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Carbon Balance and Management|July 8, 2020
Modeling sediment diagenesis processes on riverbed to better quantify aquatic carbon fluxes and stocks in a small watershed of the Mid-Atlantic regionJunyu Qi, Xuesong Zhang, Sangchul Lee, et al.The Science of the Total Environment|March 21, 2024
Assessing watershed-scale impacts of best management practices and elevated atmospheric carbon dioxide concentrations on water yieldXiaoyu Kang, Junyu Qi, Charles P-A Bourque, et al.The Science of the Total Environment|July 11, 2022
Irrigation plays significantly different roles in influencing hydrological processes in two breadbasket regionsYiming Wang, Yuyu Zhou, Kristie J Franz, et al.Scientific Data|March 31, 2022
An improved daily standardized precipitation index dataset for mainland China from 1961 to 2018Qianfeng Wang, Rongrong Zhang, Junyu Qi, et al.The Science of the Total Environment|December 9, 2023
Modeling lateral carbon fluxes for agroecosystems in the Mid-Atlantic region: Control factors and importance for carbon budgetXi Luo, Avay Risal, Junyu Qi, et al.Scientific Data|May 31, 2023
An improved global vegetation health index dataset in detecting vegetation droughtJingyu Zeng, Tao Zhou, Yanping Qu, et al.Journal of Hydrology|February 25, 2021
SWAT ungauged: Water quality modeling in the Upper Mississippi River BasinJunyu Qi, Xuesong Zhang, Qichuan Yang, et al.Environmental Research|July 5, 2024
The response of non-point source pollution to climate change in an orchard-dominant coastal watershedYiwen Han, Zhong Liu, Yafei Chen, et al.The Science of the Total Environment|October 20, 2022
Assessing impacts of global climate change on water and food security in the black soil region of Northeast China using an improved SWAT-CO<sub>2</sub> modelYingqi Zhang, Haipeng Liu, Junyu Qi, et al.Water Research|August 23, 2024
Improving hydrological modeling to close the gap between elevated CO<sub>2</sub> concentration and crop response: Implications for water resourcesNa Wen, Yiwen Han, Junyu Qi, et al.Pageof 3