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扬州大学环境科学与工程学院硕士研究生导师:吴军

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扬州大学环境科学与工程学院硕士研究生导师:吴军

吴军  博士、教授、博士生导师

 

联系方式

地址:扬州市华扬西路196号扬州大学环境学科与工程学院

邮编: 225127

电话: 0514-87979528

E-mailj.wu@yzu.edu.cn

个人简要经历与学历

§2009/3 – 今,扬州大学,环境科学与工程学院,讲师、副教授、教授

§2017/7-2018/6, 北卡州立大学,土木建筑与环境工程系,访问学者

§2015/8 – 2016/1,荷兰TU Delft大学,环境生物系,访问学者

§2003.7-2008.7,英国拉夫堡大学土木与建筑工程系,博士,水工程

§2000.9-2003.6,同济大学环境工程学院,硕士,环境工程

§1996.9-2000.6,扬州大学,本科,给排科学与工程专业

主要研究方向

§污水处理与资源化

§水处理过程优化与数学模拟、活性污泥模型、1D/2D生物膜模型

§城市、农村水环境修复与提升

主要讲授课程

§给水排水专业英语(本科)

§水质工程学II (本科)

§污水处理数学模型(研究生)

§环境工程专业导论课程(留学生班英语授课)

科研项目、主要成果

§国家自然科学基金(2015-2018) 51478410 基于r-K策略菌群选择的硝化动力学模拟及其优化调控,主持;

§国家自然科学基金(2013-2015; 51208450,颗粒有机物对活性污泥供碳及絮体结构改善协同作用机制研究 ,主持;

§江苏省高校自然科学基金颗粒物质在MBR膜污染过程中堆积机理研究2010-2012),主持;

§江苏高校省级重点实验室课题基于颗粒特性分析的MBR膜污染研究2009-2011 ),主持;

§江都区污水管网运行情况调查, 2017,主持;

§电絮凝污水处理技术,江苏京源环保股份有限公司,2015-2017,主持

§江苏省企业博士集聚计划初期雨水原位处理装置研发2011-2013 ),主持;

§江苏省教授博士柔性进企业计划

§扬州大学高端人才支持计划

发表论文

(* 通讯作者)

1.孙月, 张悦, 韩琬茹,吴军*, 混合液氨氮浓度对短程硝化影响的数学模拟和实验研究. 环境污染与防治 40: 19-27 (2018).

2.Zhu T, Xu B and Wu J*, Experimental and mathematical simulation study on the effect of granule particle size distribution on partial nitrification in aerobic granular reactor. Biochem Eng J 134: 22-29 (2018).

3.Zhu T, Wu J, He C, Fu D and Wu J*, Development and evaluation of MTLSER and QSAR models for predicting polyethylene-water partition coefficients. J Environ Manag 223: 600-606 (2018).

4.Jiang X, Xu B and Wu J*, Sulfur recovery in the sulfide-oxidizing membrane aerated biofilm reactor (MABR): experimental investigation and model simulation. Environ Technol   (2018).

5.王磊磊, 何成达, 鄢一新,吴军, 污水处理过程中曝气方式对挥发性有机物排放量影响研究. 环境科学学报 37: 1774-1779 (2017).

6.檀朝阳, 季献华,吴军*, 电絮凝法应用于洗煤废水处理的研究. 工业水处理 37: 81-84 (2017).

7.Wu J*, Zhang Y, Zhang M and Li Y, Effect of nitrifiers enrichment and diffusion on their oxygen half-saturation value measurements. Biochem Eng J 123: 110-116 (2017).

8.Wu J* and Zhang Y, Evaluation of the impact of organic material on the anaerobic methane and ammonium removal in a membrane aerated biofilm reactor (MABR) based on the multispecies biofilm modeling. Environmental Science and Pollution Research 24: 1677-1685 (2017).

9.Wu J*, Li Y and Zhang M, Activated sludge floc morphology and nitrifier enrichment can explain the conflicting reports on the oxygen half-saturation index for ammonium oxidizing bacteria (AOB) and nitrite oxidizing bacteria (NOB). J Chem Technol Biotechnol 92: 2673-2682 (2017).

10.Wu J*, Comparison of control strategies for single-stage partial nitrification-anammox granular sludge reactor for mainstream sewage treatment—a model-based evaluation. Environmental Science and Pollution Research 24: 25839-25848 (2017).

11.Cong H, Sun F, Wu J, Zhou Y, Yan Q, Ren A and Xu H, Study on method and mechanism of deep well circulation for the growth control of <em>Microcystis</em> in aquaculture pond. Water Sci Technol 75: 2692 (2017).

12.徐婷, 王丽,吴军*, 不同pH条件下短程硝化序批实验和数学模拟. 环境工程学报 10: 2840-2846 (2016).

13.吴军*, 张悦, 徐婷,严刚, AOB溶解氧亲和力低于NOB条件下序批反应器中NOB淘汰的实现机制. 中国环境科学 36: 3583-3590 (2016).

14.Wu J*, Zhang Y and Yan G, Differentiating two partial nitrification mechanisms: Inhibiting nitrite oxidizing bacteria activity or promoting ammonium oxidizing bacteria activity. Journal of Environmental Chemical Engineering 4: 3260-3266 (2016).

15.Wu J*, He C, van Loosdrecht MCM and Pérez J, Selection of ammonium oxidizing bacteria (AOB) over nitrite oxidizing bacteria (NOB) based on conversion rates. Chem Eng J 304: 953-961 (2016).

16.严刚, 季献华, 李武林,吴军*, 利用电絮凝法处理脱硫废水的研究. 环境工程 33: 187-189 (2015).

17.王巍, 丛海兵, 徐亚军, 陈雯婧,吴军, 预处理方式对水源水中蓝藻气囊及活性的影响. 中国给水排水 9: 015 (2015).

18.Wu J*, Yan G, Zhou G and Xu T, New insights in partial nitrification start-up revealed by a model based approach. RSC Advances 5: 100299-100308 (2015).

19.Wu J*, Xu T, Yan G, He C and Zhou G, Model predictive control of partial nitrification via nitrous oxide (N2O) emission monitoring. Journal of Environmental Chemical Engineering 3: 2857-2865 (2015).

20.Wu J*, Xu T, Jiang X, Yan G and Yu L, Model based optimization of partial nitrification by monitoring nitrous oxide (N2O) emission. Journal of Environmental Chemical Engineering 3: 1602-1613 (2015).

21.于林堂, 徐亚军, 吴军*, 张键,周春洪, 氧转移系数 KLa 的计算机数据采集与计算. 实验室研究与探索 33: 86-88 (2014).

22.王巍, 丛海兵, 徐亚军, 陈雯婧, 徐思涛, 吴军* ,蒋新跃, 不同压力作用下太湖蓝藻气囊体积分数及上浮特性研究. 环境科学 35: 2974-2979 (2014).

23.刘祥, 何成达, 苗小丽, 俞力, 王雅芳,吴军, A2N 工艺碳源分子质量分布及利用对脱氮特性的影响. 水处理技术 40: 96-103 (2014).

24.Yu J, He C, Liu X, Wu J, Hu Y and Zhang Y, Removal of perfluorinated compounds by membrane bioreactor with powdered activated carbon (PAC): Adsorption onto sludge and PAC. Desalination 334: 23-28 (2014).

25.Wu J*, Yan G, Zhou G and Xu T, Model predictive control of biological nitrogen removal via partial nitrification at low carbon/nitrogen (C/N) ratio. Journal of Environmental Chemical Engineering 2: 1899-1906 (2014).

26.Wu J*, Yan G, Zhou G and Xu T, Wastewater COD biodegradability fractionated by simple physical-chemical analysis. Chem Eng J 258: 450-459 (2014).

27.Bi D, He C and Wu J, Modeling head losses in biological aerated filters including active biomass, inert biomass and extracellular polymeric substances. Environmental Engineering and Management Journal 13: 929-938 (2014).

28.Wu J*, He C, Bi D, Yu J and Zhang Y, A bio-cake model for the soluble COD removal by the back-transport, adsorption and biodegradation processes in the submerged membrane bioreactor. Desalination 322: 1-12 (2013).

29.Wu J*, He C and Zhang Y, Modeling membrane fouling in a submerged membrane bioreactor by considering the role of solid, colloidal and soluble components. J Membr Sci 397-398: 102-111 (2012).

30.Wu J* and He C, Effect of cyclic aeration on fouling in submerged membrane bioreactor for wastewater treatment. Water Res 46: 3507-3515 (2012).

31.Wu J* and He C, The effect of settlement on wastewater carbon source availability based on respirometric and granulometric analysis. Chem Eng J 189-190: 250-255 (2012).

32.Wu J*, He C, Jiang X and Zhang M, Modeling of the submerged membrane bioreactor fouling by the combined pore constriction, pore blockage and cake formation mechanisms. Desalination 279: 127-134 (2011).

33.何成达, 丛海兵,吴军, 给水排水专业培养目标定位与特色建设探讨. 高等建筑教育 19: 37-39 (2010).

34.Wu J* and Wheatley A, Assessing activated sludge morphology by laser and image analysis. Proceedings of the ICE - Water Management 163: 139 –145 (2010).

35.Wu J* and He C, Experimental and modeling investigation of sewage solids sedimentation based on particle size distribution and fractal dimension. International Journal of Environmental Science and Technology 7: 46 (2010).

36.Wu J*, Jiang X and Wheatley A, Characterizing activated sludge process effluent by particle size distribution, respirometry and modelling. Desalination 249: 969-975 (2009).

37.Wu J and Wheatley A, Image analysis of Activated sludge to study its settling behavior, in 7th UK Meeting - IWA International Young Researchers Conference (2006).

 发明专利

§ 活性污泥在线计算机图形分析预警系统及方法 ZL201310713069.4  排名1/6

§ 一种监测污水生物处理氧吸收速率和控制曝气量的方法 ZL201410018309.3排名1/6

§ 一种污水生物处理活性污泥模型自适应参数校准方法 201310694701.5排名1/6

§ 一种硝化颗粒污泥反应装置201620454040.8  排名1/5

§ 一种城市景观水体控藻除污装置 (ZL200910264167 ) 排名3/5

§ 活性污泥法一体化水处理装置 ZL201420010836.5排名3/5

社会兼职

§ 英国特许水环境管理协会会员 (CIWEM, UK)

§ 国际水质协会会员 (IWA)

§ 江苏水利协会会员

§ 美国注册土木工程师PE-Civil-Water and Environment


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