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1.
Sci Adv ; 6(7): eaax3644, 2020 02.
Artigo em Inglês | MEDLINE | ID: mdl-32110724

RESUMO

Large changes in hydroclimate in the Neotropics implied by proxy evidence, such as during the Little Ice Age, have been attributed to meridional shifts of the intertropical convergence zone (ITCZ), although alternative modes of ITCZ variability have also been suggested. Here, we use seasonally resolved stalagmite rainfall proxy data from the modern northern limit of the ITCZ in southern Belize, combined with records from across the Neotropics and subtropics, to fingerprint ITCZ variability during the Common Era. Our data are consistent with models that suggest ITCZ expansion and weakening during globally cold climate intervals and contraction and intensification during global warmth. As a result, regions currently in the margins of the ITCZ in both hemispheres are likely transitioning to more arid and highly variable conditions, aggravating current trends of increased social unrest and mass migration.


Assuntos
Clima Tropical , Isótopos de Carbono/análise , Cavernas , Clima , Geografia , Sedimentos Geológicos/química , Chuva , Estações do Ano , Fatores de Tempo , Urânio/análise , Análise de Ondaletas
2.
Nature ; 574(7777): 233-236, 2019 10.
Artigo em Inglês | MEDLINE | ID: mdl-31471591

RESUMO

Reconstructing the evolution of sea level during past warmer epochs such as the Pliocene provides insight into the response of sea level and ice sheets to prolonged warming1. Although estimates of the global mean sea level (GMSL) during this time do exist, they vary by several tens of metres2-4, hindering the assessment of past and future ice-sheet stability. Here we show that during the mid-Piacenzian Warm Period, which was on average two to three degrees Celsius warmer than the pre-industrial period5, the GMSL was about 16.2 metres higher than today owing to global ice-volume changes, and around 17.4 metres when thermal expansion of the oceans is included. During the even warmer Pliocene Climatic Optimum (about four degrees Celsius warmer than pre-industrial levels)6, our results show that the GMSL was 23.5 metres above the present level, with an additional 1.6 metres from thermal expansion. We provide six GMSL data points, ranging from 4.39 to 3.27 million years ago, that are based on phreatic overgrowths on speleothems from the western Mediterranean (Mallorca, Spain). This record is unique owing to its clear relationship to sea level, its reliable U-Pb ages and its long timespan, which allows us to quantify uncertainties on potential uplift. Our data indicate that ice sheets are very sensitive to warming and provide important calibration targets for future ice-sheet models7.


Assuntos
Mudança Climática/história , Água do Mar/análise , Calibragem , Dióxido de Carbono/análise , Foraminíferos/química , História Antiga , Camada de Gelo/química , Ilhas , Mar Mediterrâneo , Isótopos de Oxigênio/análise , Espanha , Incerteza
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