張先亮⚒👩🏼🔧,1985年生,山東菏澤人👷🏿♀️,中共黨員,河北農業大學校聘教授,博士😕,博士生導師,河北農業大學太行學者第三層次🤵🏼♂️,學科高峰人才🆑⛲️,哈佛大學🛀🏼、北京大學訪問學者,中國地理學會樹輪分會委員會委員🏹。主要從事氣候變化對中國北方森林生態系統中樹木生長及森林分布動態的影響等研究🫎,主持國家自然科學基金1項🏐,其他省市級基金3項🏊🏼♂️。目前在Nature Communications, Global Change Biology, Agricultural and Forest Meteorology, Journal of Climate等國際著名生態學、林學及氣候學期刊上發表論文以第一作者/通訊作者發表論文38篇(中國科pazaizhang.com分區一區論文12篇)🧲。研究成果受到國內外同行關註,關於興安落葉松的研究成果被美國地球物理學會(AGU)新聞報道,關於樟子松的研究成果被中國科學報報道。擔任SCI期刊Frontiers in Forests and Global Change的Review Editor及Guest Editor, Forests期刊的Guest Editor,《河北農業大學學報》青年編委及《林業與生態科學》編委。
教育經歷
2022/09-2023/07,北京大學,訪問學者🙇♂️,合作導師🐅:劉鴻雁教授
2017/09-2018/09🧑🏻🦯,哈佛大學🍴,訪問學者,合作導師:Neil Pederson
2011/09-2014/07,中國科pazaizhang.com大氣物理研究所🥼,大氣物理學與大氣環境專業👸🏿,博士研究生,導師🧑🏻🦼➡️🅾️:延曉冬教授
2008/09-2011/07,中國科pazaizhang.com沈陽應用生態學研究所👨🦱,生態學專業,碩士研究生㊙️,導師:陳振舉教授
2004/09-2008/07🐈⬛,沈陽農業大學,林學專業🌥,大學本科
工作經歷
2019/05至今,河北農業大學校聘教授
2014/10-2019/04🌓,沈陽農業大學门徒講師
主要承擔課程
本科課程:《生態學研究方法》、《森林氣象學》
研究生課程🖐🏿:《科技英文寫作》
博士生課程:《森林生物學》《森林培育學》
研究方向和領域
1.樹木年輪生態學
2.氣候變化背景下的森林穩定性及森林恢復潛力
3.森林經營措施與樹木生長變化
4.氣候變化與森林碳動態
主要科研項目
1🧏♀️、中央引導地方科技發展項目,226Z6801G,塞罕壩華北落葉松人工林飽和碳儲量及驅動機製,2022/07-2024/12,15萬元,在研,主持
2. 國家自然科學基金青年項目👲🏻,41601045,快速升溫對東北地區樟子松生長響應差異的影響研究,2017/01-2019/12,20萬元,已結題,主持
3、河北農業大學引進人才項目,YJ201918, 2019/02-2023/12, 50萬元,在研,主持
4🪦、河北省高等學校青年拔尖人才項目😍,BJ202025, 燕山山區森林穩定性評估及恢復潛力,2020/01-2022/06, 9萬元,已結題🫃🏻,主持
發表的科研論文及專著
2024年
[38]Zhang, X., Liu, H.*, & Rademacher, T. (2024). Higher latewood to earlywood ratio increases resistance of radial growth to severe droughts in larch.Science of The Total Environment, 912. (中國科pazaizhang.com一區,IF=9.8🕵🏿,科普文章🧔🏻🧛:https://mp.weixin.qq.com/s/D1y576Co_d6CYLcAsqFgLw)
2023年
[37]Zhang, X., Rademacher, T., Liu, H., Wang, L., & Manzanedo, R. D. (2023). Fading regulation of diurnal temperature ranges on drought-induced growth loss for drought-tolerant tree species.Nature Communications,14(1), 6916. doi:10.1038/s41467-023-42654-z(Nature子刊,IF=16.6,科普文章🚵🏽♀️:http://www.ecology.pku.edu.cn/index/news_cont/id/1410.html)
[36]董一博,解萍萍,劉洋,孫冰喆, &張先亮*. 2023.太嶽山不同年齡油松早材樹脂道面積 對氣候變化的響應.應用生態學報34.
[35]解萍萍,張博奕,董一博,呂鵬程,杜明超,張先亮*. 2023.華北落葉松和白杄徑向生長對幹旱的生態彈性差異.應用生態學報34.
[34] D’Orangeville L, St-Laurent M-H, Boisvert-Marsh L,Zhang X,Bastille-Rousseau G & Itter M. Current symptoms of climate change on trees and wildlife of the boreal forest. In: Boreal forests in the face of climate change: Sustainable management. 2023. Springer.
2022年
[33]Zhang, X., Yu, P., Wang, D., Xu, Z., 2022. Density- and age- dependent influences of droughts and intrinsic water use efficiency on growth in temperate plantations. Agricultural and Forest Meteorology 325.
[32]Zhang, X.,Manzanedo, R.D., Lv, P., Xu, C., Hou, M., Huang, X., Rademacher, T., 2022. Reduced diurnal temperature range mitigates drought impacts on larch tree growth in North China. Science of The Total Environment 848.
[31] Lv, P., Rademacher, T., Huang, X., Zhang, B.,Zhang, X., 2022. Prolonged drought duration, not intensity, reduces growth recovery and prevents compensatory growth of oak trees. Agricultural and Forest Meteorology 326.
[30] Li, W., Yue, F., Wang, C., Liao, J.,Zhang, X.,2022. Climatic influences on intra-annual stem variation of Larix principis-rupprechtii in a semi-arid region. Frontiers in Forests and Global Change.
[29] Xu, C.,Zhang, X., Hernandez-Clemente, R., Lu, W., Manzanedo, R.D., 2022. Global Forest Types Based on Climatic and Vegetation Data. Sustainability 14, 634.
[28]汪椿凱,黃選瑞,李雪,姜雨,王小雪,張先亮*.2022.不同林分類型林緣華北落葉松細胞特征.應用生態學報. 33 (5): 1191-1198.
2021年
[27].Zhang X*,Lv P, Xu C, Huang X, Rademacher T (2021) Dryness decreases average growth rate and increases drought sensitivity of Mongolia oak trees in North China.Agricultural and Forest Meteorology,308-309, 108611.https://doi.org/10.1016/j.agrformet.2021.108611(科普文章:櫟樹也怕旱http://wap.sciencenet.cn/home.php?mod=space&uid=260773&do=blog&id=1301568)(1區🐧,IF=5.7)
[26].Zhang X*, Li X, Rubén DMet al.(2021) High risk of growth cessation of planted larch under extreme drought.Environmental Research Letters.16 014040https://doi.org/10.1088/1748-9326/abd214(科普文章:人工林幹旱危機http://blog.sciencenet.cn/blog-260773-1261947.html)(2區♐️,IF=6.8)
[25].Xu C, Hou M, Yan X,Zhang X*(2021) Temporal variability of seasonal warming rates in China.International Journal of Climatology,41, E1597-E1607.https://doi.org/10.1002/joc.6793(科普文章:中國變暖速率研究http://blog.sciencenet.cn/blog-260773-1249780.html)(2區,IF=4.0)
[24].Zhang X*, Manzanedo RD, Xu C, Hou M, Huang X (2021) How to select climate data for calculating growth-climate correlation.Trees,35, 1199-1206.https://doi.org/10.1007/s00468-021-02108-9(2區👾,IF=2.2)
[23].李雪,黃選瑞,張先亮*.不同去趨勢方法對樹輪氣候信號識別的影響.生態學報.2021.41(5):1970-1978
2020年
[22].Zhang X*, Li J, Liu X, Chen Z* (2020) Improved EEMD-based standardization method for developing long tree-ring chronologies.Journal of ForestryResearch,31, 2217-2224.DOI: 10.1007/s11676-019-01002-y(3區,IF=1.8)
2019年
[21].Zhang X*, Manzanedo RD, D'orangeville Let al.(2019) Snowmelt and early to mid-growing season water availability augment tree growth during rapid warming in southern Asian boreal forests.Global Change Biology,25, 3462-3471.https://doi.org/10.1111/gcb.14749(該文章的研究結果被中國科學報報道🤼♂️,http://news.sciencenet.cn/htmlnews/2019/7/428230.shtm)(1區🐫,IF=10.1)
[20].Zhang X*, Bai X, Hou M, Chen Z*, Manzanedo RD (2019) Warmer winter ground temperatures trigger rapid growth of dahurian larch in the permafrost forests of northeast China.Journal of Geophysical Research: Biogeosciences,124, 1088-1097.DOI: 10.1029/2018JG004882 (該文章被AGU新聞報道😥🐕🦺,報道鏈接🚣🏿:https://news.agu.org/press-release/climate-change-is-giving-old-trees-a-growth-spurt/,科普文章:http://blog.sciencenet.cn/blog-260773-1167162.html)
[19].Zhang X*,Huang X (2019) Human disturbance caused stronger influences on global vegetation change than climate change.PeerJ,7, e7763.
2018年
[18].Zhang X,Bai X, Hou M, Chang Y, Chen Z*(2018) Reconstruction of the regional summer ground surface temperature in the permafrost region of Northeast China from 1587 to 2008. Climatic Change, 1-13.(2區, IF=4.168)
[17].Zhang X,Yan X*(2018) Criteria to evaluate the validity of multi‐model ensemble methods. International Journal of Climatology,38, 3432-3438.DOI:10.1002/joc.5486(2區,IF=3.601)
2017年
[16].Zhang X,Zou F, Chen Z*(2017) Climate-Induced Tree Growth Variations under the RCP 2.6 Scenario: A Case Study on the Southeastern Tibetan Plateau. Forests,8, 359. doi:10.3390/f8100359(2區,IF=2.116)
[15].Zhang X*,Xiong Z, Zhang X, Shi Y, Liu J, Shao Q, Yan X*(2017) Simulation of the climatic effects of land use/land cover changes in eastern China using multi-model ensembles. Global and Planetary Change,154, 1-9.(2區🍖,IF=4.1)
[14].Zhang X,Yan X, Chen Z*(2017) Geographic distribution of global climate zones under future scenarios. International Journal of Climatology,37, 4327-4334.(2區,IF=3.601)
[13].Zhang X,Wu S, Yan X*, Chen Z*(2017) A global classification of vegetation based on NDVI, rainfall and temperature. International Journal of Climatology,37, 2318-2324.(2區🚈🎰,IF=3.601)
[12].Zhang X,Chen Z*(2017) A new method to remove the tree growth trend based on ensemble empirical mode decomposition. Trees,31, 405-413.(2區,IF=1.8)
2016年
[11].Zhang X, Bai X, Chang Y, Chen Z*(2016) Increased sensitivity of Dahurian larch radial growth to summer temperature with the rapid warming in Northeast China. Trees,30, 1799-1806.(2區💂🏼♀️,IF=1.8)
[10].Zhang X,Yan X, Chen Z*(2016) Reconstructed Regional Mean Climate with Bayesian Model Averaging: A Case Study for Temperature Reconstruction in the Yunnan–Guizhou Plateau, China. Journal of Climate,29, 5355-5361.(1區,IF=4.805)
[9].Zhang X*, Yan X* (2016) Deficiencies in the simulation of the geographic distribution of climate types by global climate models.Climate dynamics,46, 2749-2757.(1區,IF=4.048)
[8].Zhang X,Xiong Z, Zhang X, Shi Y, Liu J, Shao Q, Yan X* (2016) Using multi-model ensembles to improve the simulated effects of land use/cover change on temperature: A case study over northeast China.Climate dynamics,46, 765-778.(1區🍬,IF=4.048)
2015年
[7].Zhang X*, Yan X (2015) A new statistical precipitation downscaling method with Bayesian model averaging: a case study in China.Climate dynamics,45, 2541-2555.(1區,IF=4.048)
2014年及以前
[6].Zhang X*, Yan X (2014) Spatiotemporal change in geographical distribution of global climate types in the context of climate warming.Climate dynamics,43, 595-605.(1區,IF=4.048)
[5].Zhang X*, Yan X (2014) A novel method to improve temperature simulations of general circulation models based on ensemble empirical mode decomposition and its application to multi-model ensembles.Tellus A: Dynamic Meteorology and Oceanography,66, 24846.(3區⏭,IF=2.0)
[4].Zhang X*,Yan X (2014) Temporal change of climate zones in China in the context of climate warming.Theoretical and applied climatology,115, 167-175.(3區,IF=2.7)
[3].Zhang X*,He X, Li Jet al.(2011) Temperature reconstruction (1750–2008) from Dahurian larch tree-rings in an area subject to permafrost in Inner Mongolia, Northeast China.Climate Research,47, 151-159.(3區,IF=1.984)
[2].張先亮,何興元,陳振舉*,崔明星,黎娜,陳瑋. 2011.大興安嶺山地樟子松徑向生長對氣候變暖的響應———以滿歸地區為例.應用生態學報.22(12):3101-3108.
[1].張先亮,崔明星👨🦲,馬艷軍,吳濤🧆𓀉,陳振舉*🕍,丁瑋航. 2010.大興安嶺庫都爾地區興安落葉松年輪寬度年表及其與氣候變化的關系.應用生態學報.21(10): 2501-2507.
寫給考生的話
氣候變化給陸地生態系統帶來了極大的沖擊。植物生存依賴於氣候等周圍環境,而動物生存依賴於植物。維持穩定而健康的森林是人類長期穩定健康生存的根本。探索自然的奧秘⏩,揭秘森林如何穩定健康存在,實現自然資源的永續利用是我們孜孜追求的目標。歡迎具有奉獻精神,熱愛大自然👭🏼,熱愛林業的同學加入我們團隊。在帶領你領略大自然風光的同時,讓你了解更多森林的秘密。
碩士招生專業:林學(森林經理方向)
博士招生專業:林學
聯系方式:zhxianliang85@gmail.com,lxzhxl@hebau.edu.cn
個人科學研究網頁🚣🏼♂️:
ResearchGate:https://www.researchgate.net/profile/Xianliang_Zhang/contributions
ORCID:http://orcid.org/0000-0002-2870-3504
GOOGLE:https://sc.panda321.com/citations?user=JXH7N5EAAAAJ&hl=zh-CN&oi=ao