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1.
Proc Natl Acad Sci U S A ; 117(27): 15443-15449, 2020 07 07.
Artículo en Inglés | MEDLINE | ID: mdl-32571905

RESUMEN

The assassination of Julius Caesar in 44 BCE triggered a power struggle that ultimately ended the Roman Republic and, eventually, the Ptolemaic Kingdom, leading to the rise of the Roman Empire. Climate proxies and written documents indicate that this struggle occurred during a period of unusually inclement weather, famine, and disease in the Mediterranean region; historians have previously speculated that a large volcanic eruption of unknown origin was the most likely cause. Here we show using well-dated volcanic fallout records in six Arctic ice cores that one of the largest volcanic eruptions of the past 2,500 y occurred in early 43 BCE, with distinct geochemistry of tephra deposited during the event identifying the Okmok volcano in Alaska as the source. Climate proxy records show that 43 and 42 BCE were among the coldest years of recent millennia in the Northern Hemisphere at the start of one of the coldest decades. Earth system modeling suggests that radiative forcing from this massive, high-latitude eruption led to pronounced changes in hydroclimate, including seasonal temperatures in specific Mediterranean regions as much as 7 °C below normal during the 2 y period following the eruption and unusually wet conditions. While it is difficult to establish direct causal linkages to thinly documented historical events, the wet and very cold conditions from this massive eruption on the opposite side of Earth probably resulted in crop failures, famine, and disease, exacerbating social unrest and contributing to political realignments throughout the Mediterranean region at this critical juncture of Western civilization.


Asunto(s)
Cambio Climático/historia , Clima Frío/efectos adversos , Desastres/historia , Mundo Romano/historia , Erupciones Volcánicas/efectos adversos , Alaska , Clima , Productos Agrícolas/historia , Hambruna/historia , Historia Antigua , Cubierta de Hielo , Región Mediterránea , Política , Erupciones Volcánicas/historia
2.
Proc Natl Acad Sci U S A ; 115(22): 5726-5731, 2018 05 29.
Artículo en Inglés | MEDLINE | ID: mdl-29760088

RESUMEN

Lead pollution in Arctic ice reflects midlatitude emissions from ancient lead-silver mining and smelting. The few reported measurements have been extrapolated to infer the performance of ancient economies, including comparisons of economic productivity and growth during the Roman Republican and Imperial periods. These studies were based on sparse sampling and inaccurate dating, limiting understanding of trends and specific linkages. Here we show, using a precisely dated record of estimated lead emissions between 1100 BCE and 800 CE derived from subannually resolved measurements in Greenland ice and detailed atmospheric transport modeling, that annual European lead emissions closely varied with historical events, including imperial expansion, wars, and major plagues. Emissions rose coeval with Phoenician expansion, accelerated during expanded Carthaginian and Roman mining primarily in the Iberian Peninsula, and reached a maximum under the Roman Empire. Emissions fluctuated synchronously with wars and political instability particularly during the Roman Republic, and plunged coincident with two major plagues in the second and third centuries, remaining low for >500 years. Bullion in silver coinage declined in parallel, reflecting the importance of lead-silver mining in ancient economies. Our results indicate sustained economic growth during the first two centuries of the Roman Empire, terminated by the second-century Antonine plague.


Asunto(s)
Contaminantes Ambientales , Hielo/análisis , Plomo , Mundo Romano/historia , Conflictos Armados/historia , Brotes de Enfermedades/historia , Contaminantes Ambientales/análisis , Contaminantes Ambientales/historia , Industria Procesadora y de Extracción/historia , Groenlandia , Historia Antigua , Humanos , Plomo/análisis , Plomo/historia , Plata/historia
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