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1. Jiao L, Zhang P,Zhang HY, Shao DD, Yang W, Sun T*. Density-dependent dispersal strategy of pollinator moderates the adverse effect of fragmented habitat on plant reproduction. Functional Ecology . 2023 DOI: 10.1111/1365-2435.14252
2. Zhang Y, Sun T,Ding G, Yu D, Yang W, Sun Q, Wang X and Lin H (2023) Moderate relative size of covered and non-covered structures of artificial reef enhances the sheltering effect on reef fish. Frontiers in Marine Science 10:1130626. doi: 10.3389/fmars.2023.1130626
3. Qi M, De Malach N,Dong Y, Zhang H, Sun T*. Coexistence under Hierarchical Resource Exploitation: The Role of the R*-Preemption Trade-Off. American Naturalist 2022 , 200, ( 2 )
4. Zhang HY, Sun T*,Zhou Z, Cao HB, Qiu JF, Huang XQ. Increased river flow enhances the resilience of spatially patterned mudflats to erosion. Water Research . 2022 (220) 118660
5. Zhang HY. Sun T.Cao HB. Zhang Y. Yang W. Shao DD. Cui BS. Zhou Z. Movement of mud snails affects population dynamics, primary production and landscape heterogeneity in tidal flat ecosystems. Landscape Ecology ,2021 (36):3493–3506
6. Li SH, Sun T, Yang W, Yan SJ, Cui BS. Interspecific relationships between submerged and emergent aquatic plants along a nitrogen gradient in a mesocosm experiment. Ecological indicators
7. Li SH, Sun T, Yang W, Cui BS, Yin Xinan. A biodiversity evaluation framework for restoration of aquatic macrophyte communities in shallow lakes driven by hydrological process management. Hydrological processes ,2021, 35(1). DOI: 10.1002/hyp.13983
8. Qi, M., Zhao F.,Sun T., and Voinov A. Disentangling the relative influence of regeneration processes on marsh plant assembly with a stage-structured plant assembly model. Ecological Modelling . 2021 (455):109646.
9. Zhang H, Sun T*,Yang W. 2020.Short-term environmental flow assessment of a functional estuarine tidal flat ecosystem: a nonlinear ecological response to flow alteration. Water Resource Research , 56(12):e2020WR027084
10. QiM, Sun T*, Xue SF, Yang W, Shao DD, Martínez-López J. Competitive ability stress tolerance and plant interactions along stress gradients. Ecology , 2018,99(4):848–857.
11. Zhang HY, Sun T*,Xue SF, Yang W, Shao DD. Habitat-mediated, density-dependent dispersal strategies affecting spatial dynamics of populations in an anthropogenically -modified landscape. Science of the Total Environment , 2018,625:1510–1517.
12. Lin HY, SunT*, Adams MP, Zhou Y*, Zhang XM, Xu SC, Gu RT. 2018. Seasonal dynamics of trace elements in sediment and seagrass tissues in the largest Zostera japonica habitat, the Yellow River Estuary, northern China. Marine Pollution Bulletin , doi:10.1016/j.marpolbul.2018.02.043
13. Zhang HY, Sun T*,Xue SF, Yang W, Yin XA. Environmental flow assessment in estuaries taking into consideration species dispersal in fragmented potential habitats. Ecological Indicators , 2017,78, 541-548.
14. Qi M, Sun T*,Zhang HY, Zhu MS, Yang W, Shao DD , Voinov A .Maintenance of salt barrens inhibited landward invasion of Spartina species in salt marshes. Ecosphere , 2017, 8(10), e01982.
15. Qi M, Feng ML, SunT*, Yang W. Resilience changes in watershed systems: A new perspective to quantify long-term hydrological shifts under perturbations. Journal of Hydrology , 2016, 539: 281–289.
16. LinHY, Sun T*,Zhou Y, Zhang XM. Anti-oxidative feedback and biomarkers in the intertidal seagrass Zostera japonica induced by exposure to copper, lead and cadmium. Marine Pollution Bulletin , 2016,109(1): 325-333.
17. LinHY, Sun T*, XueSF, Jiang XL. Heavy metal spatial variation, bioaccumulation, and risk assessment of Zostera japonica habitat in the Yellow River Estuary,China. Science of the Total Environment ,2016, 541: 435–443.
18. XueSF, Sun T*,Zhang HY, Shao DD. Suitable habitat mapping in the Yangtze River Estuary influenced by land reclamations. Ecological Engineering , 2016, 97:64–73.
19. Shen XM, Sun T*,Tang S, Yang W. Short-Term Response of Aquatic Metabolism to Hydrologic Pulsing in the Coastal Wetlands of Yellow River Delta. Wetlands , 2016.36,S81-S94.
20. Zhang HY, Sun T*,Shao DD, Yang W. Fuzzy logic method for evaluating habitat suitability in an estuary affected by land reclamation. Wetlands , 2016.36, S19-S30.
21. Zhu MS, Sun T*,Shao DD. Impact of land reclamation on the evolution of shoreline change and nearshore vegetation distribution in Yangtze River Estuary. Wetlands ,2016.36, S11-S17.
22. Qi M, Sun T*, ZhanM, Xue SF. Simulating Dynamic Vegetation Changes in a Tidal Restriction Area with Relative Stress Tolerance Curves. Wetlands , 2016.36, S31-S43.
23. Shen XM, Sun T*,Liu FF, Xu J, Pang AP, Aquatic metabolism response to the hydrologic alteration in the Yellow River estuary, China. Journal of Hydrology , 2015,525: 42-54.
24. Sun T*, Zhang HY,Yang ZF, Yang W. Environmental flow assessments for transformed estuaries. Journal of Hydrology , 2015,520: 75–84.
25. Tang S, Sun T*,Shen XM, Qi M, Feng ML. Modeling net ecosystem metabolism influenced by artificial hydrological regulation: An application to the Yellow River Estuary,China. Ecological Engineering ,2015, 76: 84-94.
26. Pang AP, Sun T*.Bayesian networks for environmental flow allocation and an application in the Yellow River estuary, China. Hydrology and Earth System Sciences ,2014, 18(5): 1641-1651.
27. Yang ZF, Sun T.Zhao R. Environmental flow assessments in estuaries related to preference of phytoplankton. Hydrology and Earth System Sciences , 2014, 18,1785-1791.
28. Pang AP, Sun T*,Yang ZF, A framework for determining recommended environmental flows for balancing agricultural and ecosystem water demands. Hydrological Sciences Journal , 2014, 59(3-4): 890–903.
29. Sun T*, Xu J, YangZF. Environmental flow assessments in estuaries based on an integrated multi-objective method. Hydrology and Earth System Sciences , 2013,17(2): 751-760.
30. Pang AP, Sun T*,Yang ZF. Economic compensation for irrigation processes to safeguard environmental flows in the Yellow River Estuary, China. Journal of Hydrology , 2013, 482: 129–138.
31. Sun T*, Feng ML.Multistage analysis of hydrologic alterations in the Yellow River, China. River Research and Applications,2013, 29(8): 991–1003.
32. Sun T*, Xu J, YangZF. Objective-based Method for Environmental Flow Assessment in Estuaries and its Application to the Yellow River Estuary, China. Estuaries and Coasts , 2012, 35(3):892–903.
33. Sun T*, Yang ZF,Shen ZY, Zhao R. Ecological water requirements for the source region of China’s Yangtze River under a range of ecological management objectives. Water International , 2012,37(3): 236–252.
34. Xie T, Liu XH, SunT*. The Effects of Groundwater Table and Flood Irrigation Strategies on Soil Water and Salt Dynamics and Reed Water Use in the Yellow River Delta,China. Ecological Modelling ,2011, 222(2): 241–252.
35. Sun T, Yang ZF,Shen ZY, Zhao R. Environmental flows for the Yangtze Estuary based on salinity objectives. Communications in Nonlinear Science and Numerical Simulation , 2009,14: 959-971.
36. Yang ZF, Sun T,Cui BS, Chen B, Chen GQ. Environmental flow requirements for integrated water resources allocation in the Yellow River Basin, China. Communications in Nonlinear Science and Numerical Simulation , 2009, (14): 2469-2481.
37. Sun T, Yang ZF,Cui BS. Critical environmental flows to support integrated ecological objectives for the Yellow River Estuary, China. Water resources management , 2008,22 (8): 973-989.
38. Sun T, Tao J H.Numerical simulation of pollutant transport acted by wave for a shallow water sea bay. International Journal for Numerical Methods in Fluids ,2006, 51:469–487.
39. Yang ZF, Sun T,Qin XS. Calculating method for quantifying environmental flows in estuaries: A case study of Haihe River Basin, China. Journal of Environmental Informatics , 2005,6(2):72-79.
40. Sun T, Tao JH.Experimental and numerical study of wave-induced long-shore currents on a mild slope beach. China Ocean Engineering,2005,19(3):469~484.