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1. Zeng, J., T. Zhou** , L. Cao, Y. Yu, E Tan, Y. Zhang, X. Wu, J. Zhang, Q. Zhang, Y. Qu, J. Liu, P. Liu, X. Liu, H. Luo. Various responses of global heterotrophic respiration to variations in soil moisture and temperature enhance the positive feedback on atmospheric warming. Communications Earth & Environment , 2025, doi:10.1038/s43247-025-02423-w.
2. Zhang, Y., T. Zhou** , J. Zeng, E Tan, J. Zhang, X. Wu, Q. Lin, Q. Zhang, X. Liu, Y. Xu, B. Liu. Impact of annual plant prevalence on soil carbon storage through root turnover and productivity. Plant and Soil , 2025, doil: 10.1007/s11104-025-07439-x.
3. Zeng, J., T. Zhou** , E Tan, Y. Yu, Y. Zhang, X. Wu, J. Zhang, Y. Qu, Q. Zhang. Ignoring previous water conditions underestimates global terrestrial ecosystem productivity in severely arid vegetation regions. Global and Planetary Change , 2025, 104799, doi:10.1016/j.gloplacha.2025.104799.
4. Zhang, Y., T. Zhou** , X. Liu, J. Zhang, Y. Xu, J. Zeng, X. Wu, Q. Lin. Crucial roles of the optimal time-scale of water condition on grassland biomass estimation on Qinghai–Tibet Plateau. Science of The Total Environment , 2023, 167210, dol:10.1016/j.scitotenv.2023.167210.
5. Liu, X., T. Zhou** , X. Zhao, P. Shi, Y. Zhang, Y. Xu, H. Luo, P. Yu, P. Zhou, J. Zhang. Patterns and drivers of soil carbon change (1980s-2010s) in the northeastern Qinghai-Tibet Plateau. Geoderma , 2023, 434, doi: 10.1016/j.geoderma.2023.116488.
6. Zhang, Y., T. Zhou** , X. Liu, Y. Xu, J. Zeng, J. Zhang. Vertical distribution patterns of community biomass, carbon and nitrogen content in grasslands on the eastern Qinghai–Tibet Plateau. Ecological Indicators , 2023, 154, 110726, doi: 10.1016/j.ecolind.2023.110726.
7. Zeng, J., T. Zhou** , Y. Xu, Q. Lin, E Tan, Y. Zhang, X. Wu, J. Zhang, X. Liu. The fusion of multiple scale data indicates that the carbon sink function of the Qinghai-Tibet Plateau is substantial. Carbon Balance and Management , 2023 18, doi: 10.1186/s13021-023-00239-9.
8. Zhang, Y., T. Zhou** , P. Shi, X. Liu, P. Xu, H. Luo, P. Zhou, Y. Xu. Modeling of grassland biomass and evaluation of uncertainties caused by diferences in frozen soil type on the Qinghai Plateau. Theoretical and Applied Climatology , 2023, doi: 10.1007/s00704-023-04620-z.
9. Zeng, J., T. Zhou** , Q. Wang, Y. Xu, Q. Lin, Y. Zhang, X. Wu, J. Zhang, X. Liu. Spatial patterns of China’s carbon sinks estimated from the fusion of remote sensing and field-observed net primary productivity and heterotrophic respiration. Ecological Informatics , 2023, 76, doi: 10.1016/j.ecoinf.2023.102152.
10. Yu, P., T. Zhou** , H. Luo, X. Liu, P. Shi, Y. Zhang, J. Zhang, P. Zhou, Y. Xu. Global pattern of ecosystem respiration tendencies and its implications on terrestrial carbon sink potential. Earth's Future , 2022, 10, doi: 10.1029/2022EF002703.
11. Luo, H., T. Zhou** , P. Yu, C. Yi, X. Liu, Y. Zhang, P. Zhou, J. Zhang and Y. Xu. The forest recovery path after drought dependence on forest type and stock volume. Environmental Research Letters , 2022, 17, 055006,doi:10.1088/1748-9326/ac57e5.
12. Yu, P., T. Zhou** , H. Luo, X. Liu, P. Shi, X. Zhao, Z. Xiao, Y. Zhang, P. Zhou. Interannual variation of gross primary production detected from optimal convolutional neural network at multitimescale water stress. Remote Sensing in Ecology and Conservation , 2022,8(3):409–425, doi:10.1002/rse2.252.
13. Liu, X., T. Zhou** , Shi, P., Zhang, Y., Luo, H., Yu P., Xu, Y., Zhou, P., and Zhang, J. Uncertainties of soil organic carbon stock estimation caused by paleoclimate and human footprint on the Qinghai Plateau. Carbon Balance and Management , 2022, 17, 8, doi:10.1186/s13021-022-00203-z.
14. Xu, P., W. Fang, T. Zhou , H. Li, X. Zhao, S. Berman, T. Zhang, C. Yi. Satellite evidence of canopy-height dependence of forest drought resistance in southwestern China. Environmental Research Letters , 2022, 17, 025005, doi:10.1088/1748-9326/ac4a33.
15. Meng, M., D. Gong, T. Zhu, P. Yao, T. Zhou . Significant association between winter North Atlantic SST and spring NDVI anomaly over Eurasia. Journal of Geophysical Research: Atmospheres , 2022, 127, e2021JD036315, doi:10.1029/2021JD036315.
16. Ge, R., H. He, L. Zhang,X. Ren, M. Williams, G. Yu, T. L. Smallman, T. Zhou , P. Li, Z. Xie, S. Wang, H. Wang, G. Zhou, Q. Zhang, A. Wang, Z. Fan, Y. Zhang, W. Shen, H. Yin, L. Lin. Climate sensitivities of carbon turnover times in soil and vegetation:Understanding their effects on forest carbon sequestration. Journal of Geophysical Research: Biogeosciences , 2022, 127, e2020JG005880. doi:10.1029/2020JG005880.
17. Zeng, J., R. Zhang, Y. Qu, V.A. Bento, T. Zhou , Y. Lin, X. Wu, J. Qi, W. Shui, Q. Wang. Improving the drought monitoring capability of VHI at the global scale via ensemble indices for various vegetation types from 2001 to 2018. Weather and Climate Extremes , 2022,35, 100412, doi: 10.1016/j.wace.2022.100412.
18. Fang, W., C. Yi, D. Chen, P. Xu, G. Hendrey, N. Krakauer, K. Jensen, S. Gao, Z. Lin, G. Lam, Q. Zhang, T. Zhou . Hotter and drier climate made the Mediterranean Europe and Northern Africa region a shrubbier landscape. Oecologia , 2021, 197, 1111–1126. doi:10.1007/s00442-021-05041-3.
19. Gao, S, T. Zhou** , C. Yi, P. Shi, W. Fang, R. Liu, E. Liang, J.J.Gamarero. Asymmetric impacts of dryness and wetness on tree growth and forest coverage. Agricultural and Forest Meteorology , 2020, 288-289, 107980, doi: 10.1016/j.agrformet.2020.107980.
20. Zhao, J., X. Zhao, S. Liang, T. Zhou , X. Du, P. Xu, D. Wu. Assessing the thermal contributions of urban land cover types. Landscape and Urban Planning , 2020, 204, 103927, doi:10.1016/j.landurbplan.2020.103927.
21. Shi, P., T. Ye, Y. Wang, T. Zhou , W. Xu, J. Du, J. Wang, N. Li, C. Huang, L. Liu, B. Chen, Y. Sun, W. Fang, M. Wang, X. Hu, J. Wu, C. He, Q. Zhang, Q. Ye, C. Jaeger, N. Okada. Disaster Risk Science: A Geographical Perspective and a Research Framework. International Journal of Disaster Risk Science , 2020, 426–440, doi:10.1007/s13753-020-00296-5.
22. Liu, X., T. Zhou** , H. Luo, P. Xu, S. Gao, and J. Liu. Models ignoring spatial heterogeneities of forest age will significantly overestimate the climate effects on litterfall in China. Science of the Total Environment , 2019, 661, 492-503, doi: 10.1016/j.scitotenv.2019.01.162.
23. Ge, R., H. He, X. Ren, L. Zhang, G. Yu, T. L. Smallman, T. Zhou , S. Yu, Y. Luo, Z. Xie, S. Wang, H. Wang, G. Zhou, Q. Zhang, A. Wang, Z. Fan, Y. Zhang, W. Shen, H. Yin, and L. Lin. Underestimated ecosystem carbon turnover time and sequestration under the steady state assumption: A perspective from long‐term data assimilation. Global Change Biology , 2019, doi: 10.1111/gcb.14547.
24. Gao, S., R. S. Liu, T. Zhou** , W. Fang, C. X. Yi, R. J. Lu, X. Zhao, and H. Luo. Dynamic responses of tree-ring growth to multiple dimensions of drought. Global Change Biology , 2018, 24, 5380-5390, doi: 10.1111/gcb.14367.
25. Xu, P., T. Zhou** , C. Yi*, W. Fang, G. Hendrey, and X. Zhao. Forest drought resistance distinguished by canopy height. Environmental Research Letters , 2018, 13, 075003, doi: 10.1088/1748-9326/aacadd.
26. Xu, P., T. Zhou** , X. Zhao, H. Luo, S. Gao, Z. Li, and L. Cao. Diverse responses of different structured forest to drought in Southwest China through remotely sensed data. International Journal of Applied Earth Observation and Geoinformation , 2018, 69(7), 217-225, doi: 10.1016/j.jag.2018.03.009.
27. Shi, P.J., X.M. Bai, F. Kong, J.Y. Fang, D.Y. Gong, T. Zhou , Y. Guo, Y.S. Liu, W.J. Dong, Z.G. Wei, C.Y. He, D.Y. Yu, J. A. Wang, Q. Ye, R.C. Yu, D.L. Chen. Urbanization and air quality as major drivers of altered spatiotemporal patterns of heavy rainfall in China. Landscape Ecology , 2017, 1-16, doi:10.1007/s10980-017-0538-3.
28. Gao, S., T. Zhou** , X. Zhao, D. Wu, Z. Li, H. Wu, L. Du, and H. Luo. Age and climate contribution to observed forest carbon sinks in East Asia. Environmental Research Letters , 2016, 034021, doi:10.1088/1748-9326/11/3/034021.
29. Luo, Y.,A.Ahlstrom, S.D.Allison, N.H.Batjes, V.Brovkin, N.Carvalhais, A.Chappell, P.Ciais, E.A.Davidson, A.Finzi, K.Georgiou, B.Guenet, O.Hararuk, J.W.Harden, Y.He, F.Hopkins, L.Jiang, C.Koven, R.B.Jackson,C.D.Jones, M.J.Lara, J.Liang, A.D.McGuire, W.Parton, C.Peng, J.T.Randerson, A.Salazar, C.A.Sierra,M.J.Smith, H.Tian, K.E.O.Todd-Brown, M.Torn, K.J.Groenigen, Y.Wang, T.O.West, Y.Wei, W.R.Wieder, J.Xia, X.Xu, X.Xu and T. Zhou . Toward more realistic projections of soil carbon dynamics by Earth system models. Global Biogeochemical Cycles , 2016, 30, 40–56, doi:10.1002/2015GB005239.
30. Zhou, T. , P. Shi, G. Jia, Y. Dai, X. Zhao, W. Shangguan, L. Du, H. Wu, and Y.Luo. Age-dependent forest carbon sink: Estimation via inverse modeling. Journal of Geophysical Research: Biogeosciences , 2015, 120, doi:10.1002/2015JG002943.
31. Wu, D. H., X. Zhao, S. L. Liang, T. Zhou , K. C. Huang, B. J. Tang, and W. Q. Zhao. Time-lag Effects of Global Vegetation Responses to Climate Change. Global Chang Biology , 2015, 21, 3520–3531, doi:10.1111/gcb.12945.
32. Huang, K., C. Yi, D. Wu, T. Zhou** , X. Zhao, W. J. Blanford, S. Wei, H. Wu, D. Ling, and Z. Li. Tipping point of a conifer forest ecosystem under severe drought. Environmental Research Letters , 2015, 10, 024011, doi:10.1088/1748-9326/10/2/024011.
33. Zhang, X., M.S. Moran, X. Zhao, S. Liu, T. Zhou , G. E. Ponce-Campos, F. Liu. Impact of prolonged drought on rainfall use efficiency using MODIS data across China in the early 21st century. Remote Sensing of Environment , 2014, 150, 188-197.
34. Du, L., T. Zhou** , Z. Zou, X. Zhao, K. Huang, and H. Wu. Mapping Forest Biomass Using Remote Sensing and National Forest Inventory in China. Forests , 2014, 5, 1267-1283, doi:10.3390/f5061267.
35. Zhou, T. , P. Shi, G Jia, Y Luo. Nonsteady State Carbon Sequestration in Forest Ecosystems of China Estimated by Data Assimilation. Journal of Geophysical Research , 2013, 118, 1369-1384, doi:10.1002/jgrg.20114.
36. Zhou X., T. Zhou , Y. Luo. Uncertainties in carbon residence time and NPP-driven carbon uptake in terrestrial ecosystems of the conterminous USA: A Bayesian approach. Tellus B: Chemical and Physical Meteorology , 2012, 64, 17223, doi.10.3402/tellusb.v64i0.17223.
37. Liu S., T. Zhou** , L. Wei, Y. Shu. The Spatial distribution of forest carbon sinks and sources in China. Chinese Science Bulletin , 2012, 57, doi:10.1007/s11434-012-4998-1.
38. Yuan W., Y. Luo, X. Li, S. Liu, G. Yu, T. Zhou , et al. Redefinition and global estimation of basal ecosystem respiration rate. Global Biogeochemical Cycles , 2011, 25, GB4002,doi:10.1029/2011GB004150.
39. Zhou,T., P.Shi, G.Jia, X.Li.,and Y.Luo. Spatial patterns of ecosystem carbon residence time in Chinese forests. Science in China (series D: Earth Sciences) , 2010, 53(8): 1229-1240,doi: 10.1007/s11430-010-3061-9.
40. Zhou, T. , P.Shi, D. Hui, Y. Luo. Spatial patterns in temperature sensitivity of soil respiration in China: Estimation with inverse modeling. Science in China(Series C: Life Sciences) , 2009, 52(10):982-989, doi:10.1007/s11427-009-0125-1.
41. Zhou, T. , P.Shi, D.Hui,and Y.Luo. Global pattern of temperature sensitivity of soil heterotrophic respiration (Q10) and its implications for carbon-climate feedback. Journal of Geophysical Research , 2009, 114, G02016, doi:10.1029/2008JG000850.
42. Zhou, T. , C.Yi, P.S.Bakwin, L.Zhu. Links between global CO2 variability and climate anomalies of biomes. Science in China (series D: Earth Sciences) , 2008, 51(5): 740-747.
43. Zhou, T. , and Y.Luo. Spatial patterns of ecosystem carbon residence time and NPP-driven carbon uptake in the conterminous United States. Global Biogeochemical Cycles , 2008,22, GB3032, doi:10.1029/2007GB002939.
44. 周涛 ,史培军,罗巾英,邵振艳. 基于遥感与过程模型估算土壤有机碳储量. 遥感学报 ,2007,11(1):127-136.
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