Garibaldi

Photo of this volcano
Country Canada
Volcanic Region Garibaldi Volcanic Arc
Landform | Volc Type Composite | Stratovolcano
Last Known Eruption 8060 BCE
Coordinates 49.85°N, 123°W
Elevation 2,678 m (8,786 ft)
Volcano Number 320200
Google Earth icon Google Earth Placemark with Features
Citation icon Cite Volcano Profile

Latest Weekly Volcanic Activity Report

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Latest Bulletin Report

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Weekly Volcanic Activity Reports

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Bulletin Reports

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General Information

Eruptive History

There is data available for 1 confirmed eruptive period.

8060 BCE ± 500 years Confirmed Eruption (Explosive / Effusive) VEI: 3 (?)

Episode 1 | Eruption (Explosive / Effusive) SE flank (Opal Cone)
8060 BCE ± 500 years - Unknown Evidence from Isotopic: 14C (uncalibrated)

List of 4 Events for Episode 1 at SE flank (Opal Cone)

Start Date End Date Event Type Event Remarks
   - - - -    - - - - Explosion
   - - - -    - - - - Lava flow
   - - - -    - - - - Cinder Cone
8060 BCE ± 500 years    - - - - VEI (Explosivity Index)

Synonyms and Subfeatures

This compilation of synonyms and subsidiary features may not be comprehensive. Features are organized into four major categories: Cones, Craters, Domes, and Thermal Features. Synonyms of features appear indented below the primary name. In some cases additional feature type, elevation, or location details are provided.

Photo Gallery

Thumbnail Photo (see caption)Mount Garibaldi, rising above Garibaldi Lake to the north, is a largely Pleistocene stratovolcano with a summit lava dome complex. The volcano was partially constructed over the Cordilleran ice sheet and contains many ice-contact features. Its final eruptions during the early Holocene included lava flows that mantled the western landside scarp and a massive lava flow from Opal Cone, a SE flank vent, that traveled 20 km to the south and west.

Photo by Lee Siebert, 1983 (Smithsonian Institution).
Thumbnail Photo (see caption)The Pleistocene Mount Garibaldi was partially constructed over the Cordilleran ice sheet. Its western face, seen from near Alice Lake, exposes the interior structure of the volcano and resulted from repeated landslides from the steep slope remaining from when the continental ice sheet retreated. The summit peak to the right is Atwell Peak and the rounded peak to the left is Dalton Dome, the source of some of Garibaldi's most recent eruptions.

Photo by Lee Siebert, 1976 (Smithsonian Institution).
Thumbnail Photo (see caption)Mount Garibaldi rises above Howe Sound, 80 km N of Vancouver. The steep-sided peak on the right is the Squamish Chief, a glacially eroded peak of the Coast Range batholith. Garibaldi was constructed during the Pleistocene, partially overriding the Cordilleran ice sheet. Retreat of the ice sheet left the western side of the volcano unsupported, causing many landslides into the Cheakamus River valley.

Photo by Lee Siebert, 1976 (Smithsonian Institution).
Thumbnail Photo (see caption)The Table, the flat-topped ridge in the foreground in front of Mount Garibaldi, is the southernmost vent of the Garibaldi Lake volcanic field. This is a tuya that formed when lava flows filled a pit melted through the continental ice sheet. A series of stacked horizontal lava flows filling the pit formed The Table.

Photo by Lee Siebert, 1983 (Smithsonian Institution).
Thumbnail Photo (see caption)Mount Garibaldi is to the left in the background. In the foreground are glacially eroded granitic rocks of the Coast Range Batholith that extend south to the Mount Seymour area in the foreground, immediately north of the city of Vancouver.

Photo by Lee Siebert (Smithsonian Institution).

Smithsonian Sample Collections Database

The following 2 samples associated with this volcano can be found in the Smithsonian's NMNH Department of Mineral Sciences collections, and may be availble for research (contact the Rock and Ore Collections Manager). Catalog number links will open a window with more information.

Catalog Number Sample Description Lava Source Collection Date
NMNH 116136-1 Alkalic Basalt -- --
NMNH 116136-2 Hypersthene Andesite -- --

External Sites