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連旭

職稱:研究員

研究方向:全球變化與陸地水循環(huán)

通訊地址:北京大學城市與環(huán)境學院樓247

Email:xulian@pku.edu.cn

個人簡歷 人才培養(yǎng) 科學研究 教研成果

個人簡歷

連旭,北京大學城市與環(huán)境學院助理教授,研究員,博士生導師。2016年本科畢業(yè)于武漢大學資源與環(huán)境科學學院,2021年博士畢業(yè)于北京大學城市與環(huán)境學院,2021-2024年在哥倫比亞大學地球與環(huán)境工程系從事博士后研究。主要關注陸-氣耦合過程,植被動態(tài)與氣候變化,生態(tài)水文等方向。以第一或通訊作者身份在Nature Reviews Earth & Environment、Nature Climate Change、Nature Geoscience、Nature Ecology & Evolution、Nature Communications、Science Advances等高水平期刊發(fā)表論文。多篇文章被IPCC第六次評估報告引用,同時入選ESI 1%高被引論文。個人入選科睿唯安發(fā)布的2024年度“全球高被引科學家” 榜單,以及斯坦福大學發(fā)布的2024年度“全球前2%頂尖科學家”榜單。

教育經歷

2012.09 – 2016.07 武漢大學,資源與環(huán)境科學學院,地理信息系統(tǒng)(地圖制圖與空間信息工程),學士

2016.09 – 2021.07 北京大學,城市與環(huán)境學院,自然地理學,博士

工作經歷

2021.11 – 2024.11 美國哥倫比亞大學地球與環(huán)境工程系,博士后

2025.01 –  北京大學城市與環(huán)境學院,預聘制助理教授、研究員



課題組長期招收博士后、博士生、碩士生等;

期待自然地理學、地球科學、大氣科學、水文學、地理信息科學或其他相關專業(yè)背景同學加入課題組;

熱烈歡迎本科生加入,開展拔尖計劃等項目。

研究方向

全球變化與陸地水循環(huán)


目前研究興趣包括

陸地水資源變化診斷與歸因

水循環(huán)關鍵組分定量觀測、拆解和模擬

干旱區(qū)擴張機制和風險評估

極端天氣時空耦合和動態(tài)演化

陸-氣耦合過程

氣候極端與生態(tài)系統(tǒng)響應

植被變化對氣候的生物物理反饋效應

植被變化對陸表水資源的影響


第一或通訊作者論文:

13. Lian, X., Morfopoulos, C. & Gentine, P. Water deficit and storm disturbances co-regulate Amazon rainforest seasonality. Science Advances (2024).

12. Lian, X.*, Chen, A., Piao, S., Pe?uelas, J., Keenan, T. F., Zhang, Y., Yu, K., Fang, J., Ryu, Y. & Gentine, P. Diminishing carryover benefits of earlier spring vegetation growth. Nature Ecology & Evolution (2024).

11. Kan, F., Lian, X.*, Cui, J., Chen, A., Mao, J., He, M., Xu, H. & Piao, S. Discrepant trends in global land-surface and air temperatures controlled by vegetation biophysical feedbacks. Environmental Research Letters 18, 124013 (2023).

10. Lian, X.*, Zhao, W. & Gentine, P. Recent global decline in rainfall interception loss due to altered rainfall regimes. Nature Communications 13, 7642 (2022).

9. Cui, J., Lian, X.*, Huntingford, C., Gimeno, L.,Wang, T., Ding, J., He, M., Xu, H., Chen, A., Gentine, P. & Piao, S. Global water availability boosted by vegetation-driven changes in atmospheric moisture transport. Nature Geoscience 15, 982–988 (2022).

8. Zhan, W., Lian, X.*, Liu, J. & Gentine, P. Inappropriateness of space- or variability-for-time approaches to infer future dryland ecosystem productivity changes. Frontiers in Environmental Science 10 (2022).

7. Lian, X., Jeong, S.*, Park, C.-E., Xu, H., Li, L. Z. X., Wang, T., Gentine, P., Pe?uelas, J. & Piao, S.* Biophysical impacts of northern vegetation changes on seasonal warming patterns. Nature Communications 13, 3925 (2022).

6. He, M., Lian, X.*, Cui, J., Xu, H. & Piao, S.* Vegetation physiological response to increasing atmospheric CO2 slows the decreases in the seasonal amplitude of temperature. Geophysical Research Letters 49, e2022GL097829 (2022).

5. Lian, X., Piao, S.*, Chen, A., Huntingford, C., Fu, B., Li, L. Z. X., Huang, J., Sheffield, J., Berg, A., Keenan, T. F., McVicar, T. R., Wada, Y., Wang, X., Wang, T., Yang, Y., Roderick. L. M. Multifaceted characteristics of dryland aridity changes in a warming world. Nature Reviews Earth & Environment 2, 232–250 (2021).

4. Lian, X., Piao, S.*, Chen, A., Wang, K., Li, X., Buermann, W., Huntingford, C., Pe?uelas, J., Xu, H. & Myneni, R. Seasonal biological carryover dominates northern vegetation growth. Nature Communications 12, 983 (2021).

3. Lian, X., Piao, S.*, Li, L. Z. X., Li, Y., Huntingford, C., Ciais, P., Cescatti, A., Janssens, I. A., Pe?uelas, J., Buermann, W., Chen, A., Li, X., Myneni, R. B., Wang, X., Wang, Y., Yang, Y., Zeng, Z., Zhang, Y. & McVicar, T. R. Summer soil drying exacerbated by earlier spring greening of northern vegetation. Science Advances 6, eaax0255 (2020).

2. Lian, X., Piao, S.*, Huntingford, C., Li, Y., Zeng, Z., Wang, X., Ciais, P., McVicar, T. R., Peng, S., Ottlé, C., Yang, H., Yang, Y., Zhang, Y. & Wang, T. Partitioning global land evapotranspiration using CMIP5 models constrained by observations. Nature Climate Change 8, 640–646 (2018).

1.  Lian, X., Zeng, Z., Yao, Y., Peng, S., Wang, K. & Piao, S.* Spatiotemporal variations in the difference between satellite-observed daily maximum land surface temperature and station-based daily maximum near-surface air temperature. Journal of Geophysical Research: Atmospheres 122, 2254–2268 (2017).


部分合作論文:

30. Cui, J., He, M., Lian, X., Wei, Z. & Wang, T. Spatial pattern of plant transpiration over China constrained by observations. Geophysical Research Letters 50, e2023GL105489 (2023).

29. Zhang, Y., Zhang, Y.*, Lian, X., Zheng, Z., Zhao, G., Zhang, T., Xu, M., Huang, K., Chen, N., Li, J. & Piao, S. Enhanced dominance of soil moisture stress on vegetation growth in Eurasian drylands. National Science Review 10, nwad108 (2023).

28. Tang, S., Vlug, A., Piao, S.*, Li, F., Wang, T., Krinner, G., Li, L. Z. X., Wang, X., Wu, G., Li, Y., Zhang, Y., Lian, X. & Yao, T. Regional and tele-connected impacts of the Tibetan Plateau surface darkening. Nature Communications 14, 32 (2023).

27. Zhang, Y.*, Gentine, P., Luo, X., Lian, X., Liu, Y., Zhou, S., Michalak, A. M., Sun, W., Fisher, J. B., Piao, S. & Keenan, T. F. Increasing sensitivity of dryland vegetation greenness to precipitation due to rising atmospheric CO2. Nature Communications 13, 4875 (2022).

26. He, M., Chen, S.*, Lian, X., Wang, X., Pe?uelas, J. & Piao, S.* Global spectrum of vegetation light-use efficiency. Geophysical Research Letters 49, e2022GL099550 (2022).

25. Xu, H., Lian, X., Slette, I. J., Yang, H., Zhang, Y., Chen, A. & Piao, S.* Rising ecosystem water demand exacerbates the lengthening of tropical dry seasons. Nature Communications 13, 4093 (2022).

24. Zhang, Y., Piao, S.*, Sun, Y., Rogers, B. M., Li, X., Lian, X., Liu, Z., Chen, A. & Pe?uelas, J. Future reversal of warming-enhanced vegetation productivity in the Northern Hemisphere. Nature Climate Change 12, 581–586 (2022).

23. Cui, J., Yang, H.*, Huntingford, C., Kooperman, G. J., Lian, X., He, M. & Piao, S.* Vegetation response to rising CO2 amplifies contrasts in water resources between global wet and dry land areas. Geophysical Research Letters 48, e2021GL094293 (2021).

22. Li, X., Piao, S.*, Wang, K., Wang, X., Wang, T., Ciais, P., Chen, A., Lian, X., Peng, S. & Pe?uelas, J. Reply to: Disentangling biology from mathematical necessity in twentieth-century gymnosperm resilience trends. Nature Ecology & Evolution 5, 733–735 (2021).

21. Zeng, Z.*, Wang, D., Yang, L., Wu, J., Ziegler, A. D., Liu, M., Ciais, P., Searchinger, T. D., Yang, Z.-L., Chen, D., Chen, A., Li, L. Z. X., Piao, S., Taylor, D., Cai, X., Pan, M., Peng, L., Lin, P., Gower, D., Feng, Y., Zheng, C., Guan, K., Lian, X. et al. Deforestation-induced warming over tropical mountain regions regulated by elevation. Nature Geoscience 14, 23–29 (2020).

20. Cui, J., Piao, S.*, Huntingford, C., Wang, X., Lian, X., Chevuturi, A., Turner, A. G. & Kooperman, G. J. Vegetation forcing modulates global land monsoon and water resources in a CO2-enriched climate. Nature Communications 11, 5184 (2020).

19. Li, X., Piao, S.*, Wang, K., Wang, X., Wang, T., Ciais, P., Chen, A., Lian, X., Peng, S. & Pe?uelas, J. Temporal trade-off between gymnosperm resistance and resilience increases forest sensitivity to extreme drought. Nature Ecology & Evolution 4, 1075–1083 (2020).

18. Piao, S.*, Wang, X., Park, T., Chen, C., Lian, X., He, Y., Bjerke, J. W., Chen, A., Ciais, P., T?mmervik, H., Nemani, R. R. & Myneni, R. B. Characteristics, drivers and feedbacks of global greening. Nature Reviews Earth & Environment 1, 14–27 (2020).

17. Piao, S.*, Zhang, X., Chen, A., Liu, Q., Lian, X., Wang, X., Peng, S. & Wu, X. The impacts of climate extremes on the terrestrial carbon cycle: A review. Science China Earth Sciences 62, 1551-1563 (2019).

16. Piao, S.*, Liu, Q., Chen, A., Janssens, I. A., Fu, Y., Dai, J., Liu, L., Lian, X., Shen, M. & Zhu, X. Plant phenology and global climate change: Current progresses and challenges. Global Change Biology 25, 1922–1940 (2019).

15. Wang, T.*, Liu, D., Piao, S., Wang, Y., Wang, X., Guo, H., Lian, X., Burkhart, J. F., Ciais, P., Huang, M., Janssens, I., Li, Y., Liu, Y., Pe?uelas, J., Peng, S., Yang, H., Yao, Y., Yin, Y. & Zhao, Y. Emerging negative impact of warming on summer carbon uptake in northern ecosystems. Nature Communications 9, 5391 (2018).

14. Li, Y., Zeng, Z.*, Huang, L., Lian, X. & Piao, S. Comment on "Satellites reveal contrasting responses of regional climate to the widespread greening of Earth". Science 360 (2018).

13. Li, Y., Piao, S.*, Li, L. Z. X., Chen, A., Wang, X., Ciais, P., Huang, L., Lian, X., Peng, S., Zeng, Z., Wang, K. & Zhou, L. Divergent hydrological response to large-scale afforestation and vegetation greening in China. Science Advances 4, eaar4182 (2018).

12. Li, X., He, Y., Zeng, Z., Lian, X., Wang, X., Du, M., Jia, G., Li, Y., Ma, Y., Tang, Y., Wang, W., Wu, Z., Yan, J., Yao, Y., Ciais, P., Zhang, X., Zhang, Y., Zhang, Y., Zhou, G. & Piao, S.* Spatiotemporal pattern of terrestrial evapotranspiration in China during the past thirty years. Agricultural and Forest Meteorology 259, 131–140 (2018).

11. Liu, Q., Piao, S.*, Janssens, I. A., Fu, Y., Peng, S., Lian, X., Ciais, P., Myneni, R. B., Penuelas, J. & Wang, T. Extension of the growing season increases vegetation exposure to frost. Nature Communications 9, 426 (2018).

10. Zeng, Z., Piao, S.*, Li, L. Z. X., Wang, T., Ciais, P., Lian, X., Yang, Y., Mao, J., Shi, X. & Myneni, R. B. Impact of Earth Greening on the Terrestrial Water Cycle. Journal of Climate 31, 2633–2650 (2018).

9. Yang, H., Zhou, F., Piao, S.* L., Huang, M. T., Chen, A. P., Ciais, P., Li, Y., Lian, X., Peng, S. S. & Zeng, Z. Z. Regional patterns of future runoff changes from Earth system models constrained by observation. Geophysical Research Letters 44, 5540–5549 (2017).

8. Zeng, Z., Piao, S.*, Li, L. Z. X., Zhou, L., Ciais, P., Wang, T., Li, Y., Lian, X., Wood, E. F., Friedlingstein, P., Mao, J., Estes, L. D., Myneni, Ranga B., Peng, S., Shi, X., Seneviratne, S. I. & Wang, Y. Climate mitigation from vegetation biophysical feedbacks during the past three decades. Nature Climate Change 7, 432–436 (2017).

7. Liu, Y., Piao, S.*, Lian, X., Ciais, P. & Smith, W. K. Seasonal responses of terrestrial carbon cycle to climate variations in CMIP5 models: Evaluation and projection. Journal of Climate 30, 6481–6503 (2017).

6. Zhu, Z., Piao, S.*, Lian, X., Myneni, R. B., Peng, S. & Yang, H. Attribution of seasonal leaf area index trends in the northern latitudes with "optimally" integrated ecosystem models. Global Change Biology 23, 4798–4813 (2017).

5. Zhao, C., Piao, S.*, Wang, X., Huang, Y., Ciais, P., Elliott, J., Huang, M., Janssens, I. A., Li, T., Lian, X., Liu, Y., Muller, C., Peng, S., Wang, T., Zeng, Z. & Penuelas, J. Plausible rice yield losses under future climate warming. Nature Plants 3, 16202 (2016).

4. Zeng, Z., Zhu, Z., Lian, X., Li, L. Z. X., Chen, A., He, X. & Piao, S.* Responses of land evapotranspiration to Earth’s greening in CMIP5 Earth System Models. Environmental Research Letters 11, 104006 (2016).

3. Mao, J., Ribes, A., Yan, B., Shi, X., Thornton, P. E., Séférian, R., Ciais, P., Myneni, R. B., Douville, H., Piao, S.*, Zhu, Z., Dickinson, R. E., Dai, Y., Ricciuto, D. M., Jin, M., Hoffman, F. M., Wang, B., Huang, M. & Lian, X. Human-induced greening of the northern extratropical land surface. Nature Climate Change 6, 959–963 (2016).

2. Li, Y., Wang, T., Zeng, Z. Z., Peng, S. S., Lian, X. & Piao, S.* L. Evaluating biases in simulated land surface albedo from CMIP5 global climate models. Journal of Geophysical Research: Atmospheres 121, 6178-6190 (2016).

1. Zhu, Z., Piao, S.*, Myneni, R. B., Huang, M., Zeng, Z., Canadell, J. G., Ciais, P., Sitch, S., Friedlingstein, P., Arneth, A., Cao, C., Cheng, L., Kato, E., Koven, C., Li, Y., Lian, X., Liu, Y., Liu, R., Mao, J., Pan, Y. et al. Greening of the Earth and its drivers. Nature Climate Change 6, 791–795 (2016).

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