删除或更新信息,请邮件至freekaoyan#163.com(#换成@)

南京理工大学环境与生物工程学院导师教师师资介绍简介-葛士建

本站小编 Free考研考试/2021-02-17

姓 名 葛士建 性 别 男
出生年月 1987年11月 籍贯
民 族 汉族 政治面貌 党员
最后学历 博士研究生 最后学位
技术职称 教授 导师类别 博士生导师
导师类型 校内 兼职导师 否
行政职务 Email geshijian1221@njust.edu.cn
工作单位 环境与生物工程学院 邮政编码
通讯地址 一化楼307
单位电话
个人主页 http://ebe.njust.edu.cn/69/c8/c5080a158152/page.htm


指导学科
学科专业(主) 0830|环境科学与工程 招生类别 博、硕士 所在学院 环境与生物工程学院
研究方向 主要从事污水氮磷生物控制技术的研究:
1. 新型污水生物低碳氮磷去除技术及工艺;
2. 污水氮磷回收技术;
3. 微藻高效氮磷回收技术;
4.污泥及有机废弃物等资源化和能源化处理。



工作经历
201709-至今,南京理工大学,教授
201409-201708,加拿大Queen's University,博士后及研究员
201309-201408,美国New Jersey Institute of Technology, 博士后

教育经历
200709-201308,北京工业大学,市政工程, 博士学位(导师:彭永臻院士)
201109-201303,美国Corenll Univeristy,生物与环境工程,交流博士生(导师:Largus Angenent教授)
200309-200707,北京交通大学,环境工程,学士学位

获奖、荣誉称号
江苏省****——特别资助
江苏省****基金获得者
江苏省“六大人才高峰”高层次人才奖
江苏省科技进步奖
Water Young Investigation Award
南理工“青年拔尖人才选聘计划”教授
BiofuelNet HQP Travel Award
上海同济高廷耀青年博士生杰出人才奖
奥加诺(水质与环境)奖
北京工业大学优秀博士论文

社会、学会及学术兼职
Biotechnology Letters编;
BioMed Research International特邀主编;
国际水协会IWA、加拿大化学工程学学会、中国环境科学学会会员。


科研项目
目前主持项目:
江苏省****——特别资助(2019-2022)
江苏省****基金项目(2019-2022)
国家自然科学基金青年基金(2018-2021)
江苏省自然科学基金-面上项目(2018-2021)
加拿大BiofuelNet项目(2015-2018)
南京理工大学“青年拔尖人才选聘计划”教授科研启动经费(2018-2019)
中央高校基本科研业务费项目(2018-2019)


发表论文
S. Qiu, L.F. Wang, P. Champagne, G.H. Cao, Z.P. Chen, S.Y. Wang, S.J. Ge*. Effects of crystalline nanocellulose on wastewater-cultivated microalgal separation and biomass composition. Applied Energy, 2019, 239, 207-217.
S. Qiu, S.Y. Wang, C.F. Xiao, S.J. Ge*. Assessment of microalgae as a new feeding additive for fruit fly Drosophila melanogaster. Science of the Total Environment, 2019, 667,455-463.
S.J. Ge*, Danielle Tremblay, Kelsey Viner, P. Champagne, Philip G. Jessop. Centrate wastewater treatment with Chlorella vulgaris: simultaneous enhancement of nutrient removal and lipid production. Chemical Engineering Journal, 2018, 342, 310-320.
S.J. Ge, M. Madill, P. Champagne. Use of Freshwater Macroalgae Spirogyra sp. for the treatment of municipal wastewaters and biomass production for biofuel applications. Biomass & Bioenergy, 2018, 111, 213-223.
S.F. Wang, S.Qiu, S.J. Ge*, J. Liu, Z.L. Peng. Toronto wastewater treatment plants using DEA window and Tobit regression analysis with a dynamic efficiency perspective. Environmental Science and Pollution Research, 2018, 25, 32649-32659.
Z.P. Chen, L.F. Wang, S. Qiu*, S.J. Ge*. Determination of microalgal lipid content and fatty acid for biofuel production. BioMed Research International, 2018, doi.org/10.1155/2018/**.
S.J. Ge*, J. Usack, B. Ma. Advances and challenges at the waste-to-bioenergy/biorefinery nexus. BioMed Research International, 2018, https://doi.org/10.1155/2018/**.
S.J. Ge, P. Champagne. Cultivation of the marine macroalgae Chaetomorpha linum in municipal wastewater. Environmental Science and Technology, 2017, 51 (6), 3558–3566.
S.J. Ge, P. Champagne, W.C. Plaxton, G.B. Leite, F. Marazzi, Microalgal cultivation with waste streams and metabolic constraints to triacylglycerides accumulation for biofuel production. Biofuels, Bioproducts and Biorefining, 2017, 11(2):325–343.
S.J. Ge, P. Champagne, H.D. Wang, P. G. Jessop, M. F. Cunningham. Microalgae recovery from water for biofuel production using CO2-switchable crystalline nanocellulose. Environmental Science and Technology, 2016, 50 (14):7896–7903.
S.J. Ge, P. Champagne. Nutrient removal, microalgal biomass growth, harvesting and lipid yield in response to centrate wastewater loadings. Water Research, 2016, 88, 604-612.
S.J. Ge, M. Agbakpe, W. Zhang, L.Y. Kuang. Heteroaggregation between PEI-coated magnetic nanoparticles and algae: effect of particle size on algal harvesting efficiency. ACS Applied Materials & Interfaces, 2015, 7(11):6102-6108.
S.J. Ge, M. Agbakpe, Z.Y. Wu, L.Y. Kuang, W. Zhang, X.Q Wang. Influences of surface coating, UV irradiation and magnetic field on the algae removal using magnetite nanoparticles. Environmental Science and Technology, 2014, 49(2):1190-1196.
S.J. Ge, J. G. Usack, C. M. Spirito, L.T. Angenent. Long-term n-caproic acid production from yeast-fermentation beer in an anaerobic bioreactor with continuous product extraction. Environmental Science and Technology, 2015, 49(13):8012-8021.
S.J. Ge, M. Agbakpe, W. Zhang, L.Y. Kuang, Z.Y. Wu, X.Q. Wang. Recovering magnetic Fe3O4-ZnO nanocomposites from algal biomass based on hydrophobicity shift under UV irradiation. ACS Applied Materials & Interfaces, 2015, 7 (21):11677–11682.
S.J. Ge, Sh.Y. Wang, X. Yang, Sh. Qiu, Y.Z. Peng. Detection of nitrifiers and evaluation of partial nitrification for wastewater treatment: a review. Chemosphere, 2015, 140:85-98.
S.J. Ge, Y.Z. Peng, Sh. Qiu, Ao. Zhu, N.Q. Ren. Complete nitrogen removal from municipal wastewater via partial nitrification by appropriately alternating anoxic/aerobic conditions in a continuous plug-flow step feed process. Water Research, 2014, 55: 95-105.
S.J. Ge, M. Agbakpe, W. Zhang, X.Z. Zhang, P. Kobylarz. Algae harvesting for biofuel production: In?uences of UV irradiation and polyethylenimine (PEI) coating on bacterial biocoagulation. Bioresource Technology, 2014,166, 266–272.
S.J. Ge, Y.Z. Peng, S.Y. Wang, C.C. Lu, X. Cao, Y.P. Zhu. Nitrite accumulation under constant temperature in anoxic denitrification process: The effects of carbon sources and COD/NO3-N. Bioresource Technology, 2012,114: 137-143.
S.J. Ge, Y.P. Zhu, C.C. Lu, Y.Z. Peng. Full-scale demonstration of step feed concept for improving an anaerobic/anoxic/aerobic nutrient removal process. Bioresource Technology, 2012,120: 305–313.
S.J. Ge, Y.Z. Peng. Enhanced nutrient removal in three types of step feeding process from municipal wastewater. Bioresource Technology, 2011,102 (11): 6405-6413.
S.J. Ge, Y.Z. Peng, S.Y. Wang, J.H. Guo, B. Ma, L. Zhang, X. Cao. Enhanced nutrient removal in a modified step feed process treating municipal wastewater with different inflow distribution ratios and nutrient ratios. Bioresource Technology, 2010,101 (23): 9012-9019.
S.J. Ge, Y.P. Zhu, Sh. Qiu, X. Yang, B. Ma, D.H. Huang, Y.Z. Peng. Evaluation of upgrading a full-scale activated sludge process integrated with floating biofilm carriers. Water Science and Technology, 2014, 70(10):1594-601.
S.J. Ge, Y.Z. Peng, C.C. Lu. S.Y. Wang. Practical consideration for design and optimization of the step feed process. Frontiers of Environmental Science & Engineering, 2013, 7 (1):135-142.
S. Qiu, S.J. Ge, P. Champagne, R Meldrum Robertson. Potential of Ulva lactuca for municipal wastewater bioremediation and fly food. Desalination and Water Treatment. 2017,91,23-30.
S.J. Ge, Y.Z. Peng, S.Y. Wang. Nutrient removal performance at low temperatures in the modified UCT step feed process. International Symposium on Water Resource and Environmental Protection (ISWREP), 2011, 2003-2006.
J.H. Guo, Y.Z. Peng, S.Y. Wang, B. Ma, S.J. Ge, Zh. W. Wang, H.J. Huang, J.R. Zhang, L. Z. Pathways and organisms involved in ammonia oxidation and nitrous oxide emission. Critical Reviews in Environmental Science and Technology. 2013, 43(21): 2213-2296.
J.H. Guo, Y.Z. Peng, H.J. Huang, S.Y. Wang, S.J. Ge, Z.W. Wang. Short- and long-term effects of temperature on partial nitrification in a sequencing batch reactor treating domestic wastewater. Journal of Hazardous Materials. 2010, 179(1-3): 471-479.
B. Ma, S.Y. Wang, G.B. Zhu, S.J. Ge, J.M. Wang, N.Q. Ren, Y.Z. Peng. Denitrification and phosphorus uptake by DPAOs using nitrite as an electron acceptor by step-feed strategies, Frontiers of Environmental Science and Engineering, 2013, 7(2): 267-272.
J.H. Guo, Y.Z. Peng, S.Y. Wang, Y.N. Zheng, H.J. Huang, S.J. Ge. Effective and robust partial nitrification to nitrite by real-time aeration duration control in an SBR treating domestic wastewater. Process Biochemistry, 2009, 44(9): 979–985.
J.H. Guo, S.Y. Wang; H.J. Huang, Y.Z. Peng, S.J. Ge, C.Y. Wu, Z.R. Sun. Efficient and integrated start-up strategy for partial nitrification to nitrite treating low C/N domestic wastewater. Water Science and Technology, 2009, 60(12):3243-3251.

科研创新
P. Champagne, P. G. Jessop, K. J. Boniface, M.F. Cunningham, H.D. Wang, O.G. Valdez, A. Cormier, S.J. Ge, J.A. Luna. Switchable polysaccharide, Methods and Uses Thereof. International Application No.:PCT/CA2016/050325国际专利,专利申请日:2016-03-21公开阶段.
P. Champagne, P. G. Jessop, K. J. Boniface, M.F. Cunningham, H.D. Wang, O.G. Valdez, A. Cormier, S.J. Ge, J.A. Luna. Switchable polysaccharide, Methods and Uses Thereof. Application No.:CA2016/050325,加拿大专利,公开阶段.
W. Zhang, S.J. Ge. Polymer-coated magnetic nanoparticles for microalgal harvesting. 2014, 美国专利,受理.
彭永臻, 葛士建. 改良分段进水深度脱氮除磷的装置和方法, 发明专利, 专利号: ZL2.9.
彭永臻, 葛士建, 霍明昕, 曹旭, 王淑莹, 薄凤阳. 非稳态分段进水深度脱氮除磷过程控制系统及控制方法, 发明专利,专利号: ZL3.3.
彭永臻, 葛士建, 曹旭, 王淑莹. 生物废水处理进水量非稳态变化模拟控制系统, 实用新型, 专利号: ZL3.4.
彭永臻, 葛士建. 改良分段进水深度脱氮除磷装置, 实用新型, 专利号:ZL3.6.
彭永臻, 葛士建, 霍明昕,曹旭, 王淑莹,路聪聪. 非稳态改良分段进水深度脱氮除磷过程控制系统, 实用新型, 专利号: ZL1.4.
王淑莹, 葛士建, 彭永臻. 一种深度脱氮除磷装置及过程控制方法, 发明专利,专利号: ZL4.8.
王淑莹, 葛士建, 彭永臻. 一种深度脱氮除磷及过程控制装置, 实用新型, 专利号: ZL4.0.
王淑莹, 路聪聪, 葛士建, 张琼, 曹旭, 彭永臻. 苯酚抑制耦合低温实现短程脱氮的方法, 发明专利, 专利号: ZL2.6.
王淑莹, 路聪聪, 葛士建, 曹旭, 张琼, 彭永臻. 苯酚抑制耦合低温实现短程脱氮的装置, 实用新型,专利号: ZL5.8.
王淑莹, 路聪聪, 葛士建, 曹旭, 张琼, 彭永臻. 一种分段进水MBBR脱氮除磷的装置, 实用新型, 专利号: ZL4.3.
王淑莹, 路聪聪, 葛士建, 曹旭, 张琼, 彭永臻. 一种分段进水MBBR脱氮除磷的方法(1.9) , 发明专利, 申请号:CN 1, 申请日期: 2012年3月8日.
葛士建,陈志鹏,邱爽,王凌峰. 污水中生长微藻采收模型的建立方法(4.0), 发明专利, 申请日期: 2018年10月18日.
邱爽, 陈志鹏, 葛士建, 王凌峰. 利用改性天然纳米纤维素采收污水中生长微藻的方法(2.3), 发明专利, 申请日期: 2018年10月18日.


教学活动
《污染控制原理》 博士生课
《水污染控制工程》本科生课

我的团队
教师团队:2名
学生:博士和硕士研究生11名,其中3名国际留学生



相关话题/环境 南京理工大学