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梁大为
2023-05-06 10:09
  • 梁大为
  • 梁大为 - 教授-北京航空航天大学-空间与环境学院-个人资料

近期热点

资料介绍

个人简历


教育经历\r
2002.12-2006.11 香港大学 环境工程 博士学位 博士研究生毕业 \r
2000.9-2002.12 哈尔滨工业大学 环境工程 硕士学位 硕士研究生毕业 \r
1996.9-2000.7 哈尔滨工业大学 市政工程 学士学位 大学本科毕业 \r
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工作经历\r
2021.7-至今 北京航空航天大学 空间与环境学院 教授 在职 \r
2016.5 - 2021.7 北京航空航天大学 空间与环境学院 副教授 \r
2009.5 - 2016.4 北京航空航天大学 化学与环境学院 副教授 \r
2007.4 - 2009.3 新加坡国立大学环境科学与工程系 博士后 研究员 \r
2015.7 - 2015.10 美国南加州大学 地球与环境科学系 访问学者 \r
2019.12 - 2020.9 美国俄勒冈州立大学 生物与生态工程系 访问学者 \r
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曾获荣誉:\r
2017曾获荣誉当选:北航十佳教师\r
2017曾获荣誉当选:北航拔尖人才\r
2013曾获荣誉当选:北京市科技新星\r
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社会兼职\r
2021.1-至今 中国工程院院刊《Engineering》青年编委\r
《环境科学学报》英文编辑

研究领域


低能耗污水处理与资源化\r
电化学高级氧化\r
微生物电解池产氢\r
电容去离子脱盐""

近期论文


Na Zhao, Dawei Liang*, Hong Liu, Shujuan Meng, Xiaohu Li, Efficient H2 production in a novel separator electrode assembly (SEA) microbial electrolysis cell. Chem. Eng. J. 2023, 138561\r
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Qinghao Wu, Dawei Liang*, Shanfu Lu, Haining Wang, Yan Xiang, Doron Aurbach, Eran Avraham, Izaak Cohen, Advances and perspectives in integrated membrane capacitive deionization for water desalination. Desalination, 2022, 542, 116043\r
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Chao Qu, Dawei Liang*, Novel electrochemical advanced oxidation processes with H2O2 generation cathode for water treatment: A review. J. Environ. Chem. Eng., 2022, 10, 3, 107896\r
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Chao Qu, Yan-gang Li, Shu-juan Meng, Xiao-hu Li, Shu-jun Zhang, Da-wei Liang*. Enhanced refractory organics removal by? OH and 1O2 generated in an electro-oxidation system with cathodic Fenton-like reaction. J. Hazard. Mater., 2022, 434, 128923\r
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Shujuan Meng, Rui Wang, Xianghao Meng, Ying Wang, Wenhong Fan, Dawei Liang*, Meng Zhang, Yuan Liao, Chuyang Tang, Reaction heterogeneity in the bridging effect of divalent cations on polysaccharide fouling, J. Membr. Sci., 2022, 641, 119933\r
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Qinghao Wu, Dawei Liang, Shanfu Lu, Jin Zhang, Haining Wang, Yan Xiang, Doron Aurbach, Novel Inorganic Integrated Membrane Electrodes for Membrane Capacitive Deionization, ACS Appl. Mater. Interfaces 2021, 13, 39, 46537–46548\r
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Meng, S., Wang, R., Zhang, K., Meng, X., Xue, W., Liu, H., Liang, D., Zhao, Q., Liu, Y., 2021. Transparent exopolymer particles (TEPs)-associated protobiofilm: A neglected contributor to biofouling during membrane filtration. Front. Environ. Sci. Eng. 15, 1–10. https://doi.org/10.1007/s11783-020-1361-7\r
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Zhao, N., Liang, D., Li, X., Meng, S., Liu, H., Hydrophilic porous materials provide efficient gas-liquid separation to advance hydrogen production in microbial electrolysis cells. Bioresour. Technol. 2021, 337, 125352. https://doi.org/10.1016/j.biortech.2021.125352 \r
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Chao Qu, Na Ren, Shu-jun Zhang, Yan-gang Li, Shu-juan Meng, Xiao-hu Li, Shan-quan Wang, Da-wei Liang*, An-ran Li. Degradation of triclosan by anodic oxidation/in-situ peroxone process: Kinetics, pathway and reaction mechanism. Chemosphere 2021, 272, 129453. https://doi.org/10.1016/J.CHEMOSPHERE.2020.129453 \r
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Zhao, N., Liang, D., Meng, S., Li, X.,Bibliometric and content analysis on emerging technologies of hydrogen production using microbial electrolysis cells. Int. J. Hydrogen Energy 2020, 45, 33310–33324. https://doi.org/10.1016/j.ijhydene.2020.09.104 \r
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Xiaohu Li, Si Chen, Dawei Liang, Merlin Alvarado-Moralesa, Low-grade heat energy driven microbial electrosynthesis for ethanol and acetate production from CO2 reduction. J. Power Sources 2020, 477, 228990. https://doi.org/10.1016/j.jpowsour.2020.228990 \r
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Qinghao Wu, Dawei Liang, Eran Avraham, Izaak Cohen, Doron Aurbach, Shanfu Lu, Haining Wang, Yan Xiang, Enhanced capacitive deionization of an integrated membrane electrode by thin layer spray-coating of ion exchange polymers on activated carbon electrode. Desalination 2020, 491, 114460. https://doi.org/10.1016/j.desal.2020.114460 \r
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Ghulam Sarwar Soomro, Chao Qu, Na Ren, Shujuan Meng, Xiaohu Li, Dawei Liang*, Shujun Zhang, Yangang Li, Efficient removal of refractory organics in landfill leachate concentrates by electrocoagulation in tandem with simultaneous electro-oxidation and in-situ peroxone. Environmental Research, 2020, 183, 109249\r
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Chao Qu, Ghulam Sarwar Soomro, Na Ren, Da-wei Liang*, Shan-fu Lu, Yan Xiang, Shu-jun Zhang, Enhanced electro-oxidation/peroxone (in situ) process with a Ti-based nickel-antimony doped tin oxide anode for phenol degradation. Journal of hazardous materials 2020, 384, 121398\r
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Huang, C., Liu, H., Meng, S., Liang, D., 2020. membranes Effect of PAC on the Behavior of Dynamic Membrane Bioreactor Filtration Layer Based on the Analysis of Mixed Liquid Properties and Model Fitting. Membranes (Basel). 10, 420. https://doi.org/10.3390/membranes10120420 \r
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Qinghao Wu, Dawei Liang*, Xiumei Ma, Shanfu Lu, Yan Xiang, Chitosan-based activated carbon as economic and efficient sustainable material for capacitive deionization of low salinity water. RSC Advances, 2019, 9(46), 26676-26684\r
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Yanan Fu, Yongjia Zhang Bojian, Dawei Liang*, Shanfu Lu, Yan Xiang, Beizhen Xie, Hong Liu, Kenneth H. Nealson, Extracellular electron transfer of Shewanella oneidensis MR-1 for cathodic hydrogen evolution reaction, Electrochimica Acta, 2019, 305, 528-533\r
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Chao Qu, Shanfu Lu, Dawei Liang*, Sian Chen, Yan Xiang, Shujun Zhang. Simultaneous electro-oxidation and in situ electro-peroxone process for the degradation of refractory organics in wastewater. Journal of hazardous materials 2019, 364, 468-474\r
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Shanquan Wang, Lan Qiu, Xiaowei Liu, Guofang Xu, Michael Siegert, Qihong Lu, Philippe Juneau, Ling Yu, Dawei Liang, Zhili He, Rongliang Qiu Electron transport chains in organohalide-respiring bacteria and bioremediation implications. Biotechnology advances 2018, 36 (4), 1194-1206\r
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Shujuan Meng, Wenhong Fan, Xiaomin Li, Yu Liu, Dawei Liang*, Xiaoxing Liu. Intermolecular interactions of polysaccharides in membrane fouling during microfiltration. Water Research, 2018, 143, 38-46.\r
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Lina Wu, Zhi Li, Chen Zhao, Dawei Liang, Yongzhen Peng, A novel partial-denitrification strategy for post-anammox to effectively remove nitrogen from landfill leachate, Science of the Total Environment, 2018, 633, 745-751\r
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Dawei Liang*, Shanquan Wang, Development and characterization of an anaerobic microcosm for reductive dechlorination of PCBs. Front. Environ. Sci. Eng. 2017, 11(6): 2,\r
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Yongjia ZHANG, Dawei LIANG*, Weiwei XU, Yan XIANG, Beizhen XIE, Hong LIU. Kinetics and gene diversity of denitrifying biocathode in biological electrochemical systems. RSC Adv., 2017, 7, 24981–24987\r
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Dawei Liang*, Weiwei Xu, Yanyan Liu, Sikan Peng, Beizhen Xie, Shanfu Lu, Yan Xiang, Hong Liu. Can bicarbonate replace phosphate to improve the sustainability of bioelectrochemical systems for H2 production? RSC Adv. 2015, 5, 27082-27086\r
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Dawei Liang*, Yanyan Liu, Sikan Peng, Fei Lan, Shanfu Lu, Yan Xiang, Effects of bicarbonate and cathode potential on hydrogen production in a biocathode electrolysis cell. Front. Environ. Sci. Eng., 2014, 8(4), 624-630\r
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Qihong Lu, Ling Yu, Zhiwei Liang, Qingyun Yan, Zhili He, Tiangang Luan, Dawei Liang*, Shanquan Wang*, Dehalococcoides as a potential biomarker evidence for uncharacterized organohalides in environmental samples. Front. Microbiol., 2017, 8, (1677).\r
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Siyuan Rao, Zhibin Guo, Dawei Liang*, Deliang Chen, Yuan Li, Yan Xiang*. 3D Proton Transfer Augments Bio-Photocurrent Generation. Adv. Mater. 2015, 27, 16, 2668-2673,\r
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Xiao-hu Li, Da-wei Liang*, Yan-Xia Bai, Yao-ting Fan*, Hong-Wei Hou, Enhanced H2 production from corn stalk by integrating dark fermentation and single chamber microbial electrolysis cells with double anode arrangement. International Journal of Hydrogen Energy 2014, 39(17), 8977–8982\r
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Sikan Peng, Dawei Liang*, Peng Diao, Yanyan Liu, Fei Lan, Yuhan Yang, Shanfu Lu, Xiang, Y.* Nernst-Ping-Pong Model for Evaluating the Effects of the Substrate Concentration and Anode Potential on the Kinetic Characteristics of Bioanode. Bioresour. Technol., 2013, 136, 610-616,\r
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Da-wei Liang*, Si-kan Peng, Shan-fu Lu, Yan-yan Liu, Fei Lan, Yan Xiang, Enhancement of hydrogen production in a single chamber microbial electrolysis cell through anode arrangment optimization. Bioresour. Technol., 2011, 102, 10881-10885\r
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Yu Yang, Ye Li, Yi-min Zhang*, Da-wei Liang*, Applying hybrid coagulants and polyacrylamide ?occulants in the treatment of high-phosphorus hematite ?otation wastewater (HHFW): Optimization through response surface methodology. 2010, Sep. Purif. Technol., 76(1), 72-78\r
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吴擎昊,马秀梅,卢善富,相艳,梁大为*,利用活性碳毡构建流通式电容去离子器件及其电容脱盐性能研究,环境科学学报, 2018, 38(4), 1509-1513.\r
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杨雨寒,徐伟伟,彭思侃,卢善富,相艳,梁大为*, 纳米零价铁降解水中多溴联苯醚(PBDEs)及降解途经研究. 环境科学,2014, 35(2), 165-172\r
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Dawei Liang, Guodong Han, Yongjia Zhang, Siyuan Rao, Shanfu Lu, Haining Wang, Yan Xiang*. Efficient H2 production in a microbial photoelectrochemical cell with a composite Cu2O/NiOx photocathode under visible light. Appl. Energy, 2016, 168, 544–549\r
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Dawei Liang, Yuhan Yang, Weiwei Xu, Sikan Peng, Shanfu Lu, Yan Xiang, Nonionic surfactant greatly enhances the reductive debromination of polybrominated diphenyl ethers by nanoscale zerovalent iron: Mechanism and kinetics, Journal of Hazardous Materials, 2014, 278, 592–596

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