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   - {{ :publications:albarracin_air_pollution_modeling_and_its_application_xxx.pdf |Albarracin}}, A., M. Guevara, C. Tena, P. Camps, A. Ho, A. García, K. de Oliveira, P. Castesana, O. Jorba and C. Pérez García-Pando (2026). Intercomparison of the temporal distribution and speciation of official anthropogenic emissions in Spain. In [[https://doi.org/10.1007/978-3-032-02971-3_28|Mensink, C., Im, U. (eds) Air Pollution Modeling and Its Application XXX, ITM 2024 Springer Proceedings in Complexity. Springer, Cham.]]. (RESPIRE) [AC, CES]   - {{ :publications:albarracin_air_pollution_modeling_and_its_application_xxx.pdf |Albarracin}}, A., M. Guevara, C. Tena, P. Camps, A. Ho, A. García, K. de Oliveira, P. Castesana, O. Jorba and C. Pérez García-Pando (2026). Intercomparison of the temporal distribution and speciation of official anthropogenic emissions in Spain. In [[https://doi.org/10.1007/978-3-032-02971-3_28|Mensink, C., Im, U. (eds) Air Pollution Modeling and Its Application XXX, ITM 2024 Springer Proceedings in Complexity. Springer, Cham.]]. (RESPIRE) [AC, CES]
 +  - {{ :publications:araujo-et-al-2026-leveraging-probabilistic-forecasts-for-dengue-preparedness-and-control-the-2024-dengue-forecasting.pdf |Araujo, E.C.}}, L.M. Carvalho, F. Ganem, ..., C. Fletcher, R.M. Lana, R. Lowe, D. Lührsen, G. Moirano et al. (2026). Leveraging probabilistic forecasts for dengue preparedness and control: The 2024 Dengue Forecasting Sprint in Brazil. [[https://www.pnas.org/doi/10.1073/pnas.2508989123 | Proceedings of the National Academy of Sciences, 123 (7), e2508989123]]. (IDExtremes, Mosqlimate) [GHR]
   -  Balan Sarojini, B., M.A. Abid, P. Cose, C. Delgado-Torres, S. Dessai, F.J. Doblas-Reyes, M.G. Donat, F. Garry, D. Krieger, J.A. Lowe, C. McSweeney, D. Sexton, V. Torralba and A. Weisheimer (2026). Combining observations, forecasts, and projections into seamless climate information: Recent advances and insights in user applications. [[https://doi.org/10.1175/BAMS-D-26-0079.1|Bulletin of the American Meteorological Society, 107, E1267–E1276, doi:10.1175/BAMS-D-26-0079.1]]. //Open Access// (ASPECT) [CVC,ESS,GES]   -  Balan Sarojini, B., M.A. Abid, P. Cose, C. Delgado-Torres, S. Dessai, F.J. Doblas-Reyes, M.G. Donat, F. Garry, D. Krieger, J.A. Lowe, C. McSweeney, D. Sexton, V. Torralba and A. Weisheimer (2026). Combining observations, forecasts, and projections into seamless climate information: Recent advances and insights in user applications. [[https://doi.org/10.1175/BAMS-D-26-0079.1|Bulletin of the American Meteorological Society, 107, E1267–E1276, doi:10.1175/BAMS-D-26-0079.1]]. //Open Access// (ASPECT) [CVC,ESS,GES]
   - Baulenas, E., M. Veerman, E. Dolores-Tesillos, A. Lacima-Nadolnik, C. Delgado-Torres, K. Haslehner, A. Kumar, A. Soret and D. Bojovic (2026). Kilometre-scale Earth system models to support the renewable energy transition: a combination of storyline methodologies. [[https://doi.org/10.1016/j.erss.2025.104513|Energy Research & Social Science, 131, 104513, doi:10.1016/j.erss.2025.104513]]. //Open Access// (nextGEMS, BOREAS) [ESS]   - Baulenas, E., M. Veerman, E. Dolores-Tesillos, A. Lacima-Nadolnik, C. Delgado-Torres, K. Haslehner, A. Kumar, A. Soret and D. Bojovic (2026). Kilometre-scale Earth system models to support the renewable energy transition: a combination of storyline methodologies. [[https://doi.org/10.1016/j.erss.2025.104513|Energy Research & Social Science, 131, 104513, doi:10.1016/j.erss.2025.104513]]. //Open Access// (nextGEMS, BOREAS) [ESS]
 +  - Beltrami, G. M., J. C. Sandiumenge, R. G. dos Santos, & J. M. Armengol (2026). Assessment of deep-learning strategies for surrogate modeling of pollution dispersion in a thermal street canyon. [[https://doi.org/10.1016/j.compfluid.2026.107224|Computers & Fluids, p. 107224, doi:10.1016/j.compfluid.2026.107224]]. (UrbanAIR) [ESS] 
 +  - Bettolli, ML., T. Cavazos, MS. Reboita, R. Porfirio da Rocha, ML. da Silva, HG. Hidalgo, S. Solman, M. Olmo, R. Fuentes-Franco, JA. Torres-Alavez (2026). Advances in regional climate science in South America and Central America during the CORDEX Era [[https://doi.org/10.1371/journal.pclm.0001015|PLOS Climate 5(8): e0001015,https://doi.org/10.1371/journal.pclm.0001015]] //Open Access// (AI4S) [ESS]
   - Bruley, E., A. Scolobig, M. Ellena, S. Pickard, M. Englund, E. Baulenas, D. Erokhin, S. Bharwani, M. Mattera, M. Baldelli, L. Moreno, J. Bielsa, A. Verones, S.K. Allen, N. Komendantova, N. Nachtigall and M. Stoffel (2026).Advancing stakeholder engagement in climate adaptation: a systematic review of structural barriers and operational enablers. [[https://link.springer.com/article/10.1007/s11625-026-01843-7|Sustainability Science, doi:10.1007/s11625-026-01843-7]]. //Open Access// (AGORA) [ESS]   - Bruley, E., A. Scolobig, M. Ellena, S. Pickard, M. Englund, E. Baulenas, D. Erokhin, S. Bharwani, M. Mattera, M. Baldelli, L. Moreno, J. Bielsa, A. Verones, S.K. Allen, N. Komendantova, N. Nachtigall and M. Stoffel (2026).Advancing stakeholder engagement in climate adaptation: a systematic review of structural barriers and operational enablers. [[https://link.springer.com/article/10.1007/s11625-026-01843-7|Sustainability Science, doi:10.1007/s11625-026-01843-7]]. //Open Access// (AGORA) [ESS]
   - Calafell, J., J. Bustillo, J.M. Armengol, S. Gómez, F. Ramirez-Javega, O. Lehmkuhl (2026). Building a general and data-efficient convolutional neural network-based model for fast urban flow estimation. [[https://doi.org/10.1016/j.buildenv.2026.114488|Building and Environment, p. 114488, doi:10.1016/j.buildenv.2026.114488]]. [ESS]   - Calafell, J., J. Bustillo, J.M. Armengol, S. Gómez, F. Ramirez-Javega, O. Lehmkuhl (2026). Building a general and data-efficient convolutional neural network-based model for fast urban flow estimation. [[https://doi.org/10.1016/j.buildenv.2026.114488|Building and Environment, p. 114488, doi:10.1016/j.buildenv.2026.114488]]. [ESS]
 +  - Campos, D., K. Grayson, R. Saurral, S. Beyer, A. John, M. Olmo and F. Doblas-Reyes (2026). The October 2024 extreme precipitation event over Valencia: storyline attribution of the synoptic-scale thermodynamic drivers [[https://doi.org/10.5194/wcd-7-1153-2026|Weather and Climate Dynamics, 7, 1153–1171]]. //Open Access// [ESS]
 +  - Campos, D., D. Fereday and J. Vicencio (2026). Mean sea level pressure and related modes of variability [in “State of the Climate in 2025”] [[https://doi.org/10.1175/BAMS-D-26-0141.1|Bull. Amer. Meteor. Soc., 107 (8),S30–S30]]. //Open Access// [ESS]
   - {{ :publications:camps_air_pollution_modeling_and_its_application_xxx.pdf |Camps}}, P., M. Guevara, C. Tena, A. Albarracin, A. Ho, A. Aparicio, P. Castesana, A. García, M. Olid, O. Jorba and C. Pérez García-Pando  (2026). A Spatial Comparative Analysis Between Three Gridded Atmospheric Emission Inventories for Spain. [[https://doi.org/10.1007/978-3-032-02971-3_27|In Mensink, C., Im, U. (eds) Air Pollution Modeling and Its Application XXX, ITM 2024 Springer Proceedings in Complexity, Springer, Cham.]]. (RESPIRE) [AC, CES]   - {{ :publications:camps_air_pollution_modeling_and_its_application_xxx.pdf |Camps}}, P., M. Guevara, C. Tena, A. Albarracin, A. Ho, A. Aparicio, P. Castesana, A. García, M. Olid, O. Jorba and C. Pérez García-Pando  (2026). A Spatial Comparative Analysis Between Three Gridded Atmospheric Emission Inventories for Spain. [[https://doi.org/10.1007/978-3-032-02971-3_27|In Mensink, C., Im, U. (eds) Air Pollution Modeling and Its Application XXX, ITM 2024 Springer Proceedings in Complexity, Springer, Cham.]]. (RESPIRE) [AC, CES]
   - {{ :publications:castesana_air_pollution_modeling_and_its_application_xxx.pdf |Castesana}}, P., M. Guevara, C. Tena, A. Albarracin, M. Allué, F. Benincasa, P. Camps, A. Frangeskou, A. García, O. García, J. Gehlen, A. Ho, O. Legarreta, I. Lombardich, F. Macchia, I. Martínez-Marco, K. Matozinhos, C. Meikle, M. Olid, C. Piñero, E. Rose, D. Urquiza, A. Val, A. Viñas, O. Jorba and C. Pérez-García Pando (2026). A national emission system to support air quality modelling and greenhouse Gases monitoring efforts in Spain. [[https://doi.org/10.1007/978-3-032-02971-3_25|In Mensink, C., Im, U. (eds) Air Pollution Modeling and Its Application XXX, ITM 2024 Springer Proceedings in Complexity, Springer, Cham.]]. (RESPIRE) [AC, CES]   - {{ :publications:castesana_air_pollution_modeling_and_its_application_xxx.pdf |Castesana}}, P., M. Guevara, C. Tena, A. Albarracin, M. Allué, F. Benincasa, P. Camps, A. Frangeskou, A. García, O. García, J. Gehlen, A. Ho, O. Legarreta, I. Lombardich, F. Macchia, I. Martínez-Marco, K. Matozinhos, C. Meikle, M. Olid, C. Piñero, E. Rose, D. Urquiza, A. Val, A. Viñas, O. Jorba and C. Pérez-García Pando (2026). A national emission system to support air quality modelling and greenhouse Gases monitoring efforts in Spain. [[https://doi.org/10.1007/978-3-032-02971-3_25|In Mensink, C., Im, U. (eds) Air Pollution Modeling and Its Application XXX, ITM 2024 Springer Proceedings in Complexity, Springer, Cham.]]. (RESPIRE) [AC, CES]
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   - 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://www.frontiersin.org/journals/climate/articles/10.3389/fclim.2025.1738479/full|Front. Clim. 7:1738479. doi: 10.3389/fclim.2025.1738479]]. //Open Access// (AGORA) [ESS]   - 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://www.frontiersin.org/journals/climate/articles/10.3389/fclim.2025.1738479/full|Front. Clim. 7:1738479. doi: 10.3389/fclim.2025.1738479]]. //Open Access// (AGORA) [ESS]
   - Kok, J.F., A.K. Gupta, A.T. Evan, C. Pérez García-Pando, L. Li, A.A. Adebiyi, S. Albani, Y. Balkanski, R. Checa-Garcia, Peter R. Colarco, D. Hamilton, Y. Huang, A. Ito, M. Klose, N.M. Mahowald, R.L. Miller, V. Obiso, A. Rocha Lima and J. Wan (2026). Desert dust exerts twice the longwave radiative heating estimated by climate models. [[https://www.nature.com/articles/s41467-026-70952-9 | Nature Communications 17, 3191, doi:10.1038/s41467-026-70952-9]]. //Open Access// (EMIT, HEAVY, FRAGMENT, CERTAINTY, AXA Chair) [AC]   - Kok, J.F., A.K. Gupta, A.T. Evan, C. Pérez García-Pando, L. Li, A.A. Adebiyi, S. Albani, Y. Balkanski, R. Checa-Garcia, Peter R. Colarco, D. Hamilton, Y. Huang, A. Ito, M. Klose, N.M. Mahowald, R.L. Miller, V. Obiso, A. Rocha Lima and J. Wan (2026). Desert dust exerts twice the longwave radiative heating estimated by climate models. [[https://www.nature.com/articles/s41467-026-70952-9 | Nature Communications 17, 3191, doi:10.1038/s41467-026-70952-9]]. //Open Access// (EMIT, HEAVY, FRAGMENT, CERTAINTY, AXA Chair) [AC]
 +  - Kritt, H,  José Chen-Xu, Jan C Semenza, Hannah Heiliger, Anil Markandya, Niheer Dasandi, Slava Jankin, Kim R van Daalen, Hicham Achebak, Anna Alari, Tilly Alcayna, Emily Ball, Joan Ballester, Hannah Bechara, Max W Callaghan, Monique van Cauwenberghe, Gina EC Charnley, Orin Courtenay, Marta Cirach, Paulina Garcia-Corral, Troy J Cross, Shouro Dasgupta, Zachary P Dickson, Matthew J Eckelman, Cornelius Erfort, Peter Fransson, Zia Farooq, Olga Gasparyan, Ian Hamilton, Marlies Hesselman, Risto Hänninen, Shih-Che Hsu, Tomáš Janoš, Harshavardhan Jatkar, Ollie Jay, Harry Kennard, Kajal Khanna, Gregor Kiesewetter, Rachel Lowe, Daniela Lührsen, Carla Maia, Jaime Martinez-Urtaza, Jan C Minx, Mark Nieuwenhuijsen, Julia Palamarchuk, Adria San José Plana, Tim Repke, Jorge A Roa-Contreras, Elizabeth JZ Robinson, Daniel Scamman, Natalia Shartova, Jodi D Sherman, Elena Sirotkina, Pratik Singh, Mikhail Sofiev, Marco Springmann, Lara Stucki, Federico Tartarini, Joaquin Triñanes, Maria Walawender, Marina Romanello, Josep M Antó, Maria Nilsson, Cathryn Tonne, Joacim Rocklöv (2026). [[The 2026 Europe report of the Lancet Countdown on health and climate change: narrowing window for decisive health action]]. //Open Access// [GHR]
   - Kuhlmann, G., E.F.M. Koene, C.N. Schooling, P.I. Palmer, O. López and M. Guevara (2026). Temporal variability of NOx emissions from power plants: a comparison of satellite- and inventory-based estimates. [[https://acp.copernicus.org/articles/26/4405/2026/ | Atmos. Chem. Phys., 26, 4405–4421, https://doi.org/10.5194/acp-26-4405-2026]]. //Open Access// (CORSO) [AC]   - Kuhlmann, G., E.F.M. Koene, C.N. Schooling, P.I. Palmer, O. López and M. Guevara (2026). Temporal variability of NOx emissions from power plants: a comparison of satellite- and inventory-based estimates. [[https://acp.copernicus.org/articles/26/4405/2026/ | Atmos. Chem. Phys., 26, 4405–4421, https://doi.org/10.5194/acp-26-4405-2026]]. //Open Access// (CORSO) [AC]
   - Lavoie, J., A. Carreric, A. Duffey, G. Chellini and E. Ziegler (2026). CMIP6 data usage: Lessons learned from more than 200 million downloads. [[https://doi.org/10.5194/egusphere-2026-1246| EGUSphere, doi:10.5194/egusphere-2026-1246]]. //Open Access// [CVC]   - Lavoie, J., A. Carreric, A. Duffey, G. Chellini and E. Ziegler (2026). CMIP6 data usage: Lessons learned from more than 200 million downloads. [[https://doi.org/10.5194/egusphere-2026-1246| EGUSphere, doi:10.5194/egusphere-2026-1246]]. //Open Access// [CVC]
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   -  Liu, X., P. Ginoux, C. Pérez García-Pando, A. González-Romero, X. Querol, P.G. Brodrick, and A. Evan (2026). Comparison of Soil Mineralogy From EMIT Imaging Spectroscopy and Ground-Based Measurements in the Deserts of Southern California. [[https://doi.org/10.1029/2026JD046595|Journal of Geophysical Research: Atmospheres, 131, e2026JD046595, doi:10.1029/2026JD046595]]. //Open Access// (FRAGMENT, PID2022-140365OB-I00, PID2024-157110OI-C21, CERTAINTY, AXA Chair) [AC]   -  Liu, X., P. Ginoux, C. Pérez García-Pando, A. González-Romero, X. Querol, P.G. Brodrick, and A. Evan (2026). Comparison of Soil Mineralogy From EMIT Imaging Spectroscopy and Ground-Based Measurements in the Deserts of Southern California. [[https://doi.org/10.1029/2026JD046595|Journal of Geophysical Research: Atmospheres, 131, e2026JD046595, doi:10.1029/2026JD046595]]. //Open Access// (FRAGMENT, PID2022-140365OB-I00, PID2024-157110OI-C21, CERTAINTY, AXA Chair) [AC]
   - 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://www.nature.com/articles/s43247-026-03308-2|Communications Earth & Environment, 7, doi:10.1038/s43247-026-03308-2]]. //Open Access// [CVC]   - 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://www.nature.com/articles/s43247-026-03308-2|Communications Earth & Environment, 7, doi:10.1038/s43247-026-03308-2]]. //Open Access// [CVC]
-  - 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, V. Hernández, C. Jack, L. Pereira,  J.A. Rivera, F. Robledo and S. Somot (2026). The importance of accounting for stakeholder values, power relationships and language in constructing relevant and trustworthy climate information. [[https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2024EF005618|Earth's Future, 14, e2024EF005618, doi:10.1029/2024EF005618]].  //Open Access// (AI4S Dragana, Climateurope2, IMPETUS4CHANGE) [GES,ESS] 
   - Mahowald, N. M., Li, L., Gonçalves Ageitos, M., Miller, R. L., Pérez García‐Pando, C., Ginoux, P., Obiso, V. et al. (2026). Global model estimates of atmospheric Al, Ca, Fe, Si, and Ti from dust and non‐dust aerosols informed by EMIT surface mineralogy and evaluated against observations. [[https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2025GB009033|Global Biogeochemical Cycles, 40, e2025GB009033. https://doi.org/10.1029/2025GB009033]]. //Open Access// (EMIT, DUSTIMPACT, HEAVY, BIOTA, FRAGMENT, CERTAINTY, AXA Chair SDS). [AC]   - Mahowald, N. M., Li, L., Gonçalves Ageitos, M., Miller, R. L., Pérez García‐Pando, C., Ginoux, P., Obiso, V. et al. (2026). Global model estimates of atmospheric Al, Ca, Fe, Si, and Ti from dust and non‐dust aerosols informed by EMIT surface mineralogy and evaluated against observations. [[https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2025GB009033|Global Biogeochemical Cycles, 40, e2025GB009033. https://doi.org/10.1029/2025GB009033]]. //Open Access// (EMIT, DUSTIMPACT, HEAVY, BIOTA, FRAGMENT, CERTAINTY, AXA Chair SDS). [AC]
 +  - 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, V. Hernández, C. Jack, L. Pereira,  J.A. Rivera, F. Robledo and S. Somot (2026). The importance of accounting for stakeholder values, power relationships and language in constructing relevant and trustworthy climate information. [[https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2024EF005618|Earth's Future, 14, e2024EF005618, doi:10.1029/2024EF005618]].  //Open Access// (AI4S Dragana, Climateurope2, IMPETUS4CHANGE) [GES,ESS]
 +  - Martin-Martinez, E., E. Moreno-Chamarro, F. W. Goldsworth, J.-S. von Storch, C. Arumi, D. Kuznetsova, S. Loosveldt-Tomas, P.-A. Bretonnière, and P. Ortega (2026). North Atlantic response to a quasi-realistic Greenland meltwater forcing in eddy-rich EC-Earth3P-VHR hosing simulations. [[ https://doi.org/10.5194/os-22-2307-2026 | Ocean Science, 22, 2307–2331, doi:10.5194/os-22-2307-2026]]. //Open Access// (STREAM, EERIE) [CVC]
   - Meyer, H., K. Kandler, S. Dupont, J. Escribano, J. Girdwood, G. Nikolich, A. Alastuey, V. Etyemezian, C. González Flórez, A. González-Romero, T. Hussein, M. Irvine, P. Knippertz, O. Möhler, X. Querol, C. Stopford, F. Vogel, F. Weis, A. Wieser, C. Pérez García-Pando and M. Klose (2026). From fine to giant: Multi-instrument assessment of the dust particle size distribution at an emission source during the J-WADI field campaign. [[ https://amt.copernicus.org/articles/19/21/2026/ | Atmosheric Measurements Technology, 19, 21–61, doi:10.5194/amt-19-21-2026]]. //Open Access// (FRAGMENT, HEAVY, AXA Chair, AI4S J. Escribano) [AC]   - Meyer, H., K. Kandler, S. Dupont, J. Escribano, J. Girdwood, G. Nikolich, A. Alastuey, V. Etyemezian, C. González Flórez, A. González-Romero, T. Hussein, M. Irvine, P. Knippertz, O. Möhler, X. Querol, C. Stopford, F. Vogel, F. Weis, A. Wieser, C. Pérez García-Pando and M. Klose (2026). From fine to giant: Multi-instrument assessment of the dust particle size distribution at an emission source during the J-WADI field campaign. [[ https://amt.copernicus.org/articles/19/21/2026/ | Atmosheric Measurements Technology, 19, 21–61, doi:10.5194/amt-19-21-2026]]. //Open Access// (FRAGMENT, HEAVY, AXA Chair, AI4S J. Escribano) [AC]
   - Moreno-Chamarro, E. and P. Ortega (2026). Amplified European future warming under mesoscale-resolving sea surface temperature forcing. [[https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2025GL120578| Geophysical Research Letters, 53, e2025GL120578, doi:10.1029/2025GL120578]] (STREAM, EERIE) [CVC]   - Moreno-Chamarro, E. and P. Ortega (2026). Amplified European future warming under mesoscale-resolving sea surface temperature forcing. [[https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2025GL120578| Geophysical Research Letters, 53, e2025GL120578, doi:10.1029/2025GL120578]] (STREAM, EERIE) [CVC]
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   - 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://www.nature.com/articles/s41597-026-07538-z | Scientific Data, doi:10.1038/s41597-026-07538-z]]. //Open Access// (URBANVOC) [AC]   - 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://www.nature.com/articles/s41597-026-07538-z | Scientific Data, doi:10.1038/s41597-026-07538-z]]. //Open Access// (URBANVOC) [AC]
   - 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://journals.ametsoc.org/view/journals/clim/aop/JCLI-D-24-0545.1/JCLI-D-24-0545.1.xml|Journal of Climate, e240545, doi:10.1175/JCLI-D-24-0545.1]]. (Impetus4Change, CLIMCAT, AI4S Matías Olmo)[ESS,GES,CES]   - 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://journals.ametsoc.org/view/journals/clim/aop/JCLI-D-24-0545.1/JCLI-D-24-0545.1.xml|Journal of Climate, e240545, doi:10.1175/JCLI-D-24-0545.1]]. (Impetus4Change, CLIMCAT, AI4S Matías Olmo)[ESS,GES,CES]
 +  - Osman, Marison, Victor Marchezini, Steve Woolnough, Nico Caltabiano, Rachel Lowe, Emma E.H. Doyle, Dewald van Niekerk, Juan Bazo, Roger Stone, Arun Kumar, Yuhei Takaya, Parthasarathi Mukhopadhyay, Ziqiang Han, Masilin Gudoshava, Cristiana Stan, Shipra Jain, Atul Kumar Sahai, Kunio Yoneyama, Estelle de Coning. The Subseasonal Applications for Agriculture and Environment (SAGE) project within the World Weather Research Programme: Making subseasonal predictions more useful for sectoral applications, Climate Services, Volume 43, 2026, 100693, ISSN 2405-8807. [[https://www.sciencedirect.com/science/article/pii/S2405880726000610]]. //Open Access// [GHR]
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 +  - Pérez-Zanón, N., D.A. Campos Díaz, R.I. Saurral, F.J. Doblas-Reyes and A. Soret (2026). Towards a sub-seasonal climate forecast service for extreme precipitation associated with cut-off lows: insights from the Valencia 2024 event. [[https://iopscience.iop.org/article/10.1088/1748-9326/ae8b06 | Environmental Research Letters 21, 154001, doi:  10.1088/1748-9326/ae8b06]]. //Open Access// (Medewsa, AIFS) [ESS, CVC]
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   - 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://doi.org/10.1038/s43247-026-03180-0 | Communications Earth and Environment, 7, 1555. doi: 10.1038/s43247-026-03180-0 ]]. //Open Access// (EXPECT) [CVC]   - 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://doi.org/10.1038/s43247-026-03180-0 | Communications Earth and Environment, 7, 1555. doi: 10.1038/s43247-026-03180-0 ]]. //Open Access// (EXPECT) [CVC]
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   - Yáñez-Serrano, A.M., M. Lampadariou, I. Filella, J. Llusià, R. Seco, M. Fernández-Martínez, M. Portillo Estrada, N. Mihalopoulos, J. Massagué, N. Pérez, M. Savadkoohi, M. Pandolfi, J. Peñuelas, X. Querol and A. Alastuey (2026). Toluene early morning peaks as potential biogenic stress signals of Mediterranean forests. [[https://doi.org/10.1039/D5EA00168D|Environmental Science: Atmospheres, doi:10.1039/D5EA00168D]]. //Open Access// [AC]   - Yáñez-Serrano, A.M., M. Lampadariou, I. Filella, J. Llusià, R. Seco, M. Fernández-Martínez, M. Portillo Estrada, N. Mihalopoulos, J. Massagué, N. Pérez, M. Savadkoohi, M. Pandolfi, J. Peñuelas, X. Querol and A. Alastuey (2026). Toluene early morning peaks as potential biogenic stress signals of Mediterranean forests. [[https://doi.org/10.1039/D5EA00168D|Environmental Science: Atmospheres, doi:10.1039/D5EA00168D]]. //Open Access// [AC]
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   -  Blanchard-Wrigglesworth, E., R. Bilbao, A. Donohoe and S. Materia (2025). Record warmth of 2023 and 2024 was highly predictable and resulted from ENSO transition and Northern Hemisphere absorbed shortwave anomalies. [[https://agupubs.onlinelibrary.wiley.com/action/showCitFormats?doi=10.1029%2F2025GL115614|Geophysical Research Letters, 52, e2025GL115614, doi:10.1029/2025GL115614]]. //Open Access// [CVC]   -  Blanchard-Wrigglesworth, E., R. Bilbao, A. Donohoe and S. Materia (2025). Record warmth of 2023 and 2024 was highly predictable and resulted from ENSO transition and Northern Hemisphere absorbed shortwave anomalies. [[https://agupubs.onlinelibrary.wiley.com/action/showCitFormats?doi=10.1029%2F2025GL115614|Geophysical Research Letters, 52, e2025GL115614, doi:10.1029/2025GL115614]]. //Open Access// [CVC]
   - Campos, D.A., M.E. Olmo, P. Cos, A.G. Muñoz and F.J. Doblas-Reyes (2025). Regional aspects of observed temperature and precipitation trends in the western Mediterranean: Insights from a timescale decomposition analysis.  [[https://doi.org/10.1029/2024JD042637|Journal of Geophysical Research: Atmospheres, 130, e2024JD042637, doi:10.1029/2024JD042637]]. //Open access// (CLIMCAT, AI4S Matías Olmo) [ESS]   - Campos, D.A., M.E. Olmo, P. Cos, A.G. Muñoz and F.J. Doblas-Reyes (2025). Regional aspects of observed temperature and precipitation trends in the western Mediterranean: Insights from a timescale decomposition analysis.  [[https://doi.org/10.1029/2024JD042637|Journal of Geophysical Research: Atmospheres, 130, e2024JD042637, doi:10.1029/2024JD042637]]. //Open access// (CLIMCAT, AI4S Matías Olmo) [ESS]
 +  - Campos, D.A., A.G. Muñoz and F. Cabello (2025). On the NextGen-Chile Forecast System: A Calibrated Multi-Model Ensemble Approach for Seasonal Precipitation Forecasts  [[https://doi.org/10.1002/joc.8747|International Journal of Climatology, 2025; 0:1-16]]. [ESS]
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   - Roldán-Gómez, P. J., P. Ortega, and M. G. Donat (2025). Contribution of meridional overturning circulation and sea ice changes to large-scale temperature asymmetries in CMIP6 overshoot scenarios, [[https://os.copernicus.org/articles/21/2283/2025/ | Ocean Science, 21, 2283–2303, https://doi.org/10.5194/os-21-2283-2025]]. //Open Access// (RESCUE, PRECEDE) [CVC]   - Roldán-Gómez, P. J., P. Ortega, and M. G. Donat (2025). Contribution of meridional overturning circulation and sea ice changes to large-scale temperature asymmetries in CMIP6 overshoot scenarios, [[https://os.copernicus.org/articles/21/2283/2025/ | Ocean Science, 21, 2283–2303, https://doi.org/10.5194/os-21-2283-2025]]. //Open Access// (RESCUE, PRECEDE) [CVC]
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publications/publications.1784621667.txt.gz · Last modified: 2026/07/21 08:14 by mariag