
简 历:
杨一,教授,国家优秀青年基金(海外)项目入选者。已发表学术论文37篇。第一作者论文包括4篇ES&T、3篇Water Research和1篇ES&T Letters。已有2篇一作论文进入前0.1%的热点论文(ESI Hot Paper)、6篇一作论文进入前1%的高引论文(ESI Highly Cited Paper)。截止2022年2月,单篇论文最高引用580次,论文总引用2349次,h因子25 (Google Scholar)。曾获哈工大“优秀硕士学位论文”和“优秀博士学位论文”的称号,并作为完成人荣获教育部自然科学奖二等奖。多次在环境领域知名国际学术会议—美国化学学会(ACS)年会上作口头报告,曾获“优秀报告奖”。担任领域内多个重要学术期刊(如ES&T和Water Research)的独立审稿人。
获奖及荣誉:
1. 国家创新人才青年项目(2022年)
2. 安徽省“百人计划”青年项目(2021年)
3. 教育部自然科学奖二等奖 “过硫酸盐高级氧化水质净化理论与方法”(2019年)
4. 瑞士MDPI出版集团《Water》期刊 博士后研究员会议旅行奖(全球仅3人入选)(2018年)
5.哈尔滨工业大学 优秀博士学位论文 “无机阴离子对•OH和SO4•-降解水中典型有机污染物的影响机制”(所有学科共16人入选,市政工程专业唯一)(2017年)
代表性论著:
1. Yang, Y.*, Liu, M., Pignatello, J. J.* Interactions between selenium species and pyrogenic carbonaceous materials in water and soil relevant to selenium control and remediation: A molecular-level perspective. Environmental Pollution 2025, 369, 125831.
2. Guan, C., Guan, C., Guo, Q., Yang, Y.*, Wang, G.*, Jiang, J. Production of hydroxylated polybrominated diphenyl ethers (OH-PBDEs) from bromophenols in natural and engineered processes. Critical Reviews in Environmental Science and Technology 2024, 54(22), 1593–1611.
3. Yang, Y., Duan P., Schmidt-Rohr, K., Pignatello, J. J.* Physicochemical changes in biomass chars by thermal oxidation or ambient weathering and their impacts on sorption of a hydrophobic and a cationic compound. Environmental Science & Technology 2021, 55 (19), 13072-13081
4. Yang, Y., Wang, J., Wang, Z., Gao, Y.*, Pignatello, J. J.* Abatement of polycyclic aromatic hydrocarbon residues in biochars by thermal oxidation. Environmental Science & Technology Letters, 2021, 8(6), 451-456.
5. Yang, Y., Cao, Y., Jiang, J.*, Lu, X.*, Ma, J., Pang, S., Li, J., Liu, Y., Zhou, Y., Guan, C. Comparative study on degradation of propranolol and formation of oxidation products by UV/H2O2 and UV/persulfate (PDS). Water Research, 2019, 149, 543-552. (ESI前1%的高引论文,Highly Cited Paper)
6. Yang, Y., Banerjee, G., Brudvig, G. W., Kim, J-H., Pignatello, J. J.* Oxidation of organic compounds in water by unactivated peroxymonosulfate. Environmental Science & Technology, 2018, 52(10): 5911-5919. (ESI前1%的高引论文,Highly Cited Paper)
7. Yang, Y., Lu, X., Jiang, J.*, Ma, J.*, Liu, G., Cao, Y., Liu, W., Li, J., Pang, S., Kong, X., Luo, C. Degradation of sulfamethoxazole by UV, UV/H2O2 and UV/persulfate (PDS): Formation of oxidation products and effect of bicarbonate. Water Research, 2017, 118: 196-207. (ESI前0.1%的热点论文,Hot Paper; ESI前1%的高引论文,Highly Cited Paper)
8. Yang, Y., Pignatello, J. J.* Participation of the halogens in photochemical reactions in natural and treated waters. Molecules, 2017, 22(10): 1684.
9. Yang, Y., Pignatello, J. J., Ma, J.*, Mitch, W. A.* Effect of matrix components on UV/H2O2 and UV/S2O82- advanced oxidation processes for trace organic degradation in reverse osmosis brines from municipal wastewater reuse facilities. Water Research, 2016, 89, 192-200. (ESI前1%的高引论文,Highly Cited Paper )
10. Yang, Y., Jiang, J.*, Lu, X., Ma, J.*, Liu, Y. Production of sulfate radical and hydroxyl radical by reaction of ozone with peroxymonosulfate: A novel advanced oxidation process. Environmental Science & Technology, 2015, 49(12), 7330-7339. (ESI前1%的高引论文,Highly Cited Paper)
11. Yang, Y., Pignatello, J. J., Ma, J.*, Mitch, W. A.* Comparison of halide impacts on the efficiency of contaminant degradation by sulfate and hydroxyl radical-based advanced oxidation processes (AOPs). Environmental Science & Technology, 2014, 48(4), 2344-2351. (ESI前1%的高引论文,Highly Cited Paper)
12. Kong, X., Jiang, J.*, Ma, J.*, Yang, Y., Liu, W., Liu, Y. Degradation of atrazine by UV/Chlorine: Efficiency, influencing factors, and products. Water Research, 2016, 90, 15-23.
13. Li, J., Jiang, J.*, Pang, S. Y., Yang, Y., Sun, S., Wang, L., Wang, P. Transformation of X-ray contrast media by conventional and advanced oxidation processes during water treatment: Efficiency, oxidation intermediates, and formation of iodinated byproducts. Water Research, 2020, 185, 116234.
14. Lu, X.#, Feng, X.#, Yang, Y., Jiang, J., Cheng, W., Liu, C., Gopinadhan, M., Osuji, C., Ma, J.*, Elimelech, M.* Tuning the permselectivity of polymeric desalination membranes via control of polymer crystallite size. Nature Communications. 2019, 10, 2347.
15. Ruiz, M., Yang, Y., Lochbaum, C. A., Delafield, D. G., Pignatello, J. J., Li, L., Pedersen, J. A.* Peroxymonosulfate oxidizes amino acids in water without activation. Environmental Science & Technology, 2019, 53(18): 10845-10854.
16. Wang, L., Jiang, J.*, Pang S., Gao, Y., Zhou, Y., Li, J, Yang, Y., Ma, J., Zhang, T. Further insights into the combination of permanganate and peroxymonosulfate as an advanced oxidation process for destruction of aqueous organic contaminants. Chemosphere, 2019, 228, 602-610.
17. Wu, Y., Yang, Y., Liu, Y.*, Zhang, L., Feng, L.* Modelling study on the effects of chloride on the degradation of bezafibrate and carbamazepine in sulfate radical-based advanced oxidation processes: Conversion of reactive radicals. Chemical Engineering Journal, 2019, 358: 1332-1341.
18. Liu, Y.*, Yang, Y., Pang, S.*, Zhang, L., Ma, J., Luo, C., Guan, C., Jiang, J. Mechanistic insight into suppression of bromate formation by dissolved organic matters in sulfate radical-based advanced oxidation processes. Chemical Engineering Journal, 2018, 333: 200-205.
19. Cheng, W., Lu, X.*, Yang, Y., Jiang, J., Ma, J.* Influence of composition and concentration of saline water on cation exchange behavior in forward osmosis desalination. Water Research, 2018, 137, 9-17.
20. Kong, X., Jiang, J.*, Ma, J.*, Yang, Y., Pang, S. Comparative investigation of X-ray contrast medium degradation by UV/chlorine and UV/H2O2. Chemosphere, 2018, 193, 655-663.
21. Guan, C., Jiang, J.*, Luo, C., Pang, S.*, Yang, Y., Wang, Z., Ma, J., Yu, J., Zhao, X. Oxidation of bromophenols by carbon nanotube activated peroxymonosulfate (PMS) and formation of brominated products: Comparison to peroxydisulfate (PDS). Chemical Engineering Journal, 2018, 337: 40-50.
22. Guan, C., Jiang, J.*, Luo, C., Pang, S., Yang, Y., Ma, J., Yu, J., Zhao, X. Effect of iodide on transformation of phenolic compounds by nonradical activation of peroxydisulfate in the presence of carbon nanotube: Kinetics, impacting factors, and formation of iodinated aromatic products. Chemosphere, 2018, 208: 559-568.
23. Zhou, Y., Gao, Y, Pang, S.*, Jiang, J., Yang, Y., Ma, J., Yang, Y., Duan, J., Guo, Q. Oxidation of fluoroquinolone antibiotics by peroxymonosulfate without activation: Kinetics, products, and antibacterial deactivation. Water Research, 2018 145: 210-219.
24. Li, J., Zhou, Y., Jiang, J.*, Pang, S.*, Gao, Y., Yang, Y., Liu, G., Ma, J., Jiang, C., Wang, L. Transformation of phenolic compounds by peroxymonosulfate in the presence of iodide and formation of iodinated aromatic products. Chemical Engineering Journal, 2018, 335: 855-864.
25. Li, J., Jiang, J.*, Pang, S.*, Zhou, Y., Gao, Y., Yang, Y., Sun, S., Liu, G., Ma, J., Jiang, C., Wang, L. Transformation of methylparaben by aqueous permanganate in the presence of iodide: Kinetics, modeling, and formation of iodinated aromatic products. Water Research, 2018, 135: 75-84.
26. Li, J., Pang, S., Zhou, Y., Sun, S., Wang, L., Wang, Z., Gao, Y., Yang, Y., Jiang, J.* Transformation of bisphenol AF and bisphenol S by manganese dioxide and effect of iodide. Water Research, 2018, 143: 47-55.
27. Wang, Z., Jiang, J.*, Pang, S., Zhou, Y., Guan, C., Gao, Y., Li, J., Yang, Y., Qiu, W., Jiang, C. Is sulfate radical really generated from peroxydisulfate activated by iron(II) for environmental decontamination? Environmental Science & Technology, 2018, 52(19): 11276-11284.
28. Yang, J., Li, J.*, Dong, W., Ma, J.*, Yang, Y., Li, J., Yang, Z., Zhang, X., Gu, J., Xie, W., Cang, Y. Enhancement of bromate formation by pH depression during ozonation of bromide-containing water in the presence of hydroxylamine. Water Research, 2017, 109: 135-143.
29. Zhou, Y., Li, J., Jiang, J.*, Gao, Y., Yang, Y., Pang, S., Ma, J., Guan, C., Wang, L. Iodine atom or hypoiodous acid? Comment on “Rapid selective circumneutral degradation of phenolic pollutants using peroxymonosulfate–iodide metal-free oxidation: Role of iodine atoms” Environmental Science & Technology, 2017, 51(16), 9410-9411
30. Zhou, Y., Jiang, J.*, Gao, Y., Pang, S.*, Yang, Y., Ma, J., Gu, J., Li, J., Wang, Z., Wang, L., Yuan, L., Yang, Y. Activation of peroxymonosulfate by phenols: Important role of quinone intermediates and involvement of singlet oxygen. Water Research, 2017, 125: 209-218.
31. Luo, C., Jiang, J.*, Guan, C., Ma, J.*, Pang, S., Song, Y., Yang, Y., Zhang, J., Wu, D., Guan, Y. Factors affecting formation of deethyl and deisopropyl products from atrazine degradation in UV/H2O2 and UV/PDS. RSC Advances, 2017, 7(46): 29255-29262.
32. Guan, C., Jiang, J.*, Pang, S., Luo, C., Ma, J., Zhou, Y., Yang, Y. Oxidation kinetics of bromophenols by nonradical activation of peroxydisulfate in the presence of carbon nanotube and formation of brominated polymeric products. Environmental Science & Technology, 2017, 51(18): 10718-10728.
33. Li, J., Jiang, J.*, Zhou, Y., Pang, S., Gao, Y., Jiang, C., Ma, J., Jin, Y., Yang, Y., Liu, G., Wang, L., Guan, C. Kinetics of oxidation of iodide (I–) and hypoiodous acid (HOI) by peroxymonosulfate (PMS) and formation of iodinated products in the PMS/I–/NOM system. Environmental Science & Technology Letters, 2017, 4(2): 76-82.
34. Yang, J., Li, J.*, Dong, W., Ma, J.*, Li, T., Yang, Y., Li, J., Gu, J. Deethylatrazine as a more appropriate hydroxyl radical probe compound during ozonation: comparison with the widely used p-chlorobenzoic acid. Chemical Engineering Journal, 2016, 295, 443-450.
35. Liu, Y., Jiang, J.*, Ma, J.*, Yang, Y., Luo, C., Huangfu, X., Guo, Z. Role of the propagation reactions on the hydroxyl radical formation in ozonation and peroxone (ozone/hydrogen peroxide) processes. Water Research, 2015, 68, 750-758.
36. Luo, C., Ma, J.*, Jiang, J.*, Liu, Y., Song, Y., Yang, Y., Guan, Y., Wu, D. Simulation and comparative study on the oxidation kinetics of atrazine by UV/H2O2, UV/HSO5- and UV/S2O82-. Water Research, 2015, 80, 99-108.
37. Song, Y., Jiang, J.*, Ma, J.*, Pang, S., Liu, Y., Yang, Y., Luo, C., Zhang, J., Gu, J., Qin, W. ABTS as an electron shuttle to enhance the oxidation kinetics of substituted phenols by aqueous permanganate. Environmental Science & Technology, 2015, 49(19), 11764-11771.
承担科研项目情况:
1. 国家科技部重点研发青年项目子课题,2023YFC3209600,饮用水中碘系物高效去除与碘代副产物控制关键技术与装备,2023.12-2026.11,40万,主持
2. 国家自然科学基金青年科学基金项目,52300015,基于聚合酮材料原位产生过氧化酮氧化去除水中污染物的机理研究,2024.01-2026.12,30万,主持
3. 国家自然科学基金优秀青年科学基金项目(海外),/,新兴污染物环境风险控制,2024.01-2026.12,300万,主持