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个人简介

教育经历 2015.10-2019.02,博士,巴黎萨克雷大学(Université Paris-Saclay),法国气候与环境科学实验室 2012.09-2015.07,硕士,北京大学 城市与环境学院 2008.09-2012.07,学士,北京林业大学 林学院 工作经历 2022.03-2023.02,博士后,法国国家科学研究中心(Centre national de la recherche scientifique,CNRS) 2020.03-2022.02,博士后,法国国家农业食品与环境研究院(l'Institut national de recherche pour l'agriculture, l'alimentation et l'environnement,INRAE) 2019.03-2020.02,博士后,法国气候与环境科学实验室(Le Laboratoire des Sciences du Climat et de l'Environnement,LSCE)

研究领域

主要研究兴趣和方向包括湿地、泥炭地生态系统碳循环过程对气候变化和人类干扰的响应及其反馈。主要通过开发和应用陆面过程模型,结合地面观测和调查资料,探讨气候和土地利用变化下泥炭地植被动态、CO2和CH4通量、土壤溶解性有机碳(DOC)的时空变异及其机制

近期论文

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Qiu, C., Ciais, P., Zhu, D., Guenet, B., Chang, J., Chaudhary, N., Kleinen, T., Li, X., Müller, J., Xi, Y., Zhang, W., Ballantyne, A., Brewer, S., Brovkin, V., Charman, D., Gustafson, A., Gallego-Sala, A., Gasser, T., Holden, J., Joos, F., Kwon, M., Lauerwald, R., Miller, P., Peng, S., Page, S., Smith, B., Stocker, B., Sannel, A., Salmon, E., Schurgers, G., Shurpali, N., Wårlind, D. & Westermann, S. (2022) A strong mitigation scenario maintains climate neutrality of northern peatlands. One Earth, 5, 86–97. https://doi.org/10.1016/j.oneear.2021.12.008 Qiu, C., Ciais, P., Zhu, D., Guenet, B., Peng, S., Petrescu, A.M.R., Lauerwald, R., Makowski, D., Gallego-Sala, A. V., Charman, D.J. & Brewer, S.C. (2021) Large historical carbon emissions from cultivated northern peatlands. Science Advances, 7, eabf1332. https://doi.org/10.1126/sciadv.abf1332 Chen, W., Ciais, P., Qiu, C., Ducharne, A., Zhu, D., Peng, S., Braconnot, P., & Huang, C. (2021) Wetlands of North Africa During the Mid-Holocene Were At Least Five Times the Area Today. Geophysical Research Letters, 48, e2021GL094194. https://doi.org/10.1029/2021GL094194 Qiu, C., Zhu, D., Ciais, P., Guenet, B. & Peng, S. (2020) The role of northern peatlands in the global carbon cycle for the 21st century. Global Ecology and Biogeography, 29, 956–973. https://doi.org/10.1111/geb.13081 Qiu, C., Zhu, D., Ciais, P., Guenet, B., Peng, S., Krinner, G., Tootchi, A., Ducharne, A. & Hastie, A. (2019) Modelling northern peatland area and carbon dynamics since the Holocene with the ORCHIDEE-PEAT land surface model (SVN r5488). Geoscientific Model Development, 12, 2961–2982. https://doi.org/10.5194/gmd-12-2961-2019 Qiu, C., Zhu, D., Ciais, P., Guenet, B., Krinner, G., Peng, S., Aurela, M., Bernhofer, C., Brümmer, C., Bret-Harte, S., Chu, H., Chen, J., Desai, A.R., Dušek, J., Euskirchen, E.S., Fortuniak, K., Flanagan, L.B., Friborg, T., Grygoruk, M., Gogo, S., Grünwald, T., Hansen, B.U., Holl, D., Humphreys, E., Hurkuck, M., Kiely, G., Klatt, J., Kutzbach, L., Largeron, C., Laggoun-Défarge, F., Lund, M., Lafleur, P.M., Li, X., Mammarella, I., Merbold, L., Nilsson, M.B., Olejnik, J., Ottosson-Löfvenius, M., Oechel, W., Parmentier, F.-J.W., Peichl, M., Pirk, N., Peltola, O., Pawlak, W., Rasse, D., Rinne, J., Shaver, G., Schmid, H.P., Sottocornola, M., Steinbrecher, R., Sachs, T., Urbaniak, M., Zona, D. & Ziemblinska, K. (2018) ORCHIDEE-PEAT (revision 4596), a model for northern peatland CO2, water, and energy fluxes on daily to annual scales. Geoscientific Model Development, 11, 497–519. https://doi.org/10.5194/gmd-11-497-2018

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