Pre-eruptive volatiles and magma storage depth for the 2018 eruption at Mount Veniaminof, Alaska
Mount Veniaminof is a frequently active, open-system arc volcano on the Alaska Peninsula, part of the Alaska-Aleutian arc. Mount Veniaminof's September–December 2018 eruption began with small lava flows and culminated in a larger explosive event in November that produced a 450 km long continuous ash plume—one of the volcano's most significant ash-producing events in recently observed eruptions. A temporally constrained tephra record was sampled after the eruption. We present volatile element concentrations (H, C, S, Cl, F) from a total of 65 olivine-hosted melt inclusions (MIs) across six tephra layers to assess potential variations in magma chemistry throughout the course of the eruption. No variation is observed in volatile concentrations across the tephra layers, and there is no correlation between volatile concentrations and the explosivity of eruptive pulses leading to the November explosive event. H2O concentrations within MI suggest moderately hydrous magmas up to 2.4 wt% H2O and a large range in CO2 concentrations in the MI (14–2,180 ppm) from Secondary Ion Mass Spectrometry and vapor bubble reconstructions. H2O and CO2 measurements correspond to entrapment pressures up to 400 MPa (entrapment depths ∼15 km), but with modal storage around 100–200 MPa. H2O contents can be reconciled with previous microlite number density estimates using a polybaric storage history.
Citation Information
| Publication Year | 2026 |
|---|---|
| Title | Pre-eruptive volatiles and magma storage depth for the 2018 eruption at Mount Veniaminof, Alaska |
| DOI | 10.1029/2025GC012518 |
| Authors | Ellyn G. Huggins, Phillipp Ruprecht, Matthew W. Loewen, M. Gavrilenko, R.J. Bodnar, M. Harlaux |
| Publication Type | Article |
| Publication Subtype | Journal Article |
| Series Title | Geochemistry, Geophysics, Geosystems |
| Index ID | 70282756 |
| Record Source | USGS Publications Warehouse |
| USGS Organization | Volcano Science Center |