◆发表论文
[1] Wu, M., Huang, X., Feng, L., Sun, Y., Lu, Y., Hu, L., Tian, S., She, T., Shen, F., Deng, S., Fang, D. *, 2025. Hysteresis response of carbon release and nitrate reduction in polymer denitrification systems. WATER RESEARCH 268, 122582. https://doi.org/10.1016/j.watres.2024.122582(通讯作者,中科院一区TOP论文)
[2] Huang, L., Yuan, X., Ye, J., Xiao, Y., Deng, S., Yang, G., Yu, X., Fang, D. *, 2024. Cooperative denitrification by exogenous aerobic denitrifiers and indigenous sediment microbiota in nitrate-accumulating waterbodies. CHEMICAL ENGINEERING JOURNAL 482, 149109. https://doi.org/10.1016/j.cej.2024.149109(通讯作者,中科院一区TOP论文)
[3] Huang, X., Wu, M., Chen, Y., Feng, L., Ji, F., Li, L., Huang, L., Wang, Y., Shen, F., Deng, S., Fang, D. *, 2024. Ultrahigh carbon utilization in symbiotic biofilm-sludge denitrification systems using polymers as sole electron donors. BIORESOURCE TECHNOLOGY 408, 131194. https://doi.org/10.1016/j.biortech.2024.131194(通讯作者,中科院一区TOP论文)
[4] Wu, X., Wang, J., Lei, Y., He, H., Lei, Z., Huang, X., Xiao, H., Wu, G., Zeng, Z., Wang, Y., Huang, L., Shen, F., Deng, S., Gao, X., Fang, Z., Fang, D. *, 2024. Restricted reaction of layered double hydroxide nanoparticles with phosphate in a confined microsphere space. SCIENCE OF THE TOTAL ENVIRONMENT 913, 169720. https://doi.org/10.1016/j.scitotenv.2023.169720(通讯作者,中科院一区TOP论文)
[5] Guo, Q., Yin, C., Chen, Y., Fang, Z., Xiao, H., He, J., Huang, L., Wu, G., Zeng, Z., Shen, F., Deng, S., Ji, F., Fang, D. *, 2023. Periodic pH regulation controls the phosphate uptake-release behavior and structural evolution of layered double hydroxides. CHEMICAL ENGINEERING JOURNAL 459, 141584. https://doi.org/10.1016/j.cej.2023.141584(通讯作者,中科院一区TOP论文)
[6] Fang, D. *, Huang, L., Xiao, H., Wu, G., Zeng, Z., Wang, X., Yang, G., Shen, F., Deng, S., Ji, F., 2023. Layered double hydroxide membranes for advanced removal of phosphate from wastewater. CHEMICAL ENGINEERING JOURNAL 451, 138600. https://doi.org/10.1016/j.cej.2022.138600(第一/通讯作者,中科院一区TOP论文)
[7] Fang, D. *, Huang, L., Fan, J., Xiao, H., Wu, G., Wang, Y., Zeng, Z., Shen, F., Deng, S., Ji, F., 2022. New insights into the arrangement pattern of layered double hydroxide nanosheets and their ion-exchange behavior with phosphate. CHEMICAL ENGINEERING JOURNAL 441, 136057. https://doi.org/10.1016/j.cej.2022.136057(第一/通讯作者,中科院一区TOP论文)
[8] Fang, D., Zhuang, X., Huang, L., Zhang, Q., Shen, Q., Jiang, L., Xu, X., Ji, F., 2020b. Developing the new kinetics model based on the adsorption process: From fitting to comparison and prediction. SCIENCE OF THE TOTAL ENVIRONMENT 725. https://doi.org/10.1016/j.scitotenv.2020.138490(第一作者,中科院一区TOP论文)
[9] Fang, D., Wu, A., Huang, L., Shen, Q., Zhang, Q., Jiang, L., Ji, F., 2020a. Polymer substrate reshapes the microbial assemblage and metabolic patterns within a biofilm denitrification system. CHEMICAL ENGINEERING JOURNAL 387. https://doi.org/10.1016/j.cej.2020.124128(第一作者,中科院一区TOP论文)
[10] 方德新; 吉芳英*; 许晓毅; 熊京忠. 高原高寒污水处理系统的微生物群落特征. 中国环境科学 2020, 40 (3), 1081-1088.(第一作者,EI论文)
[11] Fang, D., Huang, L., Fang, Z., Zhang, Q., Shen, Q., Li, Y., Xu, X., Ji, F., 2018a. Evaluation of porous calcium silicate hydrate derived from carbide slag for removing phosphate from wastewater. CHEMICAL ENGINEERING JOURNAL 354. https://doi.org/10.1016/j.cej.2018.08.001(第一作者,中科院一区TOP论文)
[12] Fang, D., Zhao, G., Xu, X., Zhang, Q., Shen, Q., Fang, Z., Huang, L., Ji, F., 2018b. Microbial community structures and functions of wastewater treatment systems in plateau and cold regions. BIORESOURCE TECHNOLOGY 249. https://doi.org/10.1016/j.biortech.2017.10.063(第一作者,中科院一区TOP论文)
[13] Zhuang, X., Fang, D., Ji, F., 2021. Beyond technology: A program for promoting urine-diverting dry toilets in rural areas to support sustainability. ENVIRONMENTAL SCIENCE: WATER RESEARCH AND TECHNOLOGY 7. https://doi.org/10.1039/d0ew00994f
[14] Jiang, L., Wu, A., Fang, D., Zhang, Y., Shen, Q., Xu, X., Ji, F., 2020. Denitrification performance and microbial diversity using starch-polycaprolactone blends as external solid carbon source and biofilm carriers for advanced treatment. CHEMOSPHERE 255. https://doi.org/10.1016/j.chemosphere.2020.126901
[15] Shen, Q., Ji, F., Wei, J., Fang, D., Zhang, Q., Jiang, L., Cai, A., Kuang, L., 2020. The influence mechanism of temperature on solid phase denitrification based on denitrification performance, carbon balance, and microbial analysis. SCIENCE OF THE TOTAL ENVIRONMENT 732. https://doi.org/10.1016/j.scitotenv.2020.139333
[16] Zhang, Q., Ji, F., Zhao, T., Shen, Q., Fang, D., Kuang, L., Jiang, L., Ding, S., 2019. Systematic screening of layered double hydroxides for phosphate removal and mechanism insight. APPLIED CLAY SCIENCE 174. https://doi.org/10.1016/j.clay.2019.03.030
[17] Ding, S., Fang, D., Pang, Z., Luo, B., Kuang, L., Wang, H., Zhang, Q., Shen, Q., Ji, F., 2018. Immobilization of powdery calcium silicate hydrate via PVA covalent cross-linking process for phosphorus removal. SCIENCE OF THE TOTAL ENVIRONMENT 645. https://doi.org/10.1016/j.scitotenv.2018.07.197