Liu, D., Shi, K.*, Chen, P., Yan, N., Ran, L., Kutser, T., Tyler, A.N., Spyrakos, E., Woolway, R.I., Zhang, Y., & Duan, H.* (2024). Substantial increase of organic carbon storage in Chinese lakes. Nature Communications, 15, 8049
Xiao, Q., Xu, X., Qi, T., Luo, J., Lee, X., Duan, H.* (2024). Lakes shifted from a carbon dioxide source to a sink over past two decades in China. Science Bulletin, doi: https://doi.org/10.1016/j.scib.2024.03.022
Cao, Z., Duan, H.*, Ma, R., Shen, M., & Yang, H.* (2023). Remarkable effects of greening watershed on reducing suspended sediment flux in China’s major rivers. Science Bulletin, 68, 2285-2288
Cao, Z., Shen, M., Kutser, T., Liu, M., Qi, T., Ma, J., Ma, R., & Duan, H.* (2022). What water color parameters could be mapped using MODIS land reflectance products: A global evaluation over coastal and inland waters. Earth-Science Reviews, 104154
Duan, H.*, Xiao, Q., Qi, T., Hu, C., Zhang, M., Shen, M., Hu, Z., Wang, W., Xiao, W., Qiu, Y., Luo, J., & Lee, X. (2023). Quantification of Diffusive Methane Emissions from a Large Eutrophic Lake with Satellite Imagery. Environmental Science & Technology, 57, 13520-13529
Qi, T., Xiao, Q., Cao, Z., Shen, M., Ma, J., Liu, D., & Duan, H.* (2020). Satellite estimation of dissolved carbon dioxide concentrations in China’s Lake Taihu. Environmental Science & Technology, 54, 13709-13718
Duan, H.*, Ma, R., Xu, X., Kong, F., Zhang, S., Kong, W., Hao, J., & Shang, L. (2009). Two-Decade reconstruction of algal blooms in China's Lake Taihu. Environmental Science & Technology, 43, 3522-3528
Duan, H.*, Xiao, Q., & Qi, T. (2023). Measuring lake carbon dioxide from space: Opportunities and challenges. The Innovation Geoscience, 100025
Luo, J., Ni, G., Zhang, Y., Wang, K., Shen, M., Cao, Z., Qi, T., Xiao, Q., Qiu, Y., Cai, Y., & Duan, H.* (2023a). A new technique for quantifying algal bloom, floating/emergent and submerged vegetation in eutrophic shallow lakes using Landsat imagery. Remote Sensing of Environment, 287, 113480
Qi, T., Shen, M., Kutser, T., Xiao, Q., Cao, Z., Ma, J., Luo, J., Liu, D., & Duan, H.* (2023b). Remote sensing of dissolved CO2 concentrations in meso-eutrophic lakes using Sentinel-3 imagery. Remote Sensing of Environment, 286, 113431
Liu, D., Yu, S., Xiao, Q., Qi, T., & Duan, H.* (2021). Satellite estimation of dissolved organic carbon in eutrophic Lake Taihu, China. Remote Sensing of Environment, 264, 112572
Shen, M., Duan, H.*, Cao, Z., Xue, K., Qi, T., Ma, J., Liu, D., Song, K., Huang, C., & Song, X. (2020). Sentinel-3 OLCI observations of water clarity in large lakes in eastern China: Implications for SDG 6.3.2 evaluation. Remote Sensing of Environment, 247, 111950
Cao, Z., Duan, H.*, Feng, L., Ma, R., & Xue, K. (2017). Climate-and human-induced changes in suspended particulate matter over Lake Hongze on short and long timescales. Remote Sensing of Environment, 192, 98-113
Duan, H.*, Ma, R., & Hu, C. (2012). Evaluation of remote sensing algorithms for cyanobacterial pigment retrievals during spring bloom formation in several lakes of East China. Remote Sensing of Environment, 126, 126-135
Shen, M., Cao, Z., Xie, L., Zhao, Y., Qi, T., Song, K., Lyu, L., Wang, D., Ma, J., & Duan, H.* (2023a). Microcystins risk assessment in lakes from space: Implications for SDG 6.1 evaluation. Water Research, 245, 120648
Liu, D., Sun, Z., Shen, M., Tian, L., Yu, S., Jiang, X., & Duan, H.* (2023b). Three-dimensional observations of particulate organic carbon in shallow eutrophic lakes from space. Water Research, 229, 119519
Xiao, Q., Xu, X., Duan, H.*, Qi, T., Qin, B., Lee, X., Hu, Z., Wang, W., Xiao, W., & Zhang, M. (2020). Eutrophic Lake Taihu as a significant CO2 source during 2000–2015. Water Research, 170, 115331
Duan, H.*, Tao, M., Loiselle, S.A., Zhao, W., Cao, Z., Ma, R., & Tang, X. (2017). MODIS observations of cyanobacterial risks in a eutrophic lake: Implications for long-term safety evaluation in drinking-water source. Water Research, 122, 455-470
Xiao, Q., Duan, H.*, Qin, B., Hu, Z., Zhang, M., Qi, T., & Lee, X. (2022). Eutrophication and temperature drive large variability in carbon dioxide from China's Lake Taihu. Limnology and Oceanography, 67, 379-391