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硕士生导师

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麻太刚
发布日期:2025/03/20


                           

     

个人简介      

麻太刚,男,1992年生,工学博士,内聘副教授,硕士生导师,2023年12月毕业于吉林大学环境工程专业,获得工学博士学位。现就职于WilliamHill威廉希尔。        

主要从事过硫酸盐高级氧化技术和废水处理技术的设计、开发与应用,环境功能材料的开发与应用。主持william威廉中文博士科研启动项目。近些年在Chemical Engineering Journal、Journal of Hazardous Materials和Separation and Purification Technology等环境领域高水平期刊共发表SCI论文16篇,参与横纵向项目10余项。        

      Ø 教育及工作经历        

2011/09 - 2015/06,吉林大学,环境工程,工学学士        

2016/09 - 2019/06,吉林大学,环境工程,工程硕士        

2019/09 - 2023/12,吉林大学,环境工程,工学博士,导师:任何军 教授        

2023/12 - 至今    william威廉中文,WilliamHill威廉希尔,内聘副教授        

      Ø 研究方向           

1. 过硫酸盐高级氧化技术研发与应用        

2. 废水处理技术研发与应用        

3. 环境功能材料和装备的研发与应用        

4. 环境污染物的资源化利用        

      Ø 代表性科研成果(专著、论文、发明专利及获奖)        

[1] Taigang Ma, Hejun Ren*, Meijun Liu, Rui Zhou*, Nanoconfined catalytic membrane assembled by nitrogen-doped carbon encapsulating Fe-based nanoparticles for rapid degradation of 2,4-dichlorophenol in wastewater by peroxymonosulfate activation, Journal of Hazardous Materials, 2024, 466, 133523. (IF=13.6)                

[2] Taigang Ma, Hejun Ren*, Meijun Liu, Jinhao Duan, Zhonghui Han, Rui Zhou*, Strong enhancement on electron transfer pathway of peroxymonosulfate activation for rapid organic pollutant degradation in wastewater by iron encapsulated into nitrogen-doped carbon: iron-cores as electron supply stations, Chemical Engineering Journal, 2024, 479, 147953. (IF=15.1)                

[3] Taigang Ma, Jinhao Duan, Zhonghui Han, Hejun Ren*, Boosting the activation of peroxydisulfate and the degradation of ofloxacin over polyaniline-derived N/B co-doped carbon through electron transfer dominated oxidation processes, Separation and Purification Technology, 2024, 332, 125822. (IF=8.6)                

[4] Taigang Ma, Meijun Liu, Nnanake-Abasi O. Offiong, Jinhao Duan, Yuchun Liu, Hejun Ren*, Rui Zhou*, Highly-efficient peroxydisulfate activation by polyaniline-polypyrrole copolymers derived pyrolytic carbon for 2,4-dichlorophenol removal in water: Coupling mechanism of singlet oxygen and electron transfer, Journal of Hazardous Materials, 2023, 445, 130580. (IF=13.6)                

[5] Taigang Ma, Meijun Liu, Tingting Li, Hejun Ren*, Rui Zhou*, Nitrogen-doped carbon nanotubes derived from carbonized polyaniline as a robust peroxydisulfate activator for the oxidation removal of organic pollutants: Singlet oxygen dominated mechanism and structure-activity relationship, Separation and Purification Technology, 2022, 293, 121124. (IF=9.136)                

[6] Hejun Ren, Taigang Ma, Jian Zhao, Rui Zhou*, Vc-Functionalized Fe3O4 Nanocomposites as Peroxidase-like Mimetics for H2O2 and Glucose Sensing, Chemical Research in Chinese Universities, 2018, 34, 260-268. (IF=2.726)                

[7] Meijun Liu, Zhi Liu, Taigang Ma, Zhisheng Liu, Yangxue Li* and Donglei Zou*, Luminescent cellulose-based porous binary metal-organic gels in an adsorption bed for effective adsorption and sensitive detection of chlortetracycline hydrochloride, Journal of Hazardous Materials, 2021, 414, 125473. (IF=14.224)                

[8] Meijun Liu, Donglei Zou, Taigang Ma, Zhi Liu, Haiyang Yu, Yangxue Li* and Zhen-An Qiao*, Stable cellulose-based porous binary metal–organic gels as highly efficient adsorbents and their application in an adsorption bed for chlortetracycline hydrochloride decontamination, Journal of Materials Chemistry A, 2020, 8, 6670‒6681. (IF=14.511)                

[9] Meijun Liu, Donglei Zou, Taigang Ma, Zhi Liu and Yangxue Li*, Simultaneous efficient adsorption and accelerated photocatalytic degradation of chlortetracycline hydrochloride over novel Fe-based MOGs under visible light irradiation assisted by hydrogen peroxide, Inorganic Chemistry Frontiers, 2019, 6, 1388‒ 1397. (IF=7.779)                

[10] Meijun Liu, Shuai Xia, Zhi Liu, Taigang Ma, Zhisheng Liu, Yangxue Li* and Donglei Zou*, Luminescent porous metal–organic gels for efficient adsorption and sensitive detection of chlortetracycline hydrochloride assisted by smartphones and test paper-based analytical device, Inorganic Chemistry Frontiers, 2022, 9, 1722-1734.( IF=7.779)                

[11] Rui Zhou, Tingting Li, Yu Su, Taigang Ma, Lijian Zhang, Hejun Ren*, Oxidative removal of metronidazole from aqueous solution by thermally activated persulfate process: kinetics and mechanisms, Environmental Science and Pollution Research, 2018, 25, 2466–2475. (IF=5.190)                

[12] Rui Zhou, Jian Zhao, Ningfei Shen, Taigang Ma, Yu Su, Hejun Ren*,Efficient degradation of 2,4-dichlorophenol in aqueous solution by peroxymonosulfate activated with magnetic spinel FeCo2O4 nanoparticles, Chemosphere, 2018, 197, 670-679. (IF=8.943)                

[13] Hejun Ren, Hongwei Liu, Tingchen Cui, Shuai Liu, Taigang Ma, Zhonghui Han*, Rui Zhou*, Boosting the activation of Peroxymonosulfate and the degradation of metronidazole over FeCo2O4 quantum dots anchored on β-FeOOH Nanosheets: Inspired from octahedral Co (II) with missing angle, Chemical Engineering Journal, 2022, 431, 133803. (IF=16.744)                

[14] Mengqi Sun, Baoyu Chen, Hongjun Wang, Nan Wang, Taigang Ma, Yingshun Cui, Tianhao Luan, Seongjun Chun, Chunguang Liu, Lichun Wang*, Microbial Interactions and Roles in Soil Fertility in Seasonal Freeze-Thaw Periods under Different Straw Returning Strategies, Agriculture (Basel), 2021, 11, 779. (IF=3.408)                

[15] Meijun Liu, Bing Yao, Shibo Cong, Taigang Ma and Donglei Zou, Optimization of Wastewater Phosphorus Removal in Winter Temperatures Using an Anaerobic–Critical Aerobic Strategy in a Pilot-Scale Sequencing Batch Reactor, Water, 2020, 12, 110. (IF=3.530)                

[16] Rui Zhou, Song Lu, Yu Su, Tingting Li, Taigang Ma, Hejun Ren*, Hierarchically fusiform CuO microstructures decorated with Fe3O4 nanoparticles as novel persulfate activators for 4-aminobenzenesulfonic acid degradation in aqueous solution, Journal of Alloys and Compounds, 2020, 815, 152394. (IF=6.371)                

      Ø 研究生招生                

招收认真踏实、积极乐观,对环境保护与治理有浓厚兴趣,拥有较强动手能力和良好科学素养,具有环境科学、环境工程、化学工程与工艺、材料科学与工程、计算机科学与工程等相关专业背景的学生。        

   

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