Títol | |
---|---|
Climate change facilitated the early colonization of the Azores Archipelago during medieval timesRaposeiro, P. M., Hernández, A., Pla-Rabes, S., Gonçalves, V., Bao, R., Sáez, A., Shanahan, T., Benavente, M., de Boer, E. J., Richter, N., Gordon, V., Marques, H., Sousa, P. M., Souto, M., Matias, M. G., Aguiar, N., Pereira, C., Ritter, C., Rubio, M. J., … Giralt, S. (2021). Climate change facilitated the early colonization of the Azores Archipelago during medieval times. Proceedings of the National Academy of Sciences, 118(41), e2108236118. https://doi.org/10.1073/pnas.2108236118 |
|
Deep Sea SedimentationErcilla, G., Casas, D., Alonso, B., Casalbore, D., Estrada, F., Idárraga-García, J., … Yenes, M. B. T.-R. M. in E. S. and E. S. (2021). Deep Sea Sedimentation. Elsevier. https://doi.org/10.1016/B978-0-12-818234-5.00129-2 |
|
Variscan intracrustal recycling by melting of Carboniferous arc-like igneous protoliths (Évora Massif, Iberian Variscan belt)Carmen Rodríguez, Manuel Francisco Pereira, Antonio Castro, Gabriel Gutiérrez-Alonso, Carlos Fernández; Variscan intracrustal recycling by melting of Carboniferous arc-like igneous protoliths (Évora Massif, Iberian Variscan belt). GSA Bulletin 2021; doi: https://doi.org/10.1130/B36111.1 |
|
Modelling and simulation of a lava flow affecting a shore platform: a case study of Montaña de Aguarijo eruption, El Hierro (Canary Islands, Spain)Prieto-Torrell C, Rodriguez-Gonzalez A, Aulinas M, et al. Modelling and simulation of a lava flow affecting a shore platform: a case study of Montaña de Aguarijo eruption, El Hierro (Canary Islands, Spain). J Maps. 2021;17(2):502-511. doi:10.1080/17445647.2021.1972853. |
|
Structural styles of the Tellian fold-and-thrust belt of Tunisia based on structural transects: Insights on the subsurface oil and gas pre-salt playsKhelil, M., Khomsi, S., Roure, F. et al. Structural styles of the Tellian fold-and-thrust belt of Tunisia based on structural transects: Insights on the subsurface oil and gas pre-salt plays. Arab J Geosci 14, 1985 (2021). https://doi.org/10.1007/s12517-021-08308-4 |
|
Flexural-isostatic reconstruction of the Western Mediterranean during the Messinian Salinity Crisis: implications for water level and basin connectivityHeida, H., Raad, F., Garcia-Castellanos, D., Jiménez-Munt, I., Maillard, A. and Lofi, J. (2021), Flexural-isostatic reconstruction of the Western Mediterranean during the Messinian Salinity Crisis: implications for water level and basin connectivity. Basin Research. https://doi.org/10.1111/bre.12610 |
|
A criteria-driven approach to the CO2 storage site selection of East Mey for the acorn project in the North SeaAlcalde J, Heinemann N, James A, et al. A criteria-driven approach to the CO2 storage site selection of East Mey for the acorn project in the North Sea. Mar Pet Geol. 2021:105309. doi:https://doi.org/10.1016/j.marpetgeo.2021.105309 |
|
Machine Learning for Mineral Identification and Ore Estimation from Hyperspectral Imagery in Tin–Tungsten Deposits: Simulation under Indoor ConditionsLobo, A.; Garcia, E.; Barroso, G.; Martí, D.; Fernandez-Turiel, J.-L.; Ibáñez-Insa, J. Machine Learning for Mineral Identification and Ore Estimation from Hyperspectral Imagery in Tin–Tungsten Deposits: Simulation under Indoor Conditions. Remote Sens. 2021, 13, 3258. https://doi.org/10.3390/rs13163258 |
|
Multiple fluid flow events from salt-related rifting to basin inversion (Upper Pedraforca thrust sheet, SE Pyrenees)Cruset, D., Vergés, J., Benedicto, A., Gomez-Rivas, E., Cantarero, I., John, C.M. and Travé, A. (2021), Multiple fluid flow events from salt-related rifting to basin inversion (Upper Pedraforca thrust sheet, SE Pyrenees). Basin Res. https://doi.org/10.1111/bre.12596 |
|
Plio-Pleistocene paleoenvironmental evolution of the intermontane Humahuaca Basin, southern Central AndesGalli CI, Alonso RN, Amorós EB, et al. Plio-Pleistocene paleoenvironmental evolution of the intermontane Humahuaca Basin, southern Central Andes. J South Am Earth Sci. 2021:103502. doi:https://doi.org/10.1016/j.jsames.2021.103502 |
|
Urban seismic monitoring in Brasília, BrazilMaciel STR, Rocha MP, Schimmel M. Urban seismic monitoring in Brasília, Brazil. PLoS One. 2021;16(8):e0253610. https://doi.org/10.1371/journal.pone.0253610. |
|
Eruptive evolution and 3D geological modeling of Camp dels Ninots maar-diatreme (Catalonia) through continuous intra-crater drill coringBolós X, Oms O, Rodríguez-Salgado P, Martí J, Gómez de Soler B, Campeny G. Eruptive evolution and 3D geological modeling of Camp dels Ninots maar-diatreme (Catalonia) through continuous intra-crater drill coring. J Volcanol Geotherm Res. 2021;419:107369. doi:https://doi.org/10.1016/j.jvolgeores.2021.107369 |
|
Drainage Development During Mountain BuildingViaplana-Muzas, Marc & Struth, Lucía. (2021). Drainage Development During Mountain Building. 10.1016/B978-0-12-818234-5.00085-7. |
|
Hubs and clusters approach to unlock the development of carbon capture and storage – Case study in SpainSun X, Alcalde J, Bakhtbidar M, et al. Hubs and clusters approach to unlock the development of carbon capture and storage – Case study in Spain. Appl Energy. 2021;300:117418. doi:https://doi.org/10.1016/j.apenergy.2021.117418 |
|
Fractionation by compositional magma splitting: An example from Cerro Munro, Argentina.Rodríguez C, Aragón E, Díaz-Alvarado J, Marti, J, et al. Fractionation by compositional magma splitting: An example from Cerro Munro, Argentina. Lithos. 2021:106396. doi:https://doi.org/10.1016/j.lithos.2021.106396 |
|
Thickness and structure of the martian crust from InSight seismic dataKnapmeyer-Endrun B, Panning MP, Bissig F, et al. Thickness and structure of the martian crust from InSight seismic data. Science (80- ). 2021;373(6553):438 LP – 443. doi:10.1126/science.abf8966 |
|
Seismic detection of the martian coreStähler SC, Khan A, Banerdt WB, et al. Seismic detection of the martian core. Science (80- ). 2021;373(6553):443 LP – 448. doi:10.1126/science.abi7730 |
|
Late-Holocene forest resilience in the central Pyrenean highlands as deduced from pollen analysis of Lake Sant Maurici sedimentsRull V, Cañellas-Boltà N, Vegas-Vilarrúbia T. Late-Holocene forest resilience in the central Pyrenean highlands as deduced from pollen analysis of Lake Sant Maurici sediments. The Holocene. July 2021. doi:10.1177/09596836211033207 |
|
Catastrophic drainage from the northwestern outlet of glacial Lake Agassiz during the Younger DryasNorris, S. L., Garcia-Castellanos, D., Jansen, J. D., Carling, P. A., Margold, M., Woywitka, R. J., & Froese, D. G. (2021). Catastrophic drainage from the northwestern outlet of glacial Lake Agassiz during the Younger Dryas. Geophysical Research Letters, 48, e2021GL093919. https://doi.org/10.1029/2021GL093919 |
|
Sizing the carbon sink associated with Posidonia oceanica seagrass meadows using very high-resolution seismic reflection imagingMonnier B, Pergent G, Mateo MÁ, Carbonell R, Clabaut P, Pergent-Martini C. Sizing the carbon sink associated with Posidonia oceanica seagrass meadows using very high-resolution seismic reflection imaging. Mar Environ Res. 2021;170:105415. doi:https://doi.org/10.1016/j.marenvres.2021.105415 |
|
Evolution of the Iberian Massif as deduced from its crustal thickness and geometry of a mid-crustal (Conrad) discontinuityAyarza, P., Martínez Catalán, J. R., Martínez García, A., Alcalde, J., Andrés, J., Simancas, J. F., Palomeras, I., Martí, D., DeFelipe, I., Juhlin, C., and Carbonell, R.: Evolution of the Iberian Massif as deduced from its crustal thickness and geometry of a mid-crustal (Conrad) discontinuity, Solid Earth, 12, 1515–1547, https://doi.org/10.5194/se-12-1515-2021, 2021. |