Whiskered tern (Chlidonias hybrida) from the Yangtze River Delta.Chemosphere, 2016, 150: 491-498

[27] Hongtao Lu, Zhiliang Zhu*, Hua Zhang, Jianyao Zhu, Yanling Qiu. Simultaneous removal of arsenate and antimonate in simulated and practical water samples by adsorption onto Zn/Fe layered double hydroxide. Chemical Engineering Journal, 2015, 276: 365–375.

[28] Linyan Zhu, Beatrix Santiago-Schübel, Hongxia Xiao, Björn Thiele, Zhiliang Zhu, Yanling Qiu, Henner Hollert,Stephan Küppers*. An efficient laboratory workflow for environmental risk assessment of organic chemicals. Chemosphere,2015, 131: 34–40 .

[29] Bo Chen, Zhiliang Zhu*, Shuxia Liu, Jun Hong, Jie Ma, Yanling Qiu and Junhong Chen. Facile Hydrothermal Synthesis of Nanostructured Hollow Iron-Cerium Alkoxides and Their Superior Arsenic Adsorption CapacitiesACS Applied Materials & Interface, 2014,6, 14016-14025.    

[30] Jun Hong, Zhiliang Zhu*, Hongtao Lu, and Yanling Qiu. Synthesis and arsenic adsorption performances of ferric-based layered double hydroxide with α-alanine intercalation. Chemical Engineering Journal, 2014, 252: 267-274.

[31] Bo Chen, ZhiLiang Zhu*, Jun Hong, Zhipan Wen, jie ma, YanLing Qiu and Junhong Chen. Nanocasted Synthesis of Ordered Mesoporous Cerium Iron Mixed Oxide and Its Excellent Performances for As(V) and Cr(VI) Removal from Aqueous Solutions. Dalton Transactions, 2014, 43: 10767-10777.

[32] Bo Chen, Zhiliang Zhu*, Jie Ma, Mingxuan Yang, Jun Hong, Xiaohui Hu, Yanling Qiu and Junhong Chen. One-pot, Solid-phase Synthesis of Magnetic Multiwalled Carbon Nanotube/Iron Oxide Composites and Their Application in Arsenic Removal. Journal of Colloid and Interface Science, 2014, 434, 9-17.

[33] Jun Hong, Zhiliang Zhu*, Hongtao Lu, and Yanling Qiu. Effect of metal composition in lanthanum-doped ferric-based layered double hydroxides and their calcined products on adsorption of arsenate. RSC Advances, 2014, 4: 5156-5164.

[34] Bo Chen, Zhiliang Zhu,* Jie Ma*, Yanling Qiu and Junhong Chen. Surfactant assisted Ce–Fe mixed oxide decorated multiwalled carbon nanotubes and their arsenic adsorption performance. J. Mater. Chem. A, 2013, 1, 11355-11367 .

[35] Yanwei Guo, Zhiliang Zhu*, Yanling Qiu, Jianfu Zhao. Enhanced Adsorption of Acid Brown 14 Dye on Calcined Mg/Fe Layered    Double Hydroxide with Memory Effect.  Chemical Engineering Journal, 2013, 219: 69-77 .

[36] Bo Chen, Zhiliang Zhu*, Yanwei Guo, Yanling Qiu and Jianfu Zhao. Facile Synthesis of Mesoporous Ce-Fe Bimetal Oxide and Its Enhanced Adsorption of Arsenate from Aqueous Solutions. Journal of Colloid and Interface Science , 2013, 398: 142-151.

[37] Yan-wei Guo, Zhi-liang Zhu*, Yan-ling Qiu, Jian-fu Zhao. Adsorption of Arsenate on Cu/Mg/Fe/La Layered Double Hydroxide from Aqueous Solutions.Journal of Hazardous Materials, 2012239-240279- 288.

[38] Yanling Qiu, Anna Strid, Anders Bignert, Zhiliang Zhu, Jianfu Zhao, Maria Athanasiadou,Ioannis Athanassiadis Ake Bergman. Chlorinated and brominated organic contaminants in fish from Shanghai markets: A case study of human exposure. Chemosphere ,2012, 89: 458–466 .

[39] Huijie Shi, Guohua Zhao, Tongcheng Cao, Meichuan Liu, Chong Guan, Xiaofeng Huang, Zhiliang Zhu.  Selective and visible-light-driven profenofos sensing with calixarene receptors on TiO2 nanotube film electrodes. Electrochemistry Communications, 2012, 19,111–114 .

[40] Jianwei Lin, Yanhui Zhan, Zhiliang Zhu. Adsorption characteristics of copper (II) ions from aqueous solution onto humic acid-immobilized surfactant- modified zeolite. Colloids and Surfaces A: Physicochemical and Engineering spects, 20113849-16. (SCI).

[41] Jianwei Lin, Yanhui Zhan, Zhiliang Zhu. Adsorption of tannic acid from aqueous solution onto surfactant-modified zeolite. Journal of Hazardous Materials, 2011, 193102–111.

[42] Shao-Gang, ZHU Zhi-Liang*, FAN Chen-Feng , QIU Yan-Ling , ZHAO Jian-Fu. Effect of seasonal variation on formation of trihalomethane during chlorination of water samples from Yangtze River and associated cancer risk assessment, Journal of Environmental Science, 2011,23 (9): 1503–1511.

[43] Yanhui Zhan, Jianwei Lin, Zhiliang Zhu. Removal of nitrate from aqueous solution using cetylpyridinium bromide (CPB) modified zeolite as adsorbent,Journal of Hazardous Materials, 2011,186,(2-3)1972-1978.

[44] Jianwei Lin, Yanhui Zhan, Zhiliang Zhu. Evaluation of sediment capping with active barrier systems (ABS) using calcite/zeolite mixtures to simultaneously manage phosphorus and ammonium release. Science of the Total Environment, 409 (2011) 638–646.

[45] Liu Shao-Gang, Zhu Zhi-Liang* , Qiu Yan-Ling, Zhao Jian-Fu.. Effect of Ferric and Bromide Ions on the Formation and Speciation of Disinfection Byproducts during Chlorination. Journal of Environmental Science, 2011,25):765-772.

[46] Yanhui Zhan, Jianwei Lin, Yanling Qiu, Naiyun Gao, Zhiliang Zhu*. Adsorption of humic acid from aqueous solution using bilayer hexadecyl trimethyl ammonium bromide modified zeolite. Frontiers of Environmental Science & Engineering in China, 2011,51):65-75.

[47] Hua Zhang, Zhiliang Zhu*, Noboru Yoshikawa. Microwave enhanced stabilization of copper in artificially contaminated soil. Frontiers of Environmental Science & Engineering in China, 201152):205-211.

[48] Hongmei MA, Zhiliang Zhu*, Lijing DONG, Yanling QIU, Jianfu ZHAO.Removal of Arsenate from Aqueous Solution by Manganese and Iron (hydr)oxides Coated Resin. Separation Science and Technology, 2011,461):130-136.

[49] Lijing Dong, Zhiliang Zhu,*, Yanling Qiu, Jianfu Zhao. Removal of lead from aqueous solution by hydroxyapatite/magnetite composite adsorbent.Chemical Engineering Journal ,2010, 165: 827–834.

[50] Yanhui Zhan, Zhiliang Zhu*, Jianwei Lin , Yanling Qiu, Jianfu Zhao.Removal of humic acid from aqueous solution by cetylpyridinium bromide modified zeolite. Journal of Environmental Science, 2010,22: 9, 1327-1334.

[51] Dong Lijing, Zhu Zhiliang*, Ma Hongmei, Qiu Yanling, Zhao Jianfu. Simultaneous Adsorption of Lead and Cadmium on MnO2-Loaded Resin. Journal of Environmental Science, 2010222):225-229.

[52] Zhiliang Zhu*, Ling LI, Hua ZHANG, Yanling QIU , Jianfu ZHAO. Adsorption of Lead and Cadmium on Ca-Deficient Hydroxyapatite. Separation Science and Technology, 2010, 45 (2): 262 – 268.

[53] Zhu Zhi-Liang*, Zhang Li-Hua, Zhang Hua, Qiu Yan-Ling and Zhao Jian-Fu. Extraction of Cadmium from Sewage Sludge with Poly-epoxy-succinic Acid.Pedosphere2009192):137-142.

[54] Zhang Li-hua, Zhu Zhi-liang*, Zhang Rong-hua, Zheng Cheng-song, Zhang Hua, Qiu Yan-ling, Zhao Jian-fu. Extraction of Copper from Sewage Sludge Using Biodegradable Chelant EDDS. Journal of Environmental Science200820: 970-974.

[55] Zhang Hua, Zhu Zhiliang* Zhang Lihua Qiu Yanling Zhao Jianfu. Extraction of Heavy Metals from Sewage Sludge Using Aspartic Acid and Citric Acid.Environmental Science(Chinese 环境科学(中文)》2008, 29(3):733-737.

[56] Ying Liu , Ling Chen, Zhao Jianfu , Huang Qinghui, Zhu Zhiliang, Gao Hongwen. Distribution and sources of polycyclic aromatic hydrocarbons in surface sediments of rivers and an estuary in Shanghai, China. Environmental Pollution, 2008154298-305.

[57] ZHU Zhi-liang*, MA Hong-mei, ZHANG Rong-hua, GE Yuan-xin, ZHAO Jian-fu. Removal of cadmium by MnO2 loaded D301 resin. Journal of Environmental Science2007196):652656.

[58] Zhi-liang Zhu *,Yuan-xin Ge, Rong-hua Zhang, Hong-mei Ma,Jian-fu Zhao. Rapid Determination of HAAs Formation Potential (HAAFP) of Humic Acid by Using GC-ECD. Chemical Research in Chinese Universities, 200723(3):268~272.

[59] Yanling Qiu , Jianfu Zhao, Huiqi Hou , Tian Li , Ling Chen, Zhiliang Zhu. Transmission flash photolysis of titanium dioxide photooxidation of pyrogallol.C. R. Chimie, 2008,11: 120—124.

[60] Zhu Zhi-liang*, Wang Jing , Ge Yuan-yin, Ma Hong-mei, Zhao Jian-fu. Effects of Bromide and Ferric Ions on Formation of Tri-Halomethanes During Disinfection of Drinking Water By Chlorine Environmental Science (In Chinese )环境科学(中文) 》,2007286):12641267.

[61] Zhu Zhi-liang*, Liang Xiao-ming, Zhang Rong-hua. Determination of the Dissociation Constants of Polyaspartic acid. Chinese Journal of Analytical Chemistry (In Chinese)分析化学(中文)》, 2005, 33(12): 1722-1724.

[62] Zhu Zhi-liang. How to set up teacher assessment system which adapts to the characteristics of institutions of higher education in ChinaJournal of National Academy of Education Administration, 2005, (6): 38-41. 如何建立符合中国高校特点的教师评价体系.《国家教育行政学院学报》, 2006,11: 5864


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学校介绍


  同济大学是国家教育部直属重点大学,也是首批被批准成立研究生院、并被列为国家“ 211 工程”和“面向 21 世纪教育振兴行动计划”(985 工程)与上海市重点建设的高水平研究型大学之一。同济大学创建于 1907 年,现已成为拥有理、工、医、文、法、经(济)、管(理)、哲、教(育)9 大门类的研究型、综合性、多功能的现代大学。

  同济大学现设有各类专业学院 22 个,还建有继续教育学院、 职业技术教育学院等,设有经中德政府批准合作培养硕士研究生的中德学院、中德工程学院,与法国巴黎高科大学集团合作举办的中法工程和管理学院等。目前学校共有 81 个本科专业、 140 个硕士点、 7 个硕士专业学位授权点、博士授权点 58 个、 13 个博士后流动站,学校拥有国家级重点学校 10 个。各类学生 5 万多人,教学科研人员 4200 多人,其中有中科院院士 6 人、工程院院士 7 人,具有各类高级职称者 1900 多人,拥有长江学者特聘教授岗位 22 个。作为国家重要的科研中心之一,学校设有国家、省部级重点实验室和工程研究中心等国家科研基地 16 个。学校还设有附属医院和 2 所附属学校。

  近年来同济大学正在探索并逐步形成有自己特色的现代教育思想和办学理念。以本科教育为立校之本,以研究生教育为强校之路。确立“知识、能力、人格”三位一体的全面素质教育和复合型人才培养模式。坚持“人才培养、科学研究、社会服务、国际交往”四大办学功能协调发展,努力强化服务社会的功能,实现大学功能中心化。以国家科技发展战略和地区经济重点需求为指针,促进传统学科高新化、新兴学科强势化、学科交叉集约化。与产业链紧密结合,形成优势学科和相对弱势学科互融共进的学科链和学科群,构建综合性大学的学科体系,其中桥梁工程、海洋地质、城市规划、结构工程、道路交通、车辆工程、环境工程等学科在全国居领先地位。在为国家经济建设和社会发展做贡献的过程中,争取更多的“单项冠军”,提升学校的学术地位和社会声誉。学校正努力建设文理交融、医工结合、科技教育与人文教育协调发展的综合性、研究型、国际知名高水平大学。

  同济大学已建成的校园占地面积 3700 多亩,分五个校区,四平路校区位于上海市四平路,沪西校区位于上海市真南路,沪北校区位于上海市共和新路,沪东校区位于上海市武东路。正在建设中的嘉定校区位于安亭上海国际汽车城内。

  同济大学研究生院简介

  同济大学一贯重视研究生教育,早在 20 世纪 50 年代初即在部分专业招收培养研究生。 1978 年学校恢复招收硕士研究生, 1981 年起招收博士研究生,同年被国务院学位委员会批准为首批有权授予博士、硕士学位的单位。 1986 年经国务院批准试办研究生院, 1996 年经评估正式成立研究生院,成为我国培养高层次专门人才的重要基地之一。同济大学现有一级学科博士学位授权点 12 个,二级学科博士学位授权点 68 个(含自主设置 10 个二级学科博士点),硕士学位授权点 147 个(含自主设置 7 个二级学科硕士点),分属哲学、经济学、法学、教育学、文学、理学、工学、医学、管理学等 9 个学科门类。其中土木工程、建筑学、交通运输工程、海洋科学、环境科学与工程、力学、材料科学与工程等学科处在全国优势和领先地位,机电、管理、理学等学科近年有了长足进展。我校还设有 13 个博士后科研流动站。近些年来,为了适应我国经济建设和社会发展的需要,学校还十分注重培养不同类型、多个层次、多种规格的高层次专门人才。学校既设科学学位,又设工商管理、行政管理、建筑学、临床医学、工程硕士(含 21 个工程领域)、口腔医学等多种专业学位;既培养学术型、研究型研究生,又培养应用型、复合型专业学位研究生;既有在校全日制攻读学位模式,又有在职人员攻读专业硕士学位或以同等学力申请硕士学位、中职教师在职攻读硕士学位、高校教师在职攻读硕士学位模式。此外,还面向社会举办多种专业研究生课程进修班等,充分发挥了我校学科优势和特色,由此形成了多渠道、多规格、多层次的办学模式,取得了良好的社会效益。

  同济大学研究生院是校长领导下具有相对独立职能的研究生教学和行政管理机构,下设招生办公室、管理处、培养处、学位办公室、学科建设办公室和行政办公室。同时,学校党委还专门设立了研究生工作部。学校设有校学位评定委员会,各学院有学位评定分委员会,并设立了各学科、专业委员会,配有学位管理工作秘书、教务员、班主任、研究生教学秘书等教辅人员。研究生院曾多次被评为全国和上海市学位与研究生教育管理工作先进集体。

  二十多年来,同济大学始终把全面提高培养质量作为研究生教育改革的指导思想,在严格质量管理方面采取了一系列切实有效的措施,取得了较好效果。在连续多年全国百篇优秀博士学位论文评选中,有 7 篇入选。同济大学为国家培养了一大批高素质的高级专门人才,至今已授予博士学位 1311 人,硕士学位近 9504 人,其中有相当一部分已成为我国社会主义现代化建设的重要骨干力量。至 2004 年 9 月,在校博士、硕士研究生约达 11000 多人,专业学位硕士生约 2700 人。根据本校研究生教育发展规划, 2006 年计划招收博士生、硕士生(含专业学位研究生)超过 4000 名。同济大学正在为我国经济建设和社会发展输送高层次人才做出更大的贡献。

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同济大学硕士研究生学费及奖助政策

收费和奖励

1) 按照国务院常务会议精神,从 2014 年秋季学期起,向所有纳入国家招生计划的新入学研究生收取学费。其中:工程管理硕士(125600)、MBA[微博](125100)、MPA(125200)、法律硕士(非法学)(035101)、软件工程领域工程硕士(085212)、金融硕士(025100)、会计硕士(125300)、翻译硕士(055101、055109)、护理硕士(105400)、教育硕士(045100)、汉语国际教育硕士(045300)、人文学院(210)的艺术硕士(135108)专业学位研究生的学费标准另行公布,其它硕士研究生学费不超过 8000 元/学年。

2) 对非定向就业学术型研究生和非定向就业专业学位硕士研究生,同济大学有完善的奖励体系(工程管理硕士(125600)、MBA(125100)、MPA(125200)、法律硕士(非法学)(035101)、软件工程硕士(085212)、金融硕士(025100)、会计硕士(125300)、翻译硕士(055101、055109)、护理硕士(105400)、教育硕士(045100)、汉语国际教育硕士(045300)、人文学院(210)的艺术硕士(135108)的奖励由培养单位另行制订)。对亍纳入奖励体系的非定向就业学术型硕士生和非定向就业专业学位硕士生在入学时全部都可以获得 8000 元/学年的全额学业奖学金,该奖学金用以抵充学费。对纳入奖励体系的硕士研究生还可获得不少亍 600 元/月的励学金,每年发放10 个月。另外,纳入奖励体系的非定向就业研究生都可以申请励教和励管的岗位,获得额外的资励。所有非定向就业硕士研究生在学期间纳入上海市城镇居民基本医疗保险,可申请办理国家励学贷款,可参加有关专项奖学金评定。

3)工商管理硕士在职班、金融硕士在职班、公共管理硕士、工程管理硕士、会计硕士、护理硕士、教育硕士、汉语国际教育硕士、人文学院的艺术硕士采取在职学习方式,考生录取后,人事关系不人事档案不转入学校,在读期间不参加上海市大学生医疗保障,学校不安排住宿,毕业时不纳入就业计划。

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