![]() | Zhang, T. (2025). Soil ridging combined with soil amendments regulates the arsenic-cadmium related geochemical cycles and mitigate its accumulation in rice [Doctoral thesis, Ting Zhang]. ORBi-University of Liège. https://orbi.uliege.be/handle/2268/335266 |
![]() | Ren, Y.-X., Geng, Z.-X., Song, N.-N., Zhang, T., Zhang, N., Wu, C.-X., Liu, W., Zeng, X.-B., & Su, S.-M. (15 November 2024). 基于作物累积砷镉差异的超标农区优先种植作物筛选. Huanjing Kexue, 45 (11), 6654 - 6664. doi:10.13227/j.hjkx.202310125 Peer reviewed |
![]() | Zhang, T.* , Sun, Y.* , Parikh, S. J., Colinet, G., Garland, G., Huo, L., Zhang, N., Shan, H., Zeng, X., & Su, S. (2024). Water-fertilizer regulation drives microorganisms to promote iron, nitrogen and manganese cycling: a solution for arsenic and cadmium pollution in paddy soils. Journal of Hazardous Materials, 135244. doi:10.1016/j.jhazmat.2024.135244 Peer Reviewed verified by ORBi* These authors have contributed equally to this work. |
![]() | Mabagala, F. S., Zhang, T., Zeng, X., He, C., Shan, H., Qiu, C., Gao, X., Zhang, N., & Su, S. (29 June 2024). A review of amendments for simultaneously reducing Cd and As availability in paddy soils and rice grain based on meta-analysis. Journal of Environmental Management, 366, 121661. doi:10.1016/j.jenvman.2024.121661 Peer Reviewed verified by ORBi |
![]() | Zhang, T. (19 May 2024). Soil ridging combined with biochar or calcium-magnesium-phosphorus fertilizer application: Enhanced interaction with Ca, Fe and Mn in new soil habitat reduces uptake of As and Cd in rice [Poster presentation]. Centennial Celebration and Congress of the International Union of Soil Sciences, Florence, Italy. Editorial reviewed |
![]() | Zhang, T., Jiku, M., Li, L., Ren, Y., Li, L., Zeng, X., Colinet, G., Sun, Y., Huo, L., & Su, S. (2023). Soil ridging combined with biochar or calcium-magnesium-phosphorus fertilizer application: Enhanced interaction with Ca, Fe and Mn in new soil habitat reduces uptake of As and Cd in rice. Environmental Pollution, 121968. doi:10.1016/j.envpol.2023.121968 Peer Reviewed verified by ORBi |