| 
 [1] J. Zhong, X. Yan, C. Wu, Y. Wu, H. Zhang, Y. Bu, Hydrothermal carbonization of coking sludge: Migration behavior of heavy metals and magnetic separation performance of hydrochar, Journal of Environmental Chemical Engineering, 2024, 12, 114141. (SCI, IF: 7.4, 中科院2区, JCR 1区) [2] J. Zhong, W. Zhu, J. Sun, B. Mu, C. Wang, J. Cao, Z. Xue. Hydrothermal carbonization of coking sludge: Formation mechanism and fuel characteristic of hydrochar, Chemosphere. 346 (2024) 140504. (SCI, IF: 8.8, 中科院2区TOP, JCR 1区) [3] C. Wu, Z. Zhao, J. Zhong*, Y. Lv, X. Yan, Y. Wu, H. Zhang, Adsorption of dye through hydrochar derived from co-hydrothermal carbonization of garden waste and sewage sludge: The adsorption enhancement mechanism of lignin component, Journal of water processing engineering, 2024, 67, 106233. (SCI, IF: 6.9, 中科院2区, JCR 1区) [4] J. Zhong, W. Zhu, X. Wang, J. Sun, B. Mu, Y. Xu, G. Li, Effect mechanism of iron conversion on adsorption performance of hydrochar derived from coking sludge, Science of The Total Environment. 898 (2023) 165427. (SCI, IF: 9.8, 中科院1区TOP, JCR 1区) [5] J. Zhong, W. Zhu, B. Mu, J. Sun, X. Wang, N. Lin, J. Cao, Improved Solid/Liquid Separation Performance of Hydrochar from Sludge Via Hydrothermal Carbonization, Journal of Environmental Management. 347 (2023) 119182. (SCI, IF: 8.7, 中科院1区TOP, JCR 1区) 
 [6] J. Zhong, W. Zhu, C. Wang, B. Mu, N. Lin, S. Chen, Z. Li, Transformation mechanism of polycyclic aromatic hydrocarbons and hydrogen production during the gasification of coking sludge in supercritical water, Chemosphere. 300 (2022) 134467. (SCI, IF: 8.8, 中科院2区TOP, JCR 1区) [7] J. Zhong, X.H. Yi, P. Wang, C.C. Wang, A stable 1D mixed-valence CuI/CuII coordination polymer with photocatalytic reduction activity toward Cr(Ⅵ), Journal of Molecular Structure. 1183 (2019) 256–262. (SCI, IF: 2.5, 中科院3区, JCR 3区) 
 
 
 
 
 
 
 
 
 
 |