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性别: 电话: 22222222 地址: 办公地点:4444 |
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研究方向
主要研究方向为全球变化、陆地碳循环、农业遥感和植被叶绿素荧光遥感等,是国际上较早开展卫星叶绿素荧光遥感的学者之一,建立了中国陆地生态系统光谱观测网络ChinaSpec,研究成果推动了卫星叶绿素荧光遥感应用的发展。 |
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教育经历
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工作经历
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学术成果 |
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主要科研项目 1. 国家自然科学基金联合基金重点项目(2025.01-2028.12),259万,项目负责人 2. 国家自然科学基金国际合作交流项目(2024.01-2024.12),20万,项目负责人 3. 国家自然科学基金杰青项目(2022.01~2026.12),400万,项目负责人 4. 江苏省碳中和国际联合实验室项目(2022.01-2025.12),100万,项目负责人 5. 国家自然科学基金面上项目(2018.01~2023.12),55万,项目负责人 6. 中德科学基金研究交流中心项目(2020.01-2020.12),18.9万,项目负责人 7. 国家重点研发计划项目课题(2019.11~2024.10),415万,课题负责人 8. 国家自然科学基金面上项目(2017.01~2020.12),65万,项目负责人 9. 国家自然科学基金国际合作交流项目(2019.01-2019.12),8万,项目负责人 10. 国家自然科学基金国际合作交流重点项目(2018.01-2020.12),180万,项目负责人 11. 江苏省杰出青年基金项目(2017.07~2020.06),100万,项目负责人 12. 国家重点研发计划项目(2016.07~2021.07),140万,专题负责人
参与的科研项目 1. 国家自然科学基金联合基金重点项目(2025.01-2028.12),259万,项目负责人 2. 国家自然科学基金国际合作交流项目(2024.01-2024.12),20万,项目负责人 3. 国家自然科学基金杰青项目(2022.01~2026.12),400万,项目负责人 4. 江苏省碳中和国际联合实验室项目(2022.01-2025.12),100万,项目负责人 5. 国家自然科学基金面上项目(2018.01~2023.12),55万,项目负责人 6. 中德科学基金研究交流中心项目(2020.01-2020.12),18.9万,项目负责人 7. 国家重点研发计划项目课题(2019.11~2024.10),415万,课题负责人 8. 国家自然科学基金面上项目(2017.01~2020.12),65万,项目负责人 9. 国家自然科学基金国际合作交流项目(2019.01-2019.12),8万,项目负责人 10. 国家自然科学基金国际合作交流重点项目(2018.01-2020.12),180万,项目负责人 11. 江苏省杰出青年基金项目(2017.07~2020.06),100万,项目负责人 12. 国家重点研发计划项目(2016.07~2021.07),140万,专题负责人 |
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已发表的代表性论著: (一)出版著作:
(一)出版著作: 1. Huete, A. G. Ponce-Campos, Y.G. Zhang, N. Restrepo-Coupe, X.Ma, and M.-S. Moran. Measuring photosynthesis (productivity) from space. Land Resources Monitoring, Modeling, and Mapping with Remote Sensing in Remote Sensing Handbook (vol. 2), CRC Press, 2014. 2. Huete, A. G. Ponce-Campos, Y.G. Zhang, N. Restrepo-Coupe, X.Ma. Measuring terrestrial productivity from space. Remote Sensing Handbook (vol.III), CRC Press, 2024. 3. Zhang, Y., Zhang, Z., 2026. Solar Induced Chlorophyll Fluorescence: Origins and Applications, Relation to Photosynthesis and Retrieval. In: Liang, S. (Ed.), Comprehensive Remote Sensing, vol. 3. Elsevier, pp. 257–296. https://dx.doi.org/10.1016/B978-0-443-13220-9.00055-X. 4. 王绍强,刘良云,张永光. 陆地生态系统高光谱观测方法与应用, 科学出版社,2022. (二)代表性学术论文( * 通讯作者): 2026 1. Cao R., Y.G. Zhang*, A. Cescatti, P. Ciais, J.Sardans, C.Y. Wu, C.M. Zohner, M. Fernández-Martínez, A.Descals, J. Peñuelas. Tree species richness promotes long-term increases of photosynthesis in global forests. Nature Climate Change, 2026 2. Lai G., Y.G. Zhang*, C.Y. Wu*, A. Cescatti, G. Duceiller,J.G. Pausas, S. Hantson, Z. Zhang, A.Descals, M. Cao, H. Lu, J. Peñuelas. Vegetation greening enhances global fire activity. PNAS (under review) 3. Cao R., Y.G. Zhang*, M. Fernández-Martínez, A. Descals, J. Sardans, J. Peñuelas. Enhanced forest temperature regulation promotes heat resistance of photosynthesis. Nature Plants (under revision) 2025 4. Zhang, Z., Fu A., Xu J., Lin J., Zhang X. & Y.G. Zhang*. First Global Retrievals of Solar Induced Chlorophyll Fluorescence from the SIFIS Instrument onboard the Chinese Goumang Satellite. Geophysical Research Letters, 2025, 52(21), e2025GL118327. 5. Bai S., Li F., Yan Y., Huang Q., Jiang F., Chen H., & Y.G. Zhang*. Seasonal Variations of Methane Emissions from a Urumqi Landfill in China and its driving factors using Hyperspectral Satellite Time-Series Observations. Journal of Geophysical Research: Atmospheres, 2025, 130(20), e2025JD044272. 6. Zhang, Z., & Y.G. Zhang*. Fluorescence efficiency-derived physiological optimal temperature improving the estimation of photosynthesis. Geophysical Research Letters, 52, 2025, e2025GL116420. https://doi.org/10.1029/2025GL116420 7. Zhang Y.G., R. Cao. Greater tree species richness results in increased ecosystem photosynthesis in forests globally. Nat. Plants 11, 1237–1238 (2025). https://doi.org/10.1038/s41477-025-02055-0 8. Cao R., Y.G. Zhang*, M. Fernández-Martínez, Z. Zhang, G. Lai, W. Ju, J. Peñuelas. Global evidence of positive effects of richness of tree species on ecosystem photosynthesis. Nature Plants , 11, 1429–1440 (2025). https://doi.org/10.1038/s41477-025-02046-1 9. Zhao D., Zhang Z., Y.G. Zhang*. Large-scale diurnal responses of solar-induced chlorophyll fluorescence (SIF) to varying heat and water stresses: Implications for monitoring SIF variations from satellite observations. Remote Sensing of Environment, 2025, 324: 114748. 10. Lai G., and Y.G. Zhang*. Increased Atmospheric Aridity and Reduced Precipitation Drive the 2023 Extreme Wildfire Season in Canada. Geophysical Research Letters, 2025, 52(6), e2024GL114492. https://dx.doi.org/10.1029/2024GL114492. 11. Zhang, Z.Y., Y.G. Zhang. Mitigating the directional retrieval error of solar-induced chlorophyll fluorescence in the red band. Remote Sensing of Environment, 2025, 316: 114496. 2024 12. Pei L., Y.G. Zhang*, Z.Y. Zhang, Y.F. Wu, Y.Q. Hou, L.S. Wu. Evaluating the capability of low-configuration spectrometers to retrieve far-red solar-induced chlorophyll fluorescence and its application for identifying crop growth stages. Journal of Remote Sensing, 2024. 4: 0369. https://doi.org/10.34133/remotesensing.0369 13. Lai G.K., J.L. Li, J. Wang, C.Y. Wu*, Y.G. Zhang*, C.M. Zohner, J. Peñuelas, Q.S. Ge*. Earlier peak photosynthesis timing potentially escalates global wildfires. National Science Review, 2024. 11(9): nwae292. https://doi.org/10.1093/nsr/nwae292 14. Zang J.L., F. Qiu, Y.G., Zhang*. A global dataset of forest regrowth following wildfires. Scientific Data, 2024. 11(1): 1052. https://doi.org/10.1038/s41597-024-03896-8 15. Li F., S.X. Bai, K.E. Lin, C.X. Feng, S.W. Sun, S.H. Zhao, Z.T. Wang, W. Zhou, C.Y. Zhou, Y.G. Zhang*. Satellite-based surveys reveal substantial methane point-source emissions in major oil & gas basins of North America during 2022-2023. Journal of Geophysical Research: Atmospheres, 2024. 129(19): e2024JD040870. https://doi.org/10.1029/2024JD040870 16. Jin S.C., C.H. Zhan, W.W. Liu, L.X. Ma, Z.H. Li, X.K. Zhang, Y.F. Wu, Q. Zhang, G. Zheng, Y.G. Zhang*. A LiDAR-driven three-dimensional simulation model for far-red solar-induced chlorophyll fluorescence in forests. Remote Sensing of Environment, 2024. 314: 114391. https://doi.org/10.1016/j.rse.2024.114391 17. Bai S.X., Y.G. Zhang*, F. Li, Y.Q. Yan, H.L. Chen, S.Z. Feng, F. Jiang, S.W. Sun, Z.T. Wang, C.Y. Zhou, W. Zhou, S.H. Zhao. High-resolution satellite estimates of coal mine methane emissions from local to regional scales in Shanxi, China. Science of The Total Environment, 2024. 950: 175446. https://doi.org/10.1016/j.scitotenv.2024.175446 18. Shen P.J., X.Y. Wang, C.M. Zohner, J. Peñuelas, Y.Y. Zhou, Z.Y. Tang, J.Y. Xia, H. Zheng, Y.S. Fu, J.J. Liang, W.W. Sun*, Y.G. Zhang*, C.Y. Wu*. Biodiversity buffers the response of spring leaf unfolding to climate warming. Nature Climate Change, 2024. 14(8): 863-868. https://doi.org/10.1038/s41558-024-02035-w 19. Li J.L., Y. Jiang, J. Liu, L.S. Wu, N. Xu, Z.Y. Zhang, D.Y. Zhao, G. Li, P. Wang, W. Li, B. Zhu*, Y.G. Zhang*, J. Zhu*. A photosynthetically active radiative cooling film. Nature Sustainability, 2024. 7(6): 786-795. https://doi.org/10.1038/s41893-024-01350-6 20. Wu L.S., Y.G. Zhang*, Z.Y. Zhang, X.K. Zhang, Y.F. Wu, J.M. Chen. Deriving photosystem-level red chlorophyll fluorescence emission by combining leaf chlorophyll content and canopy far-red solar-induced fluorescence: Possibilities and challenges. Remote Sensing of Environment, 2024. 304: 114043. https://doi.org/10.1016/j.rse.2024.114043 21. Wu, Y.F., Z.Y. Zhang, L.S. Wu, Y.G. Zhang. Solar-induced chlorophyll fluorescence tracks canopy photosynthesis under dry conditions in a semi-arid grassland. Agricultural and Forest Meteorology, 2024. 356: 110174. https://doi.org/10.1016/j.agrformet.2024.110174 22. Liu, Y., J. Penuelas, A. Cescatti, Y.G. Zhang, Z.Y. Zhang. Atmospheric dryness dominates afternoon depression of global terrestrial photosynthesis. Geophysical Research Letters, 2024. 51(24): e2024GL110954. https://doi.org/10.1029/2024GL110954 23. Zhang, L.Y., F. Jiang, W. He, M.S. Wu, J. Wang, W.M. Ju, H.M. Wang, Y.G. Zhang, S. Sitch, J.M. Chen. Improved estimates of net ecosystem exchanges in mega-countries using GOSAT and OCO-2 observations. Communications Earth & Environment, 2024. 5(1): 737. https://doi.org/10.1038/s43247-024-01910-w 24. Su, Y.X., X.Y. Li, C.Q. Zhang, W.T. Yan, P. Ciais, S.C. Cook-Patton, O.L. Phillips, J.L. Shang, A. Cescatti, J.M. Chen, J. Liu, J. Chave, C.E. Doughty, V. Heinrich, F. Tian, Y.Q. Luo, Y. Liu, Z. Yu, D.L. Hao, S.L. Tao, Y.G. Zhang, Z.Z. Zeng, R. Lafortezza, Y.Y. Huang, L. Fan, X.H. Wang, Y.W Qin, Q.W. Ran, K. Yan, X.P. Liu, L.Y. Liu, Y.M. Yue, J.S. Ren, W.P. Yuan, X.Z. Chen. Carbon accumulation rate peaks at 1,000-m elevation in tropical planted and regrowth forests. One Earth, 2024: 101147. https://doi.org/10.1016/j.oneear.2024.11.001 25. Naethe, P., A.D. Sanctis, A. Burkart, P.K.E. Campbell, R. Colombo, B.D. Mauro, A. Damm, T. El-Madany, F. Fava, J.A. Gamon, K.F. Huemmrich, M. Migliavacca, E. Paul-Limoges, U. Rascher, M. Rossini, D. Schuttemeyer, G. Tagliabue, Y.G. Zhang, T. Julitta. Towards a standardized, ground-based network of hyperspectral measurements: Combining time series from autonomous field spectrometers with Sentinel-2. Remote Sensing of Environment, 2024. 303: 114013. 26. Li, J.L., C.Y. Wu, Y.G. Zhang, J. Penuelas, L. Liu, Q.S. Ge. Weakening warming on spring freeze–thaw cycle caused greening Earth’s third pole. Proceedings of the National Academy of Sciences, 2024. 121(8): e2319581121. https://doi.org/10.1073/pnas.2319581121 27. Zhao, X.M., J.M. Chen, Y.G. Zhang, Z.T. Jiao, L.Y. Liu, F. Qiu, J.L Zang, R.C. Cao. Global mapping of forest clumping index based on GEDI canopy height and complementary data. ISPRS Journal of Photogrammetry and Remote Sensing, 2024. 209:1-16. 28. 李飞,孙世玮,张永光*,封晨曦,陈翠红,毛慧琴,刘银年. 高分五号02星高光谱成像仪中美典型甲烷超级排放源遥感反演与分析. 遥感学报, 2024, 28(08):1986-2001. 29. 陈镜明,缪国芳,居为民,江飞,吴谋松,张永光. 中国碳收支估算的不确定性. 科学通报, 2024, 69(19):2710-2714. https://doi.org/10.1360/TB-2024-0234 2023 30. Zhang Z.Y., L. Guanter, A. Porcar-Castell, M. Rossini, J. Pacheco-Labrador, Y.G. Zhang*. Global modeling diurnal gross primary production from OCO-3 solar-induced chlorophyll fluorescence. Remote Sensing of Environment, 2023. 285: 113383. https://doi.org/10.1016/j.rse.2022.113383 31. Zhang Z.Y., A. Cescatti, Y.P. Wang, P. Gentine, J.F. Xiao, L. Guanter, A.R. Huete, J. Wu, J.M. Chen, W.M. Ju, J. Peñuelas, Y.G. Zhang*. Large diurnal compensatory effects mitigate the response of Amazonian forests to atmospheric warming and drying. Science Advances, 2023. 9(21): eabq4974. https://doi.org/10.1126/sciadv.abq4974 32. Zang J.L., W.J. Ni, Y.G. Zhang*. Spatially-explicit mapping annual oil palm heights in peninsular Malaysia combining ICESat-2 and stand age data. Remote Sensing of Environment, 2023. 295: 113693. https://doi.org/10.1016/j.rse.2023.113693 33. Zhu J., Y.M. Yin, J.S. Lu, T.A. Warner, X.W. Xu, M.Y. Lyu, X. Wang, C.L. Guo, T. Cheng, Y. Zhu, W.X. Cao, X. Yao, Y.G. Zhang, L.Y. Liu. The relationship between wheat yield and sun-induced chlorophyll fluorescence from continuous measurements over the growing season. Remote Sensing of Environment, 2023. 298: 113791. https://doi.org/10.1016/j.rse.2023.113791 34. Hou Y.Q., Y.F. Wu, L.S. Wu, L. Pei, Z.Y. Zhang, D.W. Ding, G.S. Wang, Z.Y. Li, Y.G. Zhang*. Identifying crop growth stages from solar-induced chlorophyll fluorescence data in maize and winter wheat from ground and satellite measurements. Remote Sensing, 2023. 15(24): 5689. https://doi.org/10.3390/rs15245689 35. Zhao D.Y., Z.Y. Zhang, Y.G. Zhang*. Soil moisture dominates the forest productivity decline during the 2022 China compound drought-heatwave event. Geophysical Research Letters, 2023. 50(17): e2023GL104539. https://doi.org/10.1029/2023GL104539 36. Ouyang, Z.T., R.B. Jackson, G. McNicol, E. Fluet-Chouinard, B.R.K. Runkle, D. Papale, S.H. Knox, S. Cooley, K.B. Delwiche, S. Feron, J.A. Irvin, A. Malhotra, M. Muddasir, S. Sabbatini, M.C.R. Alberto, A. Cescatti, C.L. Chen, J.W. Dong, B.N. Fong, H.Q. Guo, L. Hao, H. Iwata, Q.Y. Jia, W.M. Ju, M. Kang, H. Li, J. Kim, M.L. Reba, A.K. Nayak, D.R. Roberti, Y. Ryu, C.K. Swain, B. Tsuang, X.M. Xiao, W.P. Yuan, G.L. Zhang, Y.G. Zhang. Paddy rice methane emissions across Monsoon Asia. Remote Sensing of Environment, 2023. 284: 113335. 37. Zhang, Z.Y., Y.G. Zhang. Solar angle matters: Diurnal pattern of solar-induced chlorophyll fluorescence from OCO-3 and TROPOMI. Remote Sensing of Environment, 2023. 285: 113380. https://doi.org/10.1016/j.rse.2022.113380 38. Liu, W.W., J. Atherton, M. Mottus, Z. Malenovsky, S.Z. Luo, Y.G. Zhang, J. Gastellu-Etchegorry. Analyzing far-red SIF directional anisotropy of three structurally contrasting forest canopies towards improved GPP estimation. Agricultural and Forest Meteorology, 2023. 338: 109531. 39. Zhang, Z.Y., Y. Zhang, Y.G. Zhang. Generating high-resolution total canopy SIF emission from TROPOMI data: Algorithm and application. Remote Sensing of Environment, 2023. 295: 113699. https://doi.org/10.1016/j.rse.2023.113699 40. Zhang, Z.Y., J.M. Chen, Y.G. Zhang, M.C. Li. Improving the ability of solar-induced chlorophyll fluorescence to track gross primary production through differentiating sunlit and shaded leaves. Agricultural and Forest Meteorology, 2023. 341: 109658. https://doi.org/10.1016/j.agrformet.2023.109658 41. Li, J.L., C.Y. Wu, J. Penuelas, Y.H. Ran, Y.G. Zhang. The start of frozen dates over northern permafrost regions with the changing climate. Global Change Biology, 2023. 29(16): 4556-4568. https://doi.org/10.1111/gcb.16752 42. Zhang, L.Y., F. Jiang, W. He, M.S. Wu, J. Wang, W.M. Ju, H.M. Wang, Y.G. Zhang, S. Sitch, A.P. Walker, X. Yue, S.Z. Feng, M.W. Jia, J.M. Chen. A robust estimate of continental-scale terrestrial carbon sinks using GOSAT XCO2 retrievals. Geophysical Research Letters, 2023. 50(6): e2023GL102815. https://doi.org/10.1029/2023GL102815 2022 43. Zhang X.K., Z.Y. Zhang, Y.G. Zhang*, Q. Zhang, X.J. Liu, J.D. Chen, Y.F. Wu, L.S. Wu. Influences of fractional vegetation cover on the spatial variability of canopy SIF from unmanned aerial vehicle observations. International Journal of Applied Earth Observation and Geoinformation, 2022. 107: 102712. https://doi.org/10.1016/j.jag.2022.102712 44. Zhang Z.Y., X.K. Zhang, A. Porcar-Castell, J.M. Chen, W.M. Ju, L.S. Wu, Y.F. Wu, Y.G. Zhang*. Sun-induced chlorophyll fluorescence is more strongly related to photosynthesis with hemispherical than nadir measurements: Evidence from field observations and model simulations. Remote Sensing of Environment, 2022. 279: 113118. 45. Liu Y.J., Y.G. Zhang*, N. Shan, Z.Y. Zhang, Z.W. Wei. Global assessment of partitioning transpiration from evapotranspiration based on satellite solar-induced chlorophyll fluorescence data. Journal of Hydrology, 2022. 612: 128044. https://doi.org/10.1016/j.jhydrol.2022.128044 46. Wang S.H., Y.G. Zhang*, W.M. Ju, M.S. Wu, L. Liu, W. He, J. Peñuelas. Temporally corrected long-term satellite solar-induced fluorescence leads to improved estimation of global trends in vegetation photosynthesis during 1995–2018. ISPRS Journal of Photogrammetry and Remote Sensing, 2022. 194: 222-234. https://doi.org/10.1016/j.isprsjprs.2022.10.018 47. Wu, Y.F., Z.Y. Zhang, X.K. Zhang, L.S. Wu, Y.G. Zhang. How do sky conditions affect the relationships between ground-based solar-induced chlorophyll fluorescence and gross primary productivity across different plant types? Journal of Geophysical Research: Biogeosciences, 2022. 127(12): e2022JG006865. https://doi.org/10.1029/2022JG006865 48. Hao D.L., Y.L. Zeng, Z.Y. Zhang, Y.G. Zhang, H. Qiu, K. Biriukova, M. Celesti, M. Rossini, P. Zhu, G.R. Asrar, M. Chen. Adjusting solar-induced fluorescence to nadir-viewing provides a better proxy for GPP. ISPRS Journal of Photogrammetry and Remote Sensing, 2022, 186: 157-169. https://doi.org/10.1016/j.isprsjprs.2022.01.016 49. Jia, M.W., F. Li, Y.Z. Zhang, M.S. Wu, Y.S. Li, S.Z. Feng, H.M. Wang, H.L. Chen, W.M. Ju, J. Lin, J.W. Cai, Y.G. Zhang, F. Jiang. The Nord Stream pipeline gas leaks released approximately 220,000 tonnes of methane into the atmosphere. Environmental Science and Ecotechnology, 2022. 12: 100210. 50. Li, X.Y., N.V. Shabanov, L. Chen, Y.G. Zhang, H.G. Huang. Modeling solar-induced fluorescence of forest with heterogeneous distribution of damaged foliage by extending the stochastic radiative transfer theory. Remote Sensing of Environment, 2022. 271: 112892. 51. Wu, L.S., X.K. Zhang, M. Rossini, Y.F. Wu, Z.Y. Zhang, Y.G. Zhang. Physiological dynamics dominate the response of canopy far-red solar-induced fluorescence to herbicide treatment. Agricultural and Forest Meteorology, 2022. 323: 109063. 52. Wang, X.P., J.M. Chen, W.M. Ju, Y.G. Zhang. Seasonal variations in leaf maximum photosynthetic capacity and its dependence on climate factors across global FLUXNET sites. Journal of Geophysical Research: Biogeosciences, 2022. 127(5): e2021JG006709. https://doi.org/10.1029/2021JG006709 53. Gao, S.C., A. Huete, H. Kobayashi, T.M. Doody, W.W. Liu, Y.K. Wang, Y.G. Zhang, X.L. Lu. Simulation of solar-induced chlorophyll fluorescence in a heterogeneous forest using 3-D radiative transfer modelling and airborne LiDAR. ISPRS Journal of Photogrammetry and Remote Sensing, 2022. 191: 1-17. https://doi.org/10.1016/j.isprsjprs.2022.07.004 54. Xu, M.Z., R.G. Liu, J.M. Chen, Y. Liu, A. Wolanin, H. Croft, L.M. He, R. Shang, W.M. Ju, Y.G. Zhang, Y.H. He, R. Wang. A 21-year time series of global leaf chlorophyll content maps from MODIS imagery. IEEE Transactions on Geoscience and Remote Sensing, 2022. 60: 1-13. DOI: 10.1109/TGRS.2022.3204185 55. Xu, M.Z., R.G. Liu, J.M. Chen, R. Shang, Y. Liu, L. Qi, H. Croft, W.M. Ju, Y.G. Zhang, Y.H. He, F. Qiu, J. Li, Q.N. Lin. Retrieving global leaf chlorophyll content from MERIS data using a neural network method. ISPRS Journal of Photogrammetry and Remote Sensing, 2022. 192: 66-82. https://doi.org/10.1016/j.isprsjprs.2022.08.003 56. Chen, J.M., R. Wang, Y.H. Liu, L.M. He, H. Croft, X.Z. Luo, H. Wang, N.G. Smith, T.F. Keenan, I.C. Prentice, Y.G. Zhang, W.M. Ju, N. Dong. Global datasets of leaf photosynthetic capacity for ecological and earth system research. Earth System Science Data, 2022. 14(9): 4077-4093. https://doi.org/10.5194/essd-14-4077-2022 57. Li, J.L., C.Y. Wu, M.S. Wu, Y.G. Zhang, Y.H. Ran. Modeling the start of frozen dates with leaf senescence over Tibetan Plateau. Remote Sensing of Environment, 2022. 281: 113258. https://doi.org/10.1016/j.rse.2022.113258 58. Dechant B. Y. Ryu, G. Badgley, P. Kohler, U. Rascher, M. Migliavacca, Y.G. Zhang, G. Tagliabue, K.Y. Guan, M. Rossini, Y. Goulas, Y.L. Zeng, C. Frankenberg, J.A. Berry. NIRVP: A robust structural proxy for sun-induced chlorophyll fluorescence and photosynthesis across scales. Remote Sensing of Environment, 2022, 268: 112763. 59. 吴霖升,张永光*,章钊颖,张小康,吴云飞. 日光诱导叶绿素荧光遥感及其在陆地生态系统监测中的应用. 植物生态学报, 2022, 46(10):1167-1199. DOI: 10.17521/cjpe.2022.0233 2021 60. Wang, S.H. Y.G. Zhang*, W.M. Ju, J.M. Chen, P. Ciais, A. Cescatti, J. Sardans, I.A. Janssens, M.S. Wu, J.A. Berry, E. Campbell, M. Fernandez-Martinez, R. Alkama, S. Sitch, P. Friedlingstein, W. K. Smith, W.P. Yuan, W. He, D. Lombardozzi, M. Kautz, D. Zhu, S. Lienert, E. Kato, B. Poulter, T.G.M. Sanders, I. Kruger, R. Wang, N. Zeng, H.Q. Tian, N. Vuichard, A.K. Jain, A. Wiltshire, V. Haverd, D.S. Goll, J. Penuelas. Response to Comments on “Recent global decline of CO2 fertilization effects on vegetation photosynthesis”. Science, 2021, 373(6562): eabg7484. https://doi.org/10.1126/science.abg7484 61. Liu Y.J., C.H. You, Y.G. Zhang*, S.P. Chen, Z.Y. Zhang, J. Li, Y.F., Wu. Resistance and resilience of grasslands to drought detected by SIF in inner Mongolia, China. 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Gómez-Chova, G. Mateo-García, C. van der Tol, Y.G. Zhang, L. Guanter. Estimating crop primary productivity with Sentinel-2 and Landsat 8 using machine learning methods trained with radiative transfer simulations. Remote Sensing of Environment, 2019, 225:441-457. 91. Qiu B., W. Li, X. Wang, L. Shang, Q. Song, W. Guo, Y.G. Zhang*. Satellite-observed solar-induced chlorophyll fluorescence reveals higher sensitivity of alpine ecosystems to snow cover on the Tibetan Plateau. Agricultural and Forest Meteorology, 2019, 271:126-134. 92. Shan N., W. Ju, M. Migliavacca, D. Martini, L. Guanter, J.M. Chen, Y. Goulas, Y.G. Zhang*. Modeling canopy conductance and transpiration from solar-induced chlorophyll fluorescence. Agricultural and Forest Meteorology, 2019, 268, 189-201. 93. Cai, Y.P, K.Y. Guan, D. Lobell, A.B. Potgieter, S.W. Wang, J. Peng, T.F. Xu, S. Asseng, Y.G. Zhang, L.Z. You, B. Peng. Integrating satellite and climate data to predict wheat yield in Australia using machine learning approaches. Agricultural and Forest Meteorology, 2019. 274: 144-159. 2018 94. Wang S., Y.G. Zhang*, J. Hakkarainen, W. Ju, Y. Liu, F. Jiang, W. He. Distinguishing anthropogenic CO2 emissions from different energy intensive industrial sources using OCO-2 observations: a case study in Northern China. Journal of Geophysical Research: Atmospheres, 2018. 123(17): 9462-9473. 95. Zhang Z., Y.G. Zhang*, J. Joiner, M. Migliavacca. Angle matters: bidirectional effects impact the slope of relationship between gross primary productivity and sun-induced chlorophyll fluorescence from Orbiting Carbon Observatory-2 across biomes. Global Change Biology, 2018. 24(11): 5017-5020. 96. Song L., L. Guanter, K. Guan, L. You, A. Huete, W. Ju, Y.G. Zhang*. Satellite sun-induced chlorophyll fluorescence detects early response of winter wheat to heat stress in the Indian Indo-Gangetic. 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Seyfried, P.J. Starks. Ecosystem resilience despite large-scale altered hydroclimatic conditions. Nature, 2013. 494(7437): 349-352. 2012年 116. Zhang Y.G. *, M. Hernandez, E. Anson, M.A. Nearing, H. Wei, J.J. Stone, and P. Heilman. Modeling climate change effects on runoff and soil erosion in southeastern Arizona rangelands and implications for mitigation with conservation practices. Journal of Soil & Water Conservation, 2012. 67(5): 430-430. Wei, H.Y., P. Heilman, J.G. Qi, M.A. Nearing, Z.H. Gu, Y.G. Zhang. Assessing phenological change in China from 1982 to 2006 using AVHRR imagery. Frontiers of Earth Science, 2012. 6(3): 227-236.
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会议报告/展板 | |
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社会兼职
学术机构任职: 学术兼职
编委 Remote Sensing
副主编 International Soil and Water Conservation
责任编辑(Guest editor) Remote Sensing of Environment
责任编辑(Guest editor) Remote Sensing
期刊审稿人:Agricultural and Forest Meteorology、Remote Sensing of Environment、Biogeosciences、Remote Sensing、Hydrology Processes、Earth Surface Processes and Landforms、Transaction of the ASABE、Canadian Journal of Soil Science、Soil Science Society of American Journal、Journal of Soil and Water Conservation、Journal of Environmental Quality、Catena
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荣誉与奖励
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合作研究实验室 1. 德国地学研究中心Luis Guanter教授实验室 2. 北京师范大学地理与遥感科学院, 刘宝元教授实验室 3. 美国农业部西南流域研究中心, Dr. Mark Nearing和Dr . Susan Moran 4. 悉尼科技大学植物功能生物学和气候变化研究所, Alfredo Huete教授实验室 5. 美国农业部大平原农业气候和自然资源实验室, Dr. Xunchang Zhang 6. 美国宇航局高达德太空飞行中心,Dr. Joanna Joiner研究组 7. 美国Carnegie Institution of Washington全球生态研究所,Dr. Joe A. Berry研究组 8. 荷兰特文特大学地理信息科学与地球观测学院(ITC)Christiaan van der Tol教授研究组 |
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