翟云波

教授

基本情况

翟云波,教授,博士生导师,国家注册环保工程师,教育部新世纪优秀人才计划获得者,美国The Pennsylvania State University访问学者,“昆承英才”科技创新创业领军人才,湖南大学“岳麓学者”,入选斯坦福大学“全球前2%顶尖科学家”、全球学者库“全球顶尖前10万科学家”。

研究方向:固体废物全量资源化利用、地下水处理技术(水体中微污染物)、气态污染控制(VOCs、颗粒物污染)、污染土壤修复技术几个方面。

联系方式:ybzhai@hnu.edu.cn

教育及工作经历

2017.01---现今,湖南大学环境科学与工程学院,教授,硕士生导师、博士生导师

2006.07---2016.12,湖南大学环境科学与工程学院,副教授,硕士生导师、博士生导师

2005.06---2006.06,湖南大学环境科学与工程学院,讲师

1999.01---2000.07,冶金部武汉勘察研究总院,助理工程师

1998.07---1998.12,厦门航空有限公司,飞行员

2002-03-01—2005-06-30,湖南大学,环境工程,博士研究生,博士

2000-09-01—2002-03-01,湖南大学,环境工程,硕士研究生,硕士

1994-09-01—1998-06-20,中国地质大学(武汉),水文地质与工程地质,大学毕业,学士

科研项目

[1]国企研发中心项目:生物质全量资源化利用及碳减排技术联合研究中心,2024-2028

[2]事业单位委托项目:金水河(孟津段)污染成因识别及水质达标整治方案编制,2021-2023

[3]事业单位委托项目:青海省海西州德令哈市大柴旦镇饮用水除硼中试研究,2020/-2022

[4]国企合作项目:油基钻井废弃物超临界CO2萃取回收利用研究,2017-2019

[5]国家基金项目:不同种类污泥超临界水气化条件下催化产氢关键问题及机理研究,2010-2012,

[6]国家基金项目:甲基化富氮多孔碳对水体中高氯酸盐的去除机制及电化学再生特性研究,2016-2020

[7]国家重点研计划:家具产品中挥发性有机物(VOCs)综合释放机理、承载模型、限量值研究,2017-2020

[8]省重点研发项目:农业环境治理、生态修复及废弃物高值化利用联合研究,2018-2021

[9]环保部门委托项目:十三五生态建设与环境保护发展规划,2015-2016

[10]国企合作项目:含油污水处理副产物剩余污泥水热炭化制备高碳清洁固体燃料研究,2018-2020

[11]事业单位合作:微波辅助藻类生物质碳材料去除鱼类养殖废水中氨氮的研究,2018-2020

[12]民企合作项目:中阀科技(长沙)阀门有限公司喷漆房VOCs收集率评估,2022-2023

[13]民企合作项目:面向5G“导热-吸波”一体化石墨烯材料的研发与应用,2022-2024

[14]国企合作项目:白酒酿造废水污泥深度脱水药剂研发与应用,2022-2024

[15]省自然基金联合项目:环境水体中微塑料的分离与检测方法研究,2024/-2026

[16]环保厅合作项目:溶解性有机物存在下新型全氟化合物的还原降解效率和机制研究,2025-2026

学术成果

发表论文

[1]Yali Liu, Yunbo Zhai*, et al. Production of bio-oil with low oxygen and nitrogen contents by combined hydrothermal pretreatment and pyrolysis of sewage sludge. Energy 203 (2020) 117829.

[2]Xiangmin Liu, Yunbo Zhai*,et al. Hydrothermal carbonization of sewage sludge: Effect of feed-water pH on hydrochar’s physicochemical properties, organic component and thermal behavior. Journal of Hazardous Materials 388 (2020) 122084.

[3]Hong Ning, Yunbo Zhai*,et al. Fe(II) activated persulfate assisted hydrothermal conversion of sewage sludge: Focusing on nitrogen transformation mechanism and removal effectiveness. Chemosphere 244 (2020) 125473.

[4]Chuan Peng, Yunbo Zhai*, et al. In-depth comparison of morphology, microstructure, and pathway of char derived from sewage sludge and relevant model compounds.Waste Management 102 (2020) 432–

[5]Zhexian Wang, Yunbo Zhai*, et al. Effect of temperature on the sulfur fate during hydrothermal carbonization of sewage sludge. Environmental Pollution 260 (2020) 114067.

[6]Bei Wang, Yunbo Zhai*, et al. Ultrafine Re/Pd nanoparticles on polydopamine modified carbon nanotubes for efficient perchlorate reduction and reusability. Journal of Colloid and Interface Science 574 (2020) 122–

[7]Tengfei Wang, Yunbo Zhai*, et al. Persulfate assisted hydrothermal processing of spirulina for enhanced deoxidation carbonization. Bioresource Technology 322 (2021) 124543.

[8]Bei Wang, Yunbo Zhai*, et al. Green quaternary ammonium nitrogen functionalized mesoporous biochar for sustainable electro-adsorption of perchlorate. Chemical Engineering Journal 419 (2021) 129585.

[9]Bei Wang, Yunbo Zhai*,et al. Catalytic enhancement of hydrogenation reduction and oxygen transfer reaction for perchlorate removal: A review. Chemosphere 284 (2021) 131315.

[10]Ya Zhu, Yunbo Zhai*, et al. Thermal treatment of sewage sludge: A comparative review of the conversion principle, recovery methods and bioavailability-predicting of phosphorus. Chemosphere 291 (2022) 133053.(ESI高被引)

[11]Xiangmin Liu, Yunbo Zhai*, et al. Hydrothermal carbonization of petrochemical sludge: The fate of hydrochar and oil components. Journal of Environmental Chemical Engineering 10 (2022) 108234.

[12]Xiangmin Liu, Yunbo Zhai*, et al. Co-hydrothermal carbonization of rape straw and microalgae: pH enhanced carbonization process to obtain clean hydrochar. Energy 257 (2022) 124733.

[13]Liming Liu, Yunbo Zhai*, et al. Features and mechanisms of sewage sludge hydrothermal carbonization aqueous phase after ferrous/persulfate-based process: The selective effect of oxidation and coagulation. Journal of Cleaner Production 366 (2022) 132831.

[14]Xiaoping Liu, Yunbo Zhai*, et al. Simultaneously Enhanced Dewaterability and Biopolymer Release of Sludge by Natural Deep Eutectic Solvents: Performance, Mechanisms, and Insights of Theoretical Calculations. ACS Sustainable Chemistry & Engineering 10.36 (2022): 11926-11938.

[15]Xiaoping Liu, Yunbo Zhai*, et al. Min Xu. Mechanistic insights into enhanced waste activated sludge dewaterability with Cu (II) and Cu (II)/H2O2 treatment: Radical and non-radical pathway. Chemosphere 288 (2022) 132549.

[16]Yin Zhou, Yunbo Zhai*, et al. Biochar-derived flower-like Co-Mo2C spheres/g-C3N4 photocatalyst: Engineering morphology configuration and electronic structure tuning. Separation and Purification Technology.316(2023)123808.

[17]Xue Zhang, Yunbo Zhai*, et al. The removal characteristics and mechanisms of polystyrene microplastics with various induced photoaging degrees by CuFe2O4.Separation and Purification Technology.322(2023)124245.

[18]Zhexian Wang, Yunbo Zhai*, et al. Effect of polystyrene microplastics on tetracycline photoconversion under simulated sunlight: Vital role of aged polystyrene.Science of the Total Environment.897(2023)165399.

[19]Bei Wang, Yunbo Zhai*, et al. Nitrogen-rich porous biochar for highly efficient adsorption of perchlorate: Influencing factors and mechanism. Journal of Environmental Chemical Engineering. 11(2023)110293.

[20]Xiaoping Liu, Yunbo Zhai*, et al. One-pot production of 5-methylfurfural (5-MF) and enhanced dewaterability of waste activated sludge by hydrothermal treatment with natural deep eutectic solvents (NADES): Experimental and theoretical studies. Chemical Engineering Journal.464(2023)142575.

[21]Xiaoping Liu, Yunbo Zhai*, et al. Unraveling the impacts of Cu+-based treatments on sludge dewaterability: The overlooked role of Cu3+.Chemical Engineering Journal.457 (2023)141106.

[22]Xiaoping Liu, Yunbo Zhai*, et al. The novel application of type II deep eutectic solvents (DES) for sludge dewatering. Separation and Purification Technology.306 (2023)122714.

[23]Liming Liu, Yunbo Zhai*, et al. Treatment of sewage sludge hydrothermal carbonization aqueous phase by Fe(II)/CaO2 system: Oxidation behaviors and mechanism of organic compounds. Waste Management.158(2023)164–

[24]Changlan Hou, Yunbo Zhai*, et al. Differences between reductive defluorination of perfluorooctanoic acid by chlorination, bromination and iodization in the vacuum-ultraviolet/sulfite process. Journal of Hazardous Materials. 460 (2023) 132459.

[25]Hongxia Wang, Yunbo Zhai*, et al. Efficient removal of heavy metals from sewage sludge using a low-cost protic ionic liquid: Investigation of mechanism and ecological risk. Journal of Environmental Chemical Engineering. 12(2024)112840.

[26]Xiaoping Liu, Yunbo Zhai*, et al. Enhanced phosphorus release from waste activated sludge triggered by ferrate/sulfite oxidation process: The overlooked role of high valent iron. Journal of Environmental Chemical Engineering.12(2024)111617.

[27]Zhexian Wang, Yunbo Zhai*, et al. The impact of dissolved organic matter on the photodegradation of tetracycline in the presence of microplastics. Chemosphere.349 (2024)140784.

[28]Cheng Huang, Yunbo Zhai*, et al. A comprehensive review of the “black gold catalysts” in wastewater treatment: Properties, applications and bibliometric analysis, Chemosphere.362(2024)142775.

[29]Cheng Huang, Yunbo Zhai*, et al. Deep eutectic solvent-assisted dual valorization of waste distillers' grain-derived lignocellulose: pyrolyzed hydrochar microflower-supported peroxymonosulfate activation and lignin carbon dot-aided Fe3+ detection. Environ. Sci.: Nano, 2024,11, 3887-3899.

[30]Zhexian Wang, Yunbo Zhai*, et al. Microplastic photoaging: A critical review on occurrence, influence factors, mechanism and potential effect. Journal of Cleaner Production. 464(2024)142783.

[31]Yu Xie, Yunbo Zhai*, et al. Deep eutectic solvents pretreatment enhances methane production from anaerobic digestion of waste activated sludge: Effectiveness evaluation and mechanism elucidation. Journal of Environmental Management.356(2024)120615.

[32]Wanying Ren, Yunbo Zhai*, et al. Peracetic acid pretreatment improves biogas production from anaerobic digestion of sewage sludge by promoting organic matter release, conversion and affecting microbial community. Journal of Environmental Management.349(2024)119427.

[33]Liming Liu, Yunbo Zhai*, et al. In-Depth Identification of the Sources and Features of Organic Fluorescent Structures in the Sewage Sludge Hydrothermal Aqueous Phase. ACS EST Water. 2024,4,610−620.

[34]Fashen Liang, Yunbo Zhai*, et al. Enhancing bioavailable carbon sources and minimizing ammonia emissions in distillery sludge and distiller’s grains waste co-composting through deep eutectic solvent addition. Bioresource Technology 397 (2024) 130491.

[35]Liming Liu, Yunbo Zhai*,et al. Ionic liquid catalyzed low-temperature hydrothermal carbonization of sewage sludge to produce hydrochar with low heavy metal content and positive energy recovery. Bioresource Technology. 402(2024)130803.

[36]Zhexian Wang, Yunbo Zhai*, et al. The impact of dissolved organic matter on the photodegradation of tetracycline in the presence of microplastics. Chemosphere.349 (2024)140784.

[37]Liming Liu, Yunbo Zhai*, et al. Ionic liquid-catalyzed hydrothermal carbonization of sewage sludge: Effect of residence time and liquid phase circulation on hydrochar characteristic. Renewable Energy.231(2024)120989.

[38]Shiyun Jin, Yunbo Zhai*, et al. Removal of low concentration of perchlorate from natural water by quaternized chitosan sphere (CGQS): Efficiency and mechanism research. Journal of Hazardous Materials 466 (2024)133595.

[39]Xiaoping Liu, Yunbo Zhai*, et al. Natural deep eutectic solvents pretreatments for sludge dewaterability improvement and subsequent volatile fatty acids production: Insights of sludge disintegration and metagenomic characterization. Chemical Engineering Journal. 493(2024)152498.

[40]Xue Zhang, Yunbo Zhai*, et al. Effect of microplastic ingredient on the removal of microplastics by calcium alginate flocculation. Chemical Engineering Journal. 498(2024)155701.

[41]Yin Zhou, Yunbo Zhai*, et al. Crystallinity modulation and microenvironment engineering synergistically manipulate ROS generation on Ni single-atom photocatalysts, Chemical Engineering Journal. 494(2024)152896.

[42]Liming Liu, Yunbo Zhai*, et al. Treatment of sludge hydrothermal carbonization wastewater by ferrous/sodium percarbonate system: Effect of wastewater composition and role of coagulation and oxidation. Water Research. 267(2024)122531.

[43]Luna Zhao, Yunbo Zhai*, et al. Efficient phosphorus recovery from waste activated sludge: Pretreatment with natural deep eutectic solvent and recovery as vivianite. Water Research. 263(2024)122161.

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