1.第一/通讯作者论文如下: [24] P. Xia, L.L. Zhao, X. Chen,Z.H. Ye*, Z.H. Zheng, Q. He, I. Sirés*.Polymethylhydrosiloxane-modified gas-diffusion cathode for more efficient and durable H2O2electrosynthesis in the context of water treatment.Appl. Catal. B: Environ.343 (2024) 1234.IF 22.1. [23] C. Wang, W. Zhang, J. Wang, P. Xia, X.G. Duan*, Q. He, I. Sirés,Z.H. Ye*.Accelerating Fe (III)/Fe (II) redox cycling in heterogeneous electro-Fenton process via S/Cu-mediated electron donor-shuttle regime.Appl. Catal. B: Environ.324 (2024) 123457.IF 22.1. [22] Chen, L., Wang, C., He, W., Li, H.,Ye, Z.H.*, Xu, Y. *.Enhanced catalytic activities of natural iron ore in peroxymonosulfate activation assisted by WS2for rapid degradation of pollutants.Sep. Purif. Technol.328(2023) 125130.IF 8.6. [21] Liu, H., Wang, J., Odunmbaku, O., Xia, P., Liu, L., Chang, Q., Huang, Y., Lin, X., Yang, J., Shang, Z.,Ye, Z.H.*, Li, M. *, Qiu, J. *.Highly recyclable and efficient piezocatalyst of Nafion decorated MoS2with hierarchical structure for organic pollutants degradation.Sep. Purif. Technol.320 (2023) 124142.IF 8.6. [20] Xia, P., Chen, Z., Wang, D., Niu, X., Tang, X., Ao, L., He, Q., Wang, S.,Ye, Z.H.*. Revealing the double-edged roles of chloride ions in Fered-Fenton treatment of industrial wastewater.Sep. Purif. Technol.319 (2023) 124035.IF 8.6. [19] Chen, Z., Xia, P., Wang, D., Niu, X., Ao, L., He, Q., Wang, S.,Ye, Z.H.*, Sirés, I.*. New insights into the mechanism of Fered-Fenton treatment of industrial wastewater with high chloride content: Role of multiple reactive species.Sci. Total. Environ.882 (2023) 163596.IF 9.8. [18] Xu, Y., Xia, P., Wang, C., Li Cai, J., H.B.,Ye, Z.H.*, H. Zhang*.A mini-review on MOFs activated peroxide processes and the enhancement with the external energy.Chem. Eng. J.462 (2023) 142021.IF 15.1. [17]Z.H. Ye, W.F. Zhang, S. Lanzalaco, L.L. Zhao,I. Sirés*, P. Xia, J. Zhai, Q. He*. Ultra-uniform MIL-88B(Fe)/Fe3S4 hybrids engineered by partial sulfidation to boost catalysis in electro-Fenton treatment of micropollutants: Experimental and mechanistic insights.Chem. Eng. J.455 (2023)140757,IF15.1. [16] P. Xia, Z.H. Ye*, L.L. Zhao, Q. Xue, S. Lanzalaco, Q. He, X.Q. Qi,I. Sirés*. Tailoring single-atom FeN4moieties as a robust heterogeneous catalyst for high-performance electro-Fenton treatment of organic pollutants.Appl. Catal. B: Environ.322 (2023) 122116,IF22.1. [15]P. Xia, C.H. Wang, Q. He,Z.H. Ye*,I. Sirés*. MOF-derived single-atom catalysts: The next frontier in advanced oxidation for water treatment.Chem. Eng. J.452 (2023)139446,IF15.1. [14]Z.H. Ye*,F. Miao, & H Zhang*. Performance investigation of electrochemical assisted HClO/Fe2+ process for the treatment of landfill leachate.Environ. Sci. Pollut. Res.29 (2022) 46875-46884,IF 5.8. [13]Z.H. Ye, R. Oriol, C. Yang, I. Sirés*, X.Y. Li*.A novel NH2-MIL-88B(Fe)-modified ceramic membrane for the integration of electro-Fenton and filtration processes: A case study on naproxen degradation.Chem. Eng. J.433 (2022)133547,IF15.1. [12]Z.H. Ye, G.E.M. Schukraft, A. L´Hermitte, Y. Xiong, E. Brillas, I. Sirés*. Mechanism and stability of an Fe-based 2D MOF during the photoelectro-Fenton treatment of organic micropollutants under UVA and visible light irradiation.Water Res. 184 (2020) 115986,IF 12.8. [11]Z.H. Ye, J.A. Padilla, E. Xuriguera, E. Brillas, I. Sirés*. Magnetic MIL(Fe)-type MOF-derived N-doped nano-ZVI@C rods as heterogeneous catalyst for the electro-Fenton degradation of gemfibrozil in a complex aqueous matrix.Appl. Catal. B: Environ.266 (2020) 118604,IF22.1. [10]Z.H. Ye, J.A. Padilla, E. Xuriguera, J.L. Beltran, F. Alcaide, E. Brillas, I. Sirés*. A highly stable MOF-engineered FeS2/C nanocatalyst for heterogeneous electro-Fenton treatment: Validation in wastewater at mild pH.Environ. Sci. Technol.54 (2020) 4664-4674,IF 11.4. [9]Z.H. Ye, E. Brillas, F. Centellas, P.L. Cabot, I. Sirés*. Expanding the application of photoelectro-Fenton treatment to urban wastewater using the Fe(III)-EDDS complex.Water Res.169 (2020) 115219,IF 12.8. [8]Z.H. Ye, E. Brillas, F. Centellas, P.L. Cabot, I. Sirés*. Electro-Fenton process at mild pH using Fe(III)–EDDS as soluble catalyst and carbon felt as cathode.Appl. Catal. B: Environ.257 (2019) 117907,IF22.1. [7]Z.H. Ye, D.R.V. Guelfi, G. Alvarez, F. Alcaide, E. Brillas, I. Sirés*. Enhanced electrocatalytic production of H2O2at Co-based air-diffusion cathodes for the photoelectro-Fenton treatment of bronopol.Appl. Catal. B: Environ.247 (2019) 191-199,IF22.1. [6]Z.H. Ye, J.R. Steter, F. Centellas, P.L. Cabot, E. Brillas*, I. Sirés*. Photoelectro-Fenton as post-treatment for electrocoagulated benzophenone-3-loaded synthetic and urban wastewater.J. Clean. Prod.208 (2019) 1393-1402,IF 11.1. [5]Z.H. Ye, I. Sirés, H. Zhang*, Y.H. Huang*. Mineralization of pentachlorophenol by ferrioxalate-assisted solar photo-Fenton process at mild pH.Chemosphere 217 (2019) 475-482,IF8.8. [4]Z.H. Ye, E. Brillas, F. Centellas, P.L. Cabot, I. Sirés*. Electrochemical treatment of butylated hydroxyanisole: Electrocoagulation versus advanced oxidation.Sep. Purif. Technol.208 (2019) 19-26,IF8.6. [3]Z.H. Ye, J. Geng, M. Chen, Y. Qian, L. Wu, L. yang, H*. Zhang. Effect of a solar photoelectro-Fenton system using a recirculation reactor on biologically treated landfill leachate.J. Hazard Mater.319 (2016) 51-60,IF13.6. [2]Z.H. Ye, H. Zhang, X. Zhang*, D. Zhou. Treatment of landfill leachate using electrochemically assisted UV/chlorine process: Effect of operating conditions, molecular weight distribution and fluorescence EEM-PARAFAC analysis.Chem. Eng. J.286 (2016) 508-516,IF15.1. [1]Z.H. Ye,J. Wang, L. Sun, D. Zhang, H. Zhang*. Removal of ammonium from municipal landfill leachate using natural zeolites.Environ. Technol.36 (2015) 2919-2923,IF 2.8. 2.专著 [1]《环境工程原理》(第二版),华中科技大学出版社,主编:张晖,副主编:梁美生,李粉茹,张道斌,严素定,叶志洪,徐银,李宁。 3.专利 [1]一种封闭式双极电芬顿反应器处理高盐难降解废水的方法,ZL202210030561.0, 第一完成人。 |