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High-temperature magmatic-hydrothermal systems inferred by fumarolicfluids from Callaqui volcano, Biobio region, Chile

Fecha: 23 de julio

Autores Ckelar: Manuel Inostroza, Mauricio Aguilera, Felipe Aguilera

Revista científica: Journal of Volcanology and Geothermal Research

Abstract

The Callaqui volcano (south-central Chile) currently exhibits significant fumarolic activity, and its remains

indicate that it has had substantial eruptive activity in the past. However, there is no prior knowledge about the

fluids discharged by this volcano, which is critical for volcanic monitoring and subsequent understanding of

associated volcanic hazards. This work presents the chemical and isotopic compositions of fumarolic gases from

the Callaqui volcano (period 2017–2024) to identify the fluid source(s) and evaluate the physicochemical conditions

operating at depth. Gases were collected by direct sampling, using Giggenbach bottles and condensation

procedures. The temperature of fumarolic gases ranged from 86.3 to 215 ◦C, with a composition dominated by

water vapor, CO2, and minor amounts of acid species (SO2, HCl, HF). Helium isotope ratios (5.13 to 6.69 Ra)

suggest a significant contribution from MORB-like fluids, while δ13C-CO2 isotopes (− 10.8 to − 9.11‰ vs. V–PDB)

suggest assimilation of carbon-bearing crustal compounds. These features suggest a magmatic-hydrothermal

origin of Callaqui emissions. The magmatic source corresponds to a degassing magma chamber likely hosted

in an intermediate portion of the crust, whereas the hydrothermal system is fed mainly by meteoric waters.

Despite the apparent large size of the hydrothermal system, since the volcano is in a rainy and snowy area,

magmatically derived species still reach the surface. As a result, partial scrubbing of magma-derived species is

assumed at this volcano. Following geothermometric approaches, fumarolic gases indicate the presence of high-

temperature magmatic-hydrothermal fluids, with a vapor phase equilibrated at 375–415 ◦C, as well as super-

heated vapors up to 350 ◦C. Callaqui gases show an increase in the magmatic signal by the end of the study

period, consistent with incandescent volcanic episodes and anomalous LP earthquakes reported in late 2021 and

early 2022.

Full paper here.

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