This shows you the differences between two versions of the page.
| Both sides previous revision Previous revision Next revision | Previous revision | ||
|
publications:publications [2026/06/12 12:45] molmo |
publications:publications [2026/06/22 08:13] (current) carumi |
||
|---|---|---|---|
| Line 11: | Line 11: | ||
| ====2026==== | ====2026==== | ||
| - Pickard, S., F. Gignac, A.T. Amorim-Maia and D. Bojovic (2026). Operationalising heat vulnerability mapping: analysing nine approaches in Barcelona. [[https:// | - Pickard, S., F. Gignac, A.T. Amorim-Maia and D. Bojovic (2026). Operationalising heat vulnerability mapping: analysing nine approaches in Barcelona. [[https:// | ||
| + | - | ||
| - {{ : | - {{ : | ||
| - Balan Sarojini, B., M.A. Abid, P. Cose, C. Delgado-Torres, | - Balan Sarojini, B., M.A. Abid, P. Cose, C. Delgado-Torres, | ||
| Line 51: | Line 52: | ||
| - Li, L., N.M. Mahowald, X. Liu, M. Gonçalves Ageitos, Z. Ke, D.M. Leung, C. Pérez García-Pando, | - Li, L., N.M. Mahowald, X. Liu, M. Gonçalves Ageitos, Z. Ke, D.M. Leung, C. Pérez García-Pando, | ||
| - Li, L., N.M. Mahowald, R.L. Miller, C. Pérez García-Pando, | - Li, L., N.M. Mahowald, R.L. Miller, C. Pérez García-Pando, | ||
| + | - Liu, X., P. Ginoux, C. Pérez García-Pando, | ||
| - Lyu, H., X. Zhang, J.Su, D. Wårlind, J. Knauer, L. Teckentrup, J. Chang, X. Xu, C. Chen, J. Zhu, J. Ni, S. Sitch, Y. Fu, B. Medlyn, B. Smith, Y. Yang and M. Jian (2026). Warming overwhelms CO2-driven drought mitigation in alpine vegetation on the Qinghai-Tibetan Plateau. [[https:// | - Lyu, H., X. Zhang, J.Su, D. Wårlind, J. Knauer, L. Teckentrup, J. Chang, X. Xu, C. Chen, J. Zhu, J. Ni, S. Sitch, Y. Fu, B. Medlyn, B. Smith, Y. Yang and M. Jian (2026). Warming overwhelms CO2-driven drought mitigation in alpine vegetation on the Qinghai-Tibetan Plateau. [[https:// | ||
| - Maraun, D., D. Bojovic, W. Parker, T.G. Shepherd, S. Sobolowski, C. Caminade, A. Dosio, W.J. Gutowski, A. Sörensson, L.B. Diaz, I. Diouf, F.J. Doblas-Reyes, | - Maraun, D., D. Bojovic, W. Parker, T.G. Shepherd, S. Sobolowski, C. Caminade, A. Dosio, W.J. Gutowski, A. Sörensson, L.B. Diaz, I. Diouf, F.J. Doblas-Reyes, | ||
| Line 58: | Line 60: | ||
| - Moreno-Montes, | - Moreno-Montes, | ||
| - {{: | - {{: | ||
| + | - Navarro-Buigues, | ||
| + | - Oliveira, K., M. Guevara, J. Kuenen, O. Jorba, C. Pérez García-Pando and H. Denier van der Gon (2026). A Comprehensive NMVOC Speciation Database for European Atmospheric Modelling. [[https:// | ||
| - Olmo, M.E., P. Cos, D. Campos, Á. Muñoz, M. Samso, A. Soret and F.J. Doblas-Reyes (2026). Robustness of Euro-Mediterranean synoptic circulation types and sensitivity to member selection in CMIP6 models. [[https:// | - Olmo, M.E., P. Cos, D. Campos, Á. Muñoz, M. Samso, A. Soret and F.J. Doblas-Reyes (2026). Robustness of Euro-Mediterranean synoptic circulation types and sensitivity to member selection in CMIP6 models. [[https:// | ||
| - Ospina, D., ... M. Kotz., et al. Ten new insights in climate science 2025 (2026). [[https:// | - Ospina, D., ... M. Kotz., et al. Ten new insights in climate science 2025 (2026). [[https:// | ||
| - Palma, L., A. Peraza, D. Civantos-Prieto, | - Palma, L., A. Peraza, D. Civantos-Prieto, | ||
| - | - Pickard, S., Baulenas Serra, E., Ellena, M. et al. (2026). Advancing climate adaptation through citizen engagement: knowledge development, | + | - Pickard, S., E. Baulenas Serra, M. Ellena, R- Witton, E. Bruley, S. Bharwani, M. Mattera and A Scolobig |
| - Prior, T., A.S. Chahine, C.Y. Liang, I. Mettiäinen, | - Prior, T., A.S. Chahine, C.Y. Liang, I. Mettiäinen, | ||
| - Riipinen, I., S. Talvinen, A. Chassaing, P. Georgakaki, X. Li, C. Pérez García-Pando, | - Riipinen, I., S. Talvinen, A. Chassaing, P. Georgakaki, X. Li, C. Pérez García-Pando, | ||
| + | - Rosa, M.; J.M. Armengol, A. Julian-Izquierdo, | ||
| - Saurral, R., D. Campos, K. Grayson, V. Lapin, P. Trascasa-Castro, | - Saurral, R., D. Campos, K. Grayson, V. Lapin, P. Trascasa-Castro, | ||
| - Satpathy, S.S., Franzke, C.L.E., Verjans, V. and O'Kane T. (2026). Anthropogenic climate change leads to a pronounced reorganisation of wintertime North Atlantic atmospheric circulation regimes. [[https:// | - Satpathy, S.S., Franzke, C.L.E., Verjans, V. and O'Kane T. (2026). Anthropogenic climate change leads to a pronounced reorganisation of wintertime North Atlantic atmospheric circulation regimes. [[https:// | ||
| Line 70: | Line 75: | ||
| - Vergara-Palacio, | - Vergara-Palacio, | ||
| - Verjans, V., Donat, M.G., Delgado-Torres, | - Verjans, V., Donat, M.G., Delgado-Torres, | ||
| + | - Jost F., A. Verones, N. Nachtigall, M. Ellena, L. Moreno, J. Bielsa, M. Englund, K. André, Å.G. Swartling, R. Witton, S. Bharwani, E. Baulenas, S. Pickard, A. Reder and P. Mercogliano (2026). Co-designing soft climate adaptation: citizen centred solutions across four European pilots. [[https:// | ||
| - Yáñez-Serrano, | - Yáñez-Serrano, | ||
| - Zong, Z., M. Xia, C. Lin, X. Chen, L. Xue, Q. Li, Y. Jiang, C. Tian, X. Fan, Q. Yuan, X. Wang, Y. Zhu, J. Zhang, S. Lee, Y. Mu, J. Li, X. Fu, C. Ren, X. Huang, C. Yan, W. Nie, A. Badia, G. Zhang, A. Ding, R.-J. Huang, M. Kulmala, A. Saiz-Lopez, T. Wang and W. Wang (2026). Isotopic constraints on the origin of reactive chlorine in the troposphere. [[https:// | - Zong, Z., M. Xia, C. Lin, X. Chen, L. Xue, Q. Li, Y. Jiang, C. Tian, X. Fan, Q. Yuan, X. Wang, Y. Zhu, J. Zhang, S. Lee, Y. Mu, J. Li, X. Fu, C. Ren, X. Huang, C. Yan, W. Nie, A. Badia, G. Zhang, A. Ding, R.-J. Huang, M. Kulmala, A. Saiz-Lopez, T. Wang and W. Wang (2026). Isotopic constraints on the origin of reactive chlorine in the troposphere. [[https:// | ||
| - {{ : | - {{ : | ||
| - Ana C. Franco, Debby Ianson, Raffaele Bernardello, | - Ana C. Franco, Debby Ianson, Raffaele Bernardello, | ||
| + | |||
| ====2025==== | ====2025==== | ||
| - Aalto, T., A. Tsuruta, J. Mäkelä, J. Müller, M. Tenkanen, E. Burke, S. Chadburn, Y. Gao, V. Mannisenaho, | - Aalto, T., A. Tsuruta, J. Mäkelä, J. Müller, M. Tenkanen, E. Burke, S. Chadburn, Y. Gao, V. Mannisenaho, | ||