环境与化学工程学院
通讯地址:梦溪路2号
个人邮箱:guozechong@just.edu.cn
邮政编码:212003
办公地点:江苏科技大学南校区
传真:
[1] 国家自然科学基金-青年基金项目(52000090)基于数理方法学探究导电材料特性对产甲烷电群落发育代谢的影响机制,2021年-2023年,24万,主持
[2] 江苏省自然科学基金-青年基金项目(BK20190980)导电材料促进厌氧产甲烷过程的关键影响因素解析与材料特性定向优化,2019-2022年,20万,主持
[3] 江苏省科技厅“双创博士(世界名校)”项目,2020年-2022年,15万,主持
[4] 江苏省自然科学基金青年基金项目《导电材料促进厌氧产甲烷过程的关键影响因素解析与材料特性定向优化》(2019-2022),在研,项目负责人
(1)王爱杰,郭泽冲,刘文宗,孙宏扬,韩其彤,蔡伟伟,王羚.微生物电解两段式污泥厌氧消化装置及利用该装置产甲烷的方法. 2016,中国,ZL201410735450.5
(2)王爱杰,周爱娟,郭泽冲,杨春雪,杜静雯. 双孢菇菌糠与剩余污泥共发酵生产挥发性脂肪酸的方法. 2014,中国,ZL201310095058.4
(1) Zechong Guo, Wenzong Liu*, Chunxue Yang, Lei Gao, Sangeetha Thangavel, Ling Wang, Zhangwei He, Weiwei Cai, Aijie Wang*. Computational and experimental analysis of organic degradation positively regulated by bioelectrochemistry in an anaerobic bioreactor system. Water Research, 2017,125: 170-179.
(2) Zechong Guo , Aijuan Zhou, Chunxue Yang, Bin Liang, Thangavel Sangeetha, Zhangwei He, Ling Wang, Weiwei Cai, Aijie Wang*, Wenzong Liu*. Enhanced short chain fatty acids production from waste activated sludge conditioning with typical agricultural residues: carbon source composition regulates community functions. 2015, 8:192.
(3) Zechong Guo , Sangeetha Thangavel, Ling Wang, Zhangwei He, Weiwei Cai, Aijie Wang*, Wenzong Liu*. Efficient Methane Production from Beer Wastewater in a Membraneless Microbial Electrolysis Cell with a Stacked Cathode: The Effect of the Cathode/Anode Ratio on Bioenergy Recovery. Energy & Fuels. 2017,31(1): 615-620.
(4) Zechong Guo , Lei Gao, Ling Wang, Wenzong Liu*, Aijie Wang. Enhanced methane recovery and exoelectrogen-methanogen evolution from low-strength wastewater in an up-flow biofilm reactor with conductive granular graphite fillers. Frontiers of Environmental Science & Engineering. 2018, 12(4):13.
(5) Sangeetha Thangavel, Zechong Guo, Wenzong Liu*, Lei Gao, Ling Wang, Minhua Cui, Chuan Chen, Aijie Wang. Energy recovery evaluation in an up flow microbial electrolysis coupled anaerobic digestion (ME-AD) reactor: Role of electrode positions and hydraulic retention times. Applied Energy. 2017, 206: 1214-1224.
2006/09-2010/07,哈尔滨工业大学,市政环境工程学院,学士
2010/09-2012/07,哈尔滨工业大学,市政环境工程学院,硕士,导师:任南琪 (院士)
2012/09-2017/12,哈尔滨工业大学,市政环境工程学院,博士,导师:王爱杰 (长江杰青)
《水资源利用与保护》
《城镇防洪》
《水工程施工与项目管理》
《海绵城市建设》
《水处理实验》
[1] 国家自然科学基金-青年基金项目(52000090)基于数理方法学探究导电材料特性对产甲烷电群落发育代谢的影响机制,2021年-2023年,24万,主持
[2] 江苏省自然科学基金-青年基金项目(BK20190980)导电材料促进厌氧产甲烷过程的关键影响因素解析与材料特性定向优化,2019-2022年,20万,主持
[3] 江苏省科技厅“双创博士(世界名校)”项目,2020年-2022年,15万,主持
[4] 江苏省自然科学基金青年基金项目《导电材料促进厌氧产甲烷过程的关键影响因素解析与材料特性定向优化》(2019-2022),在研,项目负责人
(1)王爱杰,郭泽冲,刘文宗,孙宏扬,韩其彤,蔡伟伟,王羚.微生物电解两段式污泥厌氧消化装置及利用该装置产甲烷的方法. 2016,中国,ZL201410735450.5
(2)王爱杰,周爱娟,郭泽冲,杨春雪,杜静雯. 双孢菇菌糠与剩余污泥共发酵生产挥发性脂肪酸的方法. 2014,中国,ZL201310095058.4
(1) Zechong Guo, Wenzong Liu*, Chunxue Yang, Lei Gao, Sangeetha Thangavel, Ling Wang, Zhangwei He, Weiwei Cai, Aijie Wang*. Computational and experimental analysis of organic degradation positively regulated by bioelectrochemistry in an anaerobic bioreactor system. Water Research, 2017,125: 170-179.
(2) Zechong Guo , Aijuan Zhou, Chunxue Yang, Bin Liang, Thangavel Sangeetha, Zhangwei He, Ling Wang, Weiwei Cai, Aijie Wang*, Wenzong Liu*. Enhanced short chain fatty acids production from waste activated sludge conditioning with typical agricultural residues: carbon source composition regulates community functions. 2015, 8:192.
(3) Zechong Guo , Sangeetha Thangavel, Ling Wang, Zhangwei He, Weiwei Cai, Aijie Wang*, Wenzong Liu*. Efficient Methane Production from Beer Wastewater in a Membraneless Microbial Electrolysis Cell with a Stacked Cathode: The Effect of the Cathode/Anode Ratio on Bioenergy Recovery. Energy & Fuels. 2017,31(1): 615-620.
(4) Zechong Guo , Lei Gao, Ling Wang, Wenzong Liu*, Aijie Wang. Enhanced methane recovery and exoelectrogen-methanogen evolution from low-strength wastewater in an up-flow biofilm reactor with conductive granular graphite fillers. Frontiers of Environmental Science & Engineering. 2018, 12(4):13.
(5) Sangeetha Thangavel, Zechong Guo, Wenzong Liu*, Lei Gao, Ling Wang, Minhua Cui, Chuan Chen, Aijie Wang. Energy recovery evaluation in an up flow microbial electrolysis coupled anaerobic digestion (ME-AD) reactor: Role of electrode positions and hydraulic retention times. Applied Energy. 2017, 206: 1214-1224.