Exceptional eruptive CO2 emissions from intra-plate alkaline magmatism in the Canary volcanic archipelago

Author:

Burton MikeORCID,Aiuppa AlessandroORCID,Allard PatrickORCID,Asensio-Ramos María,Cofrades Ana Pardo,La Spina Alessandro,Nicholson Emma J.,Zanon VittorioORCID,Barrancos José,Bitetto MarcelloORCID,Hartley MargaretORCID,Romero Jorge E.,Waters EmmaORCID,Stewart AlexORCID,Hernández Pedro A.,Lages João Pedro,Padrón EleazarORCID,Wood Kieran,Esse Benjamin,Hayer Catherine,Cyrzan Klaudia,Rose-Koga Estelle F.ORCID,Schiavi Federica,D’Auria Luca,Pérez Nemesio M.

Abstract

AbstractAlkaline mafic magmas forming intra-plate oceanic islands are believed to be strongly enriched in CO2 due to low-degree partial melting of enriched mantle sources. However, until now, such CO2 enhancement has not been verified by measuring CO2 degassing during a subaerial eruption. Here, we provide evidence of highly CO2-rich gas emissions during the 86-day 2021 Tajogaite eruption of Cumbre Vieja volcano on La Palma Island, in the Canary archipelago. Our results reveal sustained high plume CO2/SO2 ratios, which, when combined with SO2 fluxes, melt inclusion volatile contents and magma production rates at explosive and effusive vents, imply a magmatic CO2 content of 4.5 ± 1.5 wt%. The amount of CO2 released during the 2021 eruptive activity was 28 ± 14 Mt CO2. Extrapolating to the volume of alkaline mafic magmas forming La Palma alone (estimated as 4000 km3 erupted over 11 Ma), we infer a maximum CO2 emission into the ocean and atmosphere of 1016 moles of CO2, equivalent to 20% of the eruptive CO2 emissions from a large igneous province eruption, suggesting that the formation of the Canary volcanic archipelago produced a CO2 emission of similar magnitude as a large igneous province.

Publisher

Springer Science and Business Media LLC

Subject

General Earth and Planetary Sciences,General Environmental Science

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. High CO2 in the mantle source of ocean island basanites;Geochimica et Cosmochimica Acta;2024-03

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