Rapid shifting of a deep magmatic source at Fagradalsfjall volcano, Iceland

2022
Authors

Sæmundur A. Halldórsson

Edward W. Marshall

Alberto Caracciolo

Simon Matthews

Enikő Bali

Maja B. Rasmussen

Eemu Ranta

Jóhann Gunnarsson Robin

Guðmundur H. Guðfinnsson

Olgeir Sigmarsson

John Maclennan

Matthew G. Jackson

Martin J. Whitehouse

Heejin Jeon

Quinten H. A. van der Meer

Geoffrey K. Mibei

Maarit H. Kalliokoski

Maria M. Repczynska

Rebekka Hlín Rúnarsdóttir

Gylfi Sigurðsson

Melissa Anne Pfeffer

Samuel W. Scott

Ríkey Kjartansdóttir

Barbara I. Kleine

Clive Oppenheimer

Alessandro Aiuppa

Evgenia Ilyinskaya

Marcello Bitetto

Gaetano Giudice

Andri Stefánsson

Published

January 1, 2022

Abstract
Recent Icelandic rifting events have illuminated the roles of centralized crustal magma reservoirs and lateral magma transport, important characteristics of mid-ocean ridge magmatism. A consequence of such shallow crustal processing of magmas is the overprinting of signatures that trace the origin, evolution and transport of melts in the uppermost mantle and lowermost crust. Here we present unique insights into processes occurring in this zone from integrated petrologic and geochemical studies of the 2021 Fagradalsfjall eruption on the Reykjanes Peninsula in Iceland. Geochemical analyses of basalts erupted during the first 50 days of the eruption, combined with associated gas emissions, reveal direct sourcing from a near-Moho magma storage zone. Geochemical proxies, which signify different mantle compositions and melting conditions, changed at a rate unparalleled for individual basaltic eruptions globally. Initially, the erupted lava was dominated by melts sourced from the shallowest mantle but over the following three weeks became increasingly dominated by magmas generated at a greater depth. This exceptionally rapid trend in erupted compositions provides an unprecedented temporal record of magma mixing that filters the mantle signal, consistent with processing in near-Moho melt lenses containing 107–108 m3 of basaltic magma. Exposing previously inaccessible parts of this key magma processing zone to near-real-time investigations provides new insights into the timescales and operational mode of basaltic magma systems.
DOI

10.1038/s41586-022-04981-x

Reference

Halldórsson, S. A., Marshall, E. W., Caracciolo, A., Matthews, S., Bali, E., Rasmussen, M. B., … & Stefánsson, A. (2022). Rapid shifting of a deep magmatic source at Fagradalsfjall volcano, Iceland. Nature, 609(7927), 529-534.