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Spatial and Temporal Quantification of Subaerial Volcanism From 1980 to 2019: Solid Products, Masses, and Average Eruptive Rates

REVIEWS OF GEOPHYSICS(2023)

Cited 5|Views18
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Abstract
Volcanism is one of the main mechanisms transferring mass and energy between the interior of the Earth and the Earth's surface. However, the global mass flux of lava, volcanic ash and explosive pyroclastic deposits is not well constrained. Here we review published estimates of the mass of the erupted products from 1980 to 2019 by a global compilation. We identified 1,064 magmatic eruptions that occurred between 1980 and 2019 from the Smithsonian Global Volcanism Program database. For each eruption, we reported both the total erupted mass and its partitioning into the different volcanic products. Using this data set, we quantified the temporal and spatial evolution of subaerial volcanism and its products from 1980 to 2019 at a global and regional scale. The mass of magma erupted in each analyzed decade ranged from 1.1-4.9 x 10(13) kg. Lava is the main subaerial erupted product representing similar to 57% of the total erupted mass of magma. The products related to the biggest eruptions (Magnitude >= 6), with long recurrence times, can temporarily make explosive products more abundant than lava (e.g., decade 1990-1999). Twenty-three volcanoes produced similar to 72% of the total mass, while two different sets of 15 volcanoes erupted >70% of the total mass of either effusive or explosive products. At a global scale, the 10 and 40-year average eruptive rates calculated from 1980 to 2019 have the same magnitude as the long-term average eruptive rates (from thousand to millions of years), because in both cases rates are scaled for times comparable to the recurrence time of the biggest eruptions occurred.
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Key words
global terrestrial volcanism,global eruptive rates,effusive products,explosive products,regional eruptive rates
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