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成果及论文

Academic Profiles:  [ResearchGate] [ORCID]

近期代表性论文:


(1) Cao, M., Ma, H*., Ye, Y., Li, S-A., Cao, X., Huang, H., Li, Z., Cui, F. Wildfire-Derived Pyrogenic Dissolved Organic Matter (pyDOM) Enhances Riverine DOM Reactivities and Nitrogen Metabolisms. Environmental Science & Technology. 2025. 59, 23, 11597-11606. Link

      

(2) Cao, X., Ma, H*Li, S-A., Huang, H., Cui, F., Tanentzap A J. Enhanced Release and Reactivity of Soil Water-Extractable Organic Matter Following Wildfire in a Subtropical Forest. Environmental Science & Technology. 2025. 59, 8, 3992-4002. Link

      

(3) Hong, H., Huang, H., Li S-A., Lin, J., Luo, K., Cao, X., Cui, F., Zhou, Z*., Ma, H*. Revealing Molecular Connections Between Dissolved Organic Matter in Surface Water Sources and Their Cytotoxicity Influenced by Chlorination Disinfection. Environmental Science & Technology. 2025. 59, 5, 2754-2764. Link

      

(4) Li, Z., Li, S-A., Ma, H*., Ao, L., Li, G., Cui, F. Source resolution and model prediction of hydrogen peroxide produced through photochemistry and phytoplankton species in environmental watersWater Research. 2025. 283, 123863. Link

      

(5) Cao, X., Li, S-A., Huang, H., Ma, H*. Wildfire Impacts on Molecular Changes of Dissolved Organic Matter during Its Passage through Soil. Environmental Science & Technology. 2024. 58, 26, 11436-11446. Link

      

(6) Li, Z., Ma, H*., Hong, Z., Zhang, T., Cao, M., Cui, F., Grossart, H.P. Phytoplankton interspecific interactions modified by symbiotic fungi and bacterial metabolites under environmentally relevant hydrogen peroxide concentrations stress. Water Research. 2023. 246, 120739. Link

      

(7) Zhang, T., Ma, H*., Hong, Z., Fu, G., Zheng, Y., Li, Z., Cui, F. Photo-Reactivity and Photo-Transformation of Algal Dissolved Organic Matter Unraveled by Optical Spectroscopy and High-Resolution Mass Spectrometry Analysis. Environmental Science & Technology. 2022. 56, 18, 13439-13448. Link

      

(8) Huang, H., Hong, H., Li, X., Li S-A., Cao, X., Yu, H., Zhou, Z., Cui, F., Ma, H*. Wildfire-Derived Pyrogenic Dissolved Organic Matter (pyDOM) Chlorination: Molecular Transformation and Cytotoxic Drivers. ACS ES&T Water. 2025. 5, 10, 6112-6121. Link

      

(9) Song, Y., Cao, X., Li, S-A., Li, Z., Grossart, H.P., Ma, H*. Human activities-impacted lake dissolved organic matter (DOM) affects phycosphere microbial diversity and DOM diversification via carbon metabolism. Journal of Environmental Management. 2024. 367, 122011. Link

      

(10) Li, S-A., Wang, Q., Ma, H*., Cao, X., Song, Y., Cui, F., Tanentzap A J. Photochemical processes transform dissolved organic matter differently depending on its initial composition. Science of the Total Environment. 2024. 923, 171465. Link