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杨涛

基本情况

主要领域为水污染控制光化学技术研究。主持国家自然科学基金项目1项、省部级以上项目4项、市厅级项目4项、横向项目2项;以第一或通讯作者发表SCI论文41篇(中科院一区top论文36篇,含多篇论文被选为亮点文章及杰出论文)、中文核心论文4篇,其中环境领域顶刊16篇(均为单独一作或唯一通讯,含5篇Environmental Science & Technology和11篇Water Research)、化学领域顶刊1篇,高被引论文3篇,SCI他引2000多次,H因子28;获授权发明专利4项(实现转化1项);博士学位论文被评为“中国环境科学学会优秀博士学位论文”;入选2024年度全球前2%顶尖科学家榜单;指导学生参加广东省项目2项,挑战杯国家级铜奖指导教师,主持教改项目1项,发表教改论文3篇(第一作者1篇、通讯作者1篇)。

联系方式

地址:广东省江门市蓬江区东成村22号 五邑大学 环境与化学工程学院

邮编:529020

邮箱:leoyanghit@126.com

工作经历

2019年9月至2023年11月,五邑大学,生物科技与大健康学院,副教授,硕士生导师

2023年11月至今,五邑大学,环境与化学工程学院,副教授,硕士生导师

教育及学习经历

2014年9月-2019年7月,哈尔滨工业大学环境学院,博士

讲授课程

本科生:《环境监测》;《环境监测实验》;《水污染控制工程》;《水污染控制工程实验》;《生产实习》等

研究生:《环境科学与技术研究进展》

教学项目

本科高质量课程建设与创新创业教育建设改革项目,《环境工程微生物学》

本科高质量课程建设与创新创业教育建设改革项目,《环境监测》

主要研究方向

水处理(高级)氧化技术应用研究

膜法水处理技术研究

管网消毒技术研究

饮用水中重金属控制技术研究

科研项目

1.国家自然科学青年基金项目,2022年01月-2024年12月,30万,主持。

2.广东省自然科学基金面上项目,2025年01月-2027年12月,10万,主持。

3.广东省自然科学基金面上项目,2023年01月-2025年12月,10万,主持。

4.广东省自然科学基金面上项目,2022年01月-2024年12月,10万,主持。

5.广东省普通高校重点领域项目,2024年10月-2027年10月,10万,主持。

6.广东省普通高校青年创新人才项目,2021年01月-2022年12月,5万,主持(已结题,结题评价优秀)。

7.国家重点实验室开放课题面上项目,2022年01月-2024年12月,5万,主持。

8.江门市基础与应用基础研究重点项目,2024年01月-2026年12月,5万,主持。

9.江门市基础与理论科学研究类科技计划项目, 2020年06月-2022年05月,10万,主持(已结题)。

10.五邑大学高层次人才科研启动项目,2019年08月-2024年08月,100万,主持。

发表学术论文

1. Li J, Yang T*, Zeng G, An L, Jiang J, Ao Z, Ma J. Ozone- and Hydroxyl Radical-Induced Degradation of Micropollutants in a Novel UVA-LED-Activated Periodate Advanced Oxidation Process. Environmental Science & Technology, 2023, 57, 47, 18607-18616. (中科院一区top,IF:11.4)

2. Yang T, Mai J, Zhu M, Peng Q, Huang C, Wu S, Tan Q, Jia J, Fang J*, Ma J*. Enhanced Permanganate Activation under UVA-LED Irradiation: Unraveled Mechanism Involving Manganese Species and Hydroxyl Radical. Environmental Science & Technology, 2022, 56, (24), 17720-17731. (中科院一区top,IF:11.4)

3. Yang T*, Mai J, Cheng H, Zhu M, Wu S, Tang L, Liang P, Jia J, Ma J*. UVA-LED-Assisted Activation of the Ferrate(VI) Process for Enhanced Micropollutant Degradation: Important Role of Ferrate(IV) and Ferrate(V). Environmental Science & Technology, 2022, 56, (2), 1221-1232. (中科院一区top,IF:11.4)

4. Yang T, Wu S, Liu C, Liu Y, Zhang H, Cheng H, Wang L, Guo L, Li Y, Liu M-C*, Ma J*. Efficient degradation of organoarsenic by UV/chlorine treatment: Kinetics, mechanism, enhanced arsenic removal, and cytotoxicity. Environmental Science & Technology, 2021, 55, (3), 2037-2047. (中科院一区top,IF:11.4)

5. Yang T, Wang L*, Liu Y, Jiang J, Huang Z, Pang S-Y, Cheng H, Gao D, Ma J*. Removal of organoarsenic with ferrate and ferrate resultant nanoparticles: Oxidation and adsorption. Environmental Science & Technology, 2018, 52, (22), 13325-13335. (中科院一区top,IF:11.4,亮点文章)

6. An L, Kong X, Jiang M, Li W, Lv Q, Hou X, Liu C, Su P, Ma J, Yang T*. Photo-assisted natural chalcopyrite activated peracetic acid for efficient micropollutant degradation. Water Research, 2024, 257, 121699. (中科院一区top,IF:12.8)

7. Zhang H, Jiang M, Su P, Lv Q, Zeng G, An L, Ma J, Yang T*. Novel sunlight-induced monochloramine activation system for efficient microcontaminant abatement. Water Research, 2024, 258, 121798. (中科院一区top,IF:12.8)

8. Zhang H, Jiang, M, Su P, Lv Q, Zeng G, An L, Cao J, Zhou Y, Snyder S. A, Ma J, Yang T*. Refinement of kinetic model and understanding the role of dichloride radical (Cl2•−) in radical transformation in the UV/NH2Cl process. Water Research, 2024, 254, 121440. (中科院一区top,IF:12.8)

9. Yang T*, An L, Zeng G, Mai J, Li Y*, Lian J, Zhang H, Li J, Cheng* X, Jia J, Liu M, Ma J. Enhanced hydroxyl radical generation for micropollutant degradation in the In2O3/Vis-LED process through the addition of periodate. Water Research, 2023, 243, 120401. (中科院一区top,IF:12.8)

10. Yang T*, Huang C, An L, Zeng G, Li J, Liu C, Xu X, Jia J, Ma J. The overlooked role of Cr(VI) in micropollutant degradation under solar light irradiation. Water Research, 2023, 242, 120309. (中科院一区top,IF:12.8)

11. Yang T, An L, Zeng G, Jiang M, Li J, Liu C, Jia J, Ma J. Efficient removal of p-arsanilic acid and arsenite by Fe(II)/peracetic acid (Fe(II)/PAA) and PAA processes. Water Research, 2023, 241, 120091. (中科院一区top,IF:12.8)

12. Yang T, Zhu M, An L, Zeng G, Fan C, Li J*, Jiang J, Ma J. Photolysis of chlorite by solar light: An overlooked mitigation pathway for chlorite and micropollutants. Water Research, 2023, 233, 119809. (中科院一区top,IF:12.8)

13. Yang T*, Mai J, Wu S, Luo W, Zhu M, Liang P, Guo L, Chen J, Jia J, Ma J*. Insight into enhanced activation of permanganate under simulated solar irradiation: Rapid formation of manganese species. Water Research, 2021, 205, 117669. (中科院一区top,IF:12.8)

14. Yang T, Liu Y, Wang L*, Jiang J, Huang Z, Pang S-Y, Cheng H, Gao D, Ma J*. Highly effective oxidation of roxarsone by ferrate and simultaneous arsenic removal with in situ formed ferric nanoparticles. Water Research, 2018, 147, 321-330. (中科院一区top,IF:12.8)

15. Yang T, Wang L*, Liu Y, Huang Z, He H, Wang X, Jiang J, Gao D, Ma J*. Comparative study on ferrate oxidation of BPS and BPAF: Kinetics, reaction mechanism, and the improvement on their biodegradability. Water Research, 2019, 148, 115-125. (中科院一区top,IF:12.8)

16. Haochen Zhang, Peng Su, Maoju Jiang, Chenlong Liu, Qixiao Lv, Wenqi Li, Xiangyang Hou , Shuo Li*, Bin Zhang , Bei Zhang , Jun M, Tao Yang *. Efficient Permanganate Activation under UV 222 nm Irradiation for Enhanced Pollutant Abatement. Water Research, 2025, Just Accepted. (中科院一区top,IF:12.8)

17. Wu Y, Liang G, Li W B, Zhong X.-F, Zhang Y.-Y, Ye J.-W, Yang T*, Mo Z-W*, Chen X-M. Boosting Degradation of Antibiotics via Peroxymonosulfate Activation with a Cu-based Metal-Organic Framework. Chemical Science, 2024, 15, 9733-9741. (中科院一区top,IF:8.4)

18. Yang T*, Jiang M, Su P, Lv Q, Li W, Liu C, Zhang B*, Zhang H, Zang L*, Liu M, Ma J. Enhanced peracetic acid activation under Far-UVC Radiation: Micropollutant degradation and radical assessment. Chemical Engineering Journal, 2024, 502, 158064. (中科院一区top,IF:15.1)

19. Li J, Jiang M, Su P, Lv Q, An L, Zeng G, Hou X, Li W, Chen C, Ma J, Yang T*. Generation of •OH and intermediate manganese species for the efficient removal of micropollutants via photocatalysis of permanganate by indium oxide. Chemical Engineering Journal, 2024, 483, 149084(中科院一区top,IF:15.1)

20. Mai J, Zeng G, An L, Jiang M, Su P, Lv Q, Hou X, Kong X, Jia J, Yang T*, Ma J. Singlet oxygen is also involved in the formation of hypoiodous acid during the transformation of phenolic pollutants by peracetic acid in the presence of iodide. Chemical Engineering Journal, 2023, 476, 146725(中科院一区top,IF:15.1)

21. Zeng G, Mai J, An L, Huang C, Li J, Wang H, Li Q, Yang J, Xu X, Liu C, Jia J, Yang T*, Ma J. Insight into wavelength-dependent UVA-LED/chlorine process for micropollutant degradation: Performance, mechanism, and effects of water matrix. Chemical Engineering Journal, 2023, 471, 144317. (中科院一区top,IF:15.1)

22. Zhang H, Zhu Z, Zhou X, Tang B, Yu J, Zhang B, Ma J*, Yang T*. Degradation of ibuprofen by the UV/chlorine/TiO2 process: Kinetics, influencing factor simulation, energy consumption, toxicity and byproducts. Chemical Engineering Journal, 2022, 450, 137849. (中科院一区top,IF:15.1)

23. Yang T #,*, Wu S #, Mai J, Chen L, Huang C, Zeng G, Wu Y, Zhu M, Huang Y, Mo Z, Guo L, Jia J, Ma J*. Activation of ferrate(VI) by sulfite for effectively degrading iodinated contrast media and synchronously controlling I-DBPs formation. Chemical Engineering Journal, 2022, 442, 136011. (中科院一区top,IF:15.1)

24. Yang T, Wang L*, Liu Y-L, Zhang W, Cheng H-J, Liu M-C, Ma J*. Ferrate oxidation of bisphenol F and removal of oxidation products with ferrate resulted particles. Chemical Engineering Journal, 2020, 383, 123167. (中科院一区top,IF:15.1)

25. Zeng G, An L, Jiang M, Li W, Hou X, Su P, Liu M, Cheng H, Long Z*, Yang J, Ma J, Yang T*. Novel catalyst-free activation of chlorine by visible light for micropollutant abatement. Journal of Hazardous Materials, 2024, 480, 136084. (中科院一区top,IF:12.2)

26. Yang, T.; Zeng, G.; Jiang, M.; Su, P.; Liu, C.; Lv, Q.; Li, W.; Hou, X.; Li, J., Matching periodate peak absorbance by far UVC at 222 nm promotes the degradation of micropollutants and energy efficiency. Journal of Hazardous Materials 2024, 476, 134978. (中科院一区top,IF:15.1)

27. Li J#, Cao J#, Jiang M, An L, Zeng G, Mai J, Su P, Jing B, Feng M, Ao Z, Ma J, Yang T*. Role of bipyridyl in enhancing ferrate oxidation toward micropollutants. Journal of Hazardous Materials, 2024, 469, 133982. (中科院一区top,IF:13.6)

28. Mai J, Yang T*, Ma J. Novel solar-driven ferrate(VI) activation system for micropollutant degradation: Elucidating the role of Fe(IV) and Fe(V). Journal of Hazardous Materials, 2022, 437, 129428. (中科院一区top,IF:13.6)

29. Wu S#, Yang T#,*, Mai J, Tang L, Liang P, Zhu M, Huang C, Li Q, Cheng X, Liu M, Ma J*. Enhanced removal of organoarsenic by chlorination: Kinetics, effect of humic acid, and adsorbable chlorinated organoarsenic. Journal of Hazardous Materials, 2022, 422, 126820. (中科院一区top,IF:13.6,年度杰出论文

30. Huang C# , Yang T#,*, Li M, Mai J, Wu S, Li J, Ma G, Liu C, Jia J, Ma J*. Generation of Hydroxyl Radicals via Activation of Cr(VI) by UVA-LED for Rapid Decontamination: The Important Role of Cr(V). Journal of Hazardous Materials, 2022, 129913.(中科院一区top,IF:13.6)

31. Mai J#, Ge Zeng G#, Jiang M, Su1 P, Lv Q, Li W, Hou X, Liu M, Ma J, Yang T*. Unraveling the Role of Mn(V)/Mn(III) in the Enhanced Permanganate Oxidation under Vis-LED Radiation, Science of The Total Environment, 2024, 944, 173655. (中科院一区top,IF:9.8)

32. Song W, Gao Z, Hou C, Cheng X*, Lian J, Yang T*, Zhou Z, Wu D, Liang H. Improving ultrafiltration of algae-laden water with chitosan quaternary ammonium salt enhanced by sodium percarbonate. Science of The Total Environment, 2023, 888, 164235. (中科院一区top,IF:9.8)

33. Yang T, Mai J, Wu S, Liu C, Tang L, Mo Z, Zhang M, Guo L, Liu M-C*, Ma J*. UV/chlorine process for degradation of benzothiazole and benzotriazole in water: Efficiency, mechanism and toxicity evaluation. Science of The Total Environment, 2021, 760, 144304. (中科院一区top,IF:9.8)

34. Ma, R.; Cheng, X.; Luo, X.; Yang, T*; Wu, D.; Liang, H., Comparison of chlorine and peroxymonosulfate in enhancing vacuum ultraviolet for treating secondary effluent to mitigate ultrafiltration membrane fouling. Separation and Purification Technology 2025, 353, 128493. (中科院一区top,IF:8.6)

35. Gao M, Zhang J*, Zhao L, Geng C, Zhao F*, Yang T*, Ma J. Insights into Co3O4 nano-rod/peroxymonosulfate catalytic oxidation system for chemical cleaning ultrafiltration membrane: Performance, mechanisms, and effects on the membrane stability. Separation and Purification Technology, 2024, 330, 125375. (中科院一区top,IF:8.6)

36. Cheng X#, Lian J#, Jiang M, An L, Fan Q, Zeng G, Su P, Wu Y, Ma J, Yang T*. Unraveling the role of CH3C(=O)OO• in the degradation of emerging organic contaminants via boosting activation of peracetic acid by iron oxychloride catalyst. Separation and Purification Technology, 2024, 125535. (中科院一区top,IF:8.6)

37. Song W, Gao Z, Tan F, Cheng X*, Yang T*, Wu D, Yang J, Liang H. Calcium sulfite oxidation activated by ferrous iron integrated with membrane filtration for removal of typical algal contaminants. Chemosphere, 2023, 333, 138956. (中科院二区,IF:9.8)

38. Cheng X, Song W, Tan F, Luo X, Zhu X*, Yang T*, Wu D, Liang H. Novel calcium hypochlorite/ferrous iron as an ultrafiltration membrane pretreatment process for purifying algae-laden water. Environmental Research, 2023. (中科院二区,IF:8.3)

39. An, M.; Cheng, X.; Luo, X.; Yang, T*; Sun, X.; Xu, J.; Xiao, D.; Wu, D.; Liang, H., Role of reactive manganese and oxygen species in the KMnO4/Na2SO3 process for purification of algal-rich water and membrane fouling alleviation. Environmental research 2024, 260, 119662.(中科院二区,IF:8.3)

40. Liu Y, Yang T, Wang L*, Huang Z, Li J, Cheng H, Jiang J, Pang S, Qi J, Ma J*. Interpreting the effects of natural organic matter on antimicrobial activity of Ag2S nanoparticles with soft particle theory. Water Research, 2018, 145, 12-20. (中科院一区top,IF:12.8)

41. Cheng H, Yang T, Ma J*, Jiang J*, Wang P. The aggregation kinetics of manganese oxides nanoparticles in Al(III) electrolyte solutions: Roles of distinct Al(III) species and natural organic matters. Science of The Total Environment, 2020, 744, 140814. (中科院一区top,IF:9.8)

申请及授权专利

1.杨涛, 吴思思, 刘敏超, 郏建波, 郭琳, 李玉瑛, 汪涛, 刘长宇. 一种去除水中有机污染物的方法, 2020, 专利号:ZL202010488431.2. (已实现专利转化)

2.杨涛, 吴思思, 刘敏超, 郏建波, 李玉瑛, 方礼宁. 一种含有有机砷废水的处理方法, 2019, 申请号:201911272133.3.

3.杨涛, 麦嘉敏, 吴思思, 刘敏超, 汪涛, 郭琳, 李玉瑛, 黄翠, 朱梦阳. 一种去除污水中有机微污染物的方法, 2021, 申请号:CN202011532563.7.

4.马军, 黄庄松, 江进, 刘玉蕾, 杨涛, 肖佳月. 一种利用高铁酸盐强化臭氧氧化去除水中有机污染物的方法, 2015, 申请号:ZL201710122408.X.

获奖情况

入选2024年度全球前2%顶尖科学家榜单

2020年荣获中国环境科学学会优秀博士学位论文(全国仅11篇)

荣获第十二届环境工程青年论坛优秀报告奖

第八届“互联网+”大学生创新创业大赛(2022),国家三等奖(指导教师)

五邑大学“互联网+”大学生创新创业大赛,校级一等奖2项(指导教师)

指导学生项目

2023年广东省“攀登计划”项目(指导教师)

2023年广东青年大学生“百千万”工程项目(指导教师)

2023年广东省暑期社会实践三下乡重点团队(指导教师)

2022年广东省暑期社会实践三下乡校级重点团队(指导教师)

2021-2024大学生创新创业项目6项(指导教师)

教学情况

主持五邑大学本科高质量课程建设项目1项

校优秀本科学位论文2篇(指导教师)

校优秀硕士学位论文2篇(指导教师)

校优秀硕士毕业生2人(指导教师)

杨涛,郭琳,李玉瑛*,地方应用型本科院校环境监测教学改革初探—以五邑大学为例,教育教学论坛,2024.(教改论文)

李玉瑛,郏建波,杨涛*,环境工程微生物学和实验课的教学改革探索,教育教学论坛,2025.(教改论文)

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