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刘冰川

1986

工学博士

副教授

微生物电化学生物毒性传感、微生物电化学系统及其耦合系统强化降解污染物、污泥厌氧发酵等

027-87793948

bingchuan@hust.edu.cn

http://funmat.www.tehlounge.com/Research_Team/Associate_Prof_LIU_Bingchuan.htm

个人简介


一、个人简介

刘冰川副教授,2015 年于美国康涅狄格大学获得环境工程专业博士学位,多年来从事基于微生物电化学传感技术研究、高效低能耗垃圾渗滤液处理研究等,以第一或通讯作者在Biosensor & Bioelectronics,Applied Engery,Journal of Power Sources,Bioresource technology等期刊发表研究论文多篇。入职后主持了与MFC 毒性传感领域研究相关的自然科学基金青年基金1 项,参与国家重点研发计划课题一项。

共计指导博士生2名玛雅吧2、硕士生6人,主讲本科课程《水污染控制工程》、《环境规划与管理》玛雅吧2、《环境工程原理》等,担任本科生教师班主任。

二、教育经历

2003.9-2007.7 哈尔滨工业大学,海洋科学与技术学院,环境工程系,工学学士

2007.9-2010.1 上海交通大学,环境科学与工程学院,环境科学系玛雅吧2,工学硕士

2011.1-2015.5 康涅狄格大学,土木工程学院玛雅吧2,环境工程系,哲学博士

三、学科专业与研究方向

专业领域:微生物电化学技术

研究方向:微生物电化学水体毒性传感、垃圾渗滤液高效低能耗处理、污泥厌氧发酵等。

四玛雅吧2、工作经历

2015.6-现在 华中科技大学环境科学与工程学院,副教授,博导

五、近年主要研究项目

1. 国家自然科学基金委员会,青年项目,21607046玛雅吧2,微生物燃料电池毒性传感器可再生阳极生物膜温敏调控机理研究玛雅吧2,20万玛雅吧2,2017.1-2019.12,主持,结题;

2. 湖北省科技厅,面上项目,2016CFB538玛雅吧2,微生物厌氧发酵与微生物电化学技术耦合用于垃圾渗滤液的绿色能源再生与重金属回收的研究玛雅吧2,3万玛雅吧2,2016.1-2017.12玛雅吧2,主持,结题;

3. 国家科技部,国家重点研发计划课题玛雅吧2,2018YFD1100604,村镇生活垃圾及其残余物低成本无害化填埋与渗滤液处理技术集成,230万,2018.12-2022.12,子课题负责人/课题联系人,在研;

4. 国家自然科学基金委员会,面上项目玛雅吧2,51878309,基于可取址微电极阵列的电活性生物膜电信号通讯和胞外电子传递的交互机理研究,60万玛雅吧2,2019.01-2022.12,参与,在研;

5. 湖北省科技厅,2016CFB539,面上项目,光催化微生物燃料电池处理难降解有机废水的研究,湖北省自然科学基金,3万玛雅吧2,2016.1-2017.12,参与,结题。

六玛雅吧2、以第一作者或通讯作者发表主要国际期刊论文 

1. Khaled Elmaadawy, Bingchuan Liu*, Jingping Hu, Huijie Hou, Jiakuan Yang. Performance evaluation of microbial fuel cell for landfill leachate treatment: research updates and synergistic effects of hybrid systems. Journal of Environmental Sciences. Accepted.

2. Elmaadawy, K., Hu, J., Guo, S., Hou, H., Xu, J., Wang, D., Liang, T., Yang, J., Xiao, K. and Liu, B.*, 2020. Enhanced treatment of landfill leachate with cathodic algal biofilm and oxygen-consuming unit in a hybrid microbial fuel cell system. Bioresource Technology, p.123420.

3. Wang, Dongliang, Jingping Hu, Jiakuan Yang, Keke Xiao, Sha Liang, Jikun Xu, Bingchuan Liu*, and Huijie Hou*. "Fe and N co-doped carbon derived from melamine resin capsuled biomass as efficient oxygen reduction catalyst for air-cathode microbial fuel cells." International Journal of Hydrogen Energy 45, no. 4 (2020): 3163-3175. 

4. Pan, J., Hu, J., Liu, B.*, Li, J., Wang, D., Bu, C., Wang, X., Xiao, K., Liang, S., Yang, J. and Hou, H.*, 2020. Enhanced quorum sensing of anode biofilm for better sensing linearity and recovery capability of microbial fuel cell toxicity sensor. Environmental Research, 181, p.108906.

5. Li, J., Hu, J., Yang, C., Pu, W., Hou, H., Xu, J., Liu, B.*, & Yang, J.* (2019). Enhanced detection of toxicity in wastewater using a 2D smooth anode based microbial fuel cell toxicity sensor. RSC advances, 9(15), 8700-8706.

6. Wang, D., Hou, H., Hu, J., Xu, J., Huang, L., Hu, S., Liang, S., Xiao, K., Liu, B.* & Yang, J.* (2019). A bio-electro-Fenton system with a facile anti-biofouling air cathode for efficient degradation of landfill leachate. Chemosphere, 215, pp.173-181.

7. Xu, J., Hou, H., Hu, J.*, & Liu, B.* (2018). Coupling of hydrothermal and ionic liquid pretreatments for sequential biorefinery of Tamarix austromongolica. Applied Energy, 229, 745-755.

8. Xu, J., Hou, H., Hu, J.*, & Liu, B.* (2018). Optimized microwave extraction, characterization and antioxidant capacity of biological polysaccharides from Eucommia ulmoides Oliver leaf. Scientific reports, 8(1), 6561. 

9. Y. Jiang#, B. Liu#, J. Xu, K. Pan, H. Hou, J. Hu*, J. Yang*, Cross-linked chitosan/β-cyclodextrin composite for selective removal of methyl orange: Adsorption performance and mechanism, Carbohydr. Polym., 2018(182), 106-114

10. L. Huang#, B. Liu#, H. Hou, L. Wu, X. Zhu, J. Hu, J. Yang, “Facile preparation of flower-like NiMn layered double hydroxide/reduced graphene oxide microsphere composite for high-performance asymmetric supercapacitors”, J. Alloys Compounds, 2018(730),71-80

11. X. Zhu#, B. Liu#, H. Hou, Z. Huang, K. M. Zeinu, L. Huang, X. Yuan, D. Guo, J. Hu*, J. Yang*,” Alkaline intercalation of Ti 3 C 2 MXene for simultaneous electrochemical detection of Cd (II), Pb (II), Cu (II) and Hg (II)”, Electrochim. Acta, 2017(248), 46-57

12. Liu, B., Williams, I., Li, Y., Wang, L., Bagtzoglou, A., McCutcheon, J., & Li, B. (2016). Towards high power output of scaled-up benthic microbial fuel cells (BMFCs) using multiple electron collectors. Biosensors and Bioelectronics, 79, 435-441.

13. Liu, B., Weinstein, A., Kolln, M., Garrett, C., Wang, L., Bagtzoglou, A., ... & Li, B. (2015). Distributed multiple-anodes benthic microbial fuel cell as reliable power source for subsea sensors. Journal of Power Sources, 286, 210-216.

14. Liu, B., Lei, Y., & Li, B. (2014). A batch-mode cube microbial fuel cell based “shock” biosensor for wastewater quality monitoring. Biosensors and Bioelectronics, 62, 308-314.

15. Liu, B., Brückner, C., Lei, Y., Cheng, Y., Santoro, C., & Li, B. (2014). Cobalt porphyrin-based material as methanol tolerant cathode in single chamber microbial fuel cells (SCMFCs). Journal of Power Sources, 257, 246-253.

16. Liu, B., & Li, B. (2014). Single chamber microbial fuel cells (SCMFCs) treating wastewater containing methanol. International journal of hydrogen energy, 39(5), 2340-2344.

17. Liu, B., Christiansen, K., Parnas, R., Xu, Z., & Li, B. (2013). Optimizing the production of hydrogen and 1, 3-propanediol in anaerobic fermentation of biodiesel glycerol. international journal of hydrogen energy, 38(8), 3196-3205.

18. Liu, B., Li, J., Zhou, B.*, Zheng, Q., Bai, J., Zhang, J., ... & Cai, W., (2010). Kinetics and mechanisms for photoelectrochemical degradation of glucose on highly effective self-organized TiO2 nanotube arrays. Chinese Journal of Catalysis, 31(2), 163-170.

七玛雅吧2、专利及著作权等

1. 一种耦合微生物燃料电池和电芬顿系统的污水处理装置,发明人:刘冰川,汪东亮玛雅吧2,黎建峰等玛雅吧2,申请号201921417979.7(已授权)

2. 一种微藻与微生物燃料电池的耦合系统及其应用玛雅吧2,发明人:刘冰川,郭胜霞,汪东亮等玛雅吧2,申请号201910045387.5

3. 一种提高微生物燃料电池传感性能的方法,发明人:刘冰川,潘静怡,卜晨鹏等,申请号201910092325.X

4. 一种提升微生物燃料电池产电及传感性能的方法,发明人:刘冰川,黎建峰,潘静怡等玛雅吧2,申请号201910095438.5

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