Lead pollution recorded in Greenland ice indicates European emissions tracked plagues, wars, and imperial expansion during antiquity
Загрязнение свинцом, зафиксированное в ледяном керне Гренландии, свидетельствует о том, что выбросы в Европе в древности отражали эпидемии, войны и имперскую экспансию
2018-05-14
SCID: 54.1/8sj8hycx
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Greenland ice coreRoman Empireancient lead-silver miningatmospheric transport modelinglead pollution
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Abstract (AI)
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.
Key Findings
1
A precisely dated Greenland ice record reconstructs annual European lead emissions from 1100 BCE to 800 CE using subannually resolved measurements and atmospheric transport modeling.
2
Emissions fluctuated synchronously with wars and political instability, especially during the Roman Republic, and plunged during major second- and third-century plagues.
3
European lead emissions tracked major historical developments, rising with Phoenician expansion, Carthaginian and Roman mining, and peaking under the Roman Empire.
4
Lead emissions remained low for more than 500 years after the major plagues, while silver content in coinage declined in parallel, underscoring the economic importance of lead-silver mining.
5
The findings indicate sustained economic growth during the first two centuries of the Roman Empire, ending with the second-century Antonine plague.
Research Object
European lead emissions from ancient lead-silver mining and smelting, reconstructed from Greenland ice between 1100 BCE and 800 CE
Research Subject
The temporal variation and historical associations of lead emissions with imperial expansion, wars, political instability, plagues, and ancient economic growth
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2018-05-14
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