Now showing items 1-4 of 4

  • Qiu, Chunjing; Ciais, Philippe; Zhu, Dan; Guenet, Bertrand; Chang, Jinfeng; Chaudhary, Nitin; Kleinen, Thomas; Li, XinYu; Müller, Jurek; Xi, Yi; Zhang, Wenxin; Ballantyne, Ashley; Brewer, Simon C.; Brovkin, Victor; Charman, Dan J.; Gustafson, Adrian; Gallego-Sala, Angela V.; Gasser, Thomas; Holden, Joseph; Joos, Fortunat; Kwon, Min Jung; Lauerwald, Ronny; Miller, Paul A.; Peng, Shushi; Page, Susan; Smith, Benjamin; Stocker, Benjamin D.; Sannel, A. Britta K.; Salmon, Elodie; Schurgers, Guy; Shurpali, Narasinha J.; Wårlind, David; Westermann, Sebastian (Journal article / Tidsskriftartikkel / PublishedVersion; Peer reviewed, 2022)
    Northern peatlands store 300–600 Pg C, of which approximately half are underlain by permafrost. Climate warming and, in some regions, soil drying from enhanced evaporation are progressively threatening this large carbon ...
  • Chadburn, Sarah E.; Krinner, Gerhard; Porada, Philipp; Bartsch, Annett; Beer, Christian; Belelli Marchesini, Luca; Boike, Julia; Ekici, Altug; Elberling, Bo; Friborg, Thomas; Hugelius, Gustaf; Johansson, Margareta; Kuhry, Peter; Kutzbach, Lars; Langer, Moritz; Lund, Magnus; Parmentier, Frans-Jan Willem; Peng, Shushi; van Huissteden, Ko; Wang, Tao; Westermann, Sebastian; Zhu, Dan; Burke, Eleanor J. (Journal article / Tidsskriftartikkel / PublishedVersion; Peer reviewed, 2017)
    It is important that climate models can accurately simulate the terrestrial carbon cycle in the Arctic due to the large and potentially labile carbon stocks found in permafrost-affected environments, which can lead to a ...
  • Wang, Tao; Liu, Dan; Piao, Shilong; Wang, Yilong; Wang, Xiaoyi; Guo, Hui; Lian, Xu; Burkhart, John; Ciais, Philippe; Huang, Mengtian; Janssens, Ivan A.; Li, Yue; Liu, Yongwen; Peñuelas, Josep; Peng, Shushi; Yang, Hui; Yao, Yitong; Yin, Yi; Zhao, Yutong (Journal article / Tidsskriftartikkel / PublishedVersion; Peer reviewed, 2018)
    Most studies of the northern hemisphere carbon cycle based on atmospheric CO2 concentration have focused on spring and autumn, but the climate change impact on summer carbon cycle remains unclear. Here we used atmospheric ...
  • Qiu, Chunjing; Zhu, Dan; Ciais, Philippe; Guenet, Bertrand; Krinner, Gerhard; Peng, Shushi; Aurela, Mika; Bernhofer, Christian; Brümmer, Christian; Bret-Harte, Syndonia; Chu, Housen; Chen, Jiquan; Desai, Ankur R.; Dušek, Jiří; Euskirchen, Eugénie S.; Fortuniak, Krzysztof; Flanagan, Lawrence B.; Friborg, Thomas; Grygoruk, Mateusz; Gogo, Sébastien; Grünwald, Thomas; Hansen, Birger U.; Holl, David; Humphreys, Elyn; Hurkuck, Miriam; Kiely, Gerard; Klatt, Janina; Kutzbach, Lars; Largeron, Chloé; Laggoun-Défarge, Fatima; Lund, Magnus; Lafleur, Peter M.; Li, Xuefei; Mammarella, Ivan; Merbold, Lutz; Nilsson, Mats B.; Olejnik, Janusz; Ottosson-Löfvenius, Mikaell; Oechel, Walter C.; Parmentier, Frans-Jan W.; Peichl, Matthias; Pirk, Norbert; Peltola, Olli; Pawlak, Włodzimierz; Rasse, Daniel; Rinne, Janne; Shaver, Gaius R.; Schmid, Hans Peter; Sottocornola, Matteo; Steinbrecher, Rainer; Sachs, Torsten; Urbaniak, Marek; Zona, Donatella; Ziemblinska, Klaudia (Journal article / Tidsskriftartikkel / PublishedVersion; Peer reviewed, 2018)
    Peatlands store substantial amounts of carbon and are vulnerable to climate change. We present a modified version of the Organising Carbon and Hydrology In Dynamic Ecosystems (ORCHIDEE) land surface model for simulating ...