Volcano profile · Tenerife, Canary Islands

Teide

Spain’s highest mountain and the summit of a much larger volcanic system — a post-caldera complex of phonolitic domes, flank vents, lava flows and persistent fumaroles.

Latest activity and alert levelCheck the live status hub

Teide–Pico Viejo is monitored continuously for seismic, deformation and gas changes. View the Volcoholics volcano directory for the latest verified official position from Spain’s IGN.

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Tenerife’s volcanic summit

Teide is the peak of a system much larger than the cone

Pico del Teide rises to 3,718 metres, making it the highest mountain in Spain and the dominant summit of Tenerife.

But Teide is only part of the story. The Teide–Pico Viejo complex grew after formation of the great Las Cañadas depression, alongside domes, lava fields and numerous younger vents across the central part of the island.

The result is a volcanic landscape built in stages rather than a single cone. Basaltic magma, evolved phonolitic magma, flank fissures and central vents have all contributed to Tenerife’s recent volcanic history.

3,718 mSummit elevation
Teide–Pico ViejoVolcanic complex
Las CañadasCaldera setting
IGNOfficial monitoring
Pico del Teide rising above the Las Cañadas volcanic landscape on Tenerife
Teide quick facts
Highest point
3,718 metres
Island
Tenerife
Main complex
Teide–Pico Viejo
Distinctive magma
Phonolite
Official agency
IGN Spain
Activity and behaviour

A quiet-looking summit above an active volcanic system

Evergreen profile
How Teide behaves

Teide’s recent geological history includes summit and flank volcanism, lava flows, domes and explosive phonolitic eruptions. Today, fumaroles at the summit remain a visible reminder that heat and gas continue to move through the system.

Check the latest verified status →
Summit featureFumarolesWarm gas vents persist around the summit crater
Evolved magmaPhonoliteViscous silica-rich magma can produce domes and explosive eruptions
Flank activityFissure eruptionsHistorical vents have opened away from Pico del Teide itself
Effusive activityLava flowsDark young flows cover parts of the caldera floor and outer slopes
Official sourceIGNSpain’s official volcanic monitoring network
The volcano is bigger than the summit

Future activity does not have to come from Pico del Teide

Tenerife’s recent eruptions show that volcanic activity can open along rift zones and flank vents as well as within the central Teide–Pico Viejo complex. The hazard is therefore an island-scale volcanic-system problem, not simply a crater problem.

Flank ventsNew eruptive fissures can open away from the summit.
AshExplosive evolved magma can produce widespread ashfall.
Lava flowsBasaltic eruptions may feed long-lived lava flows.
Official guidanceOperational information belongs to IGN and civil-protection authorities.
Volcanic architecture

Teide and Pico Viejo rose inside Las Cañadas

The central complex consists of Pico del Teide and neighbouring Pico Viejo, both constructed within the much larger Las Cañadas volcanic depression. Younger lava flows, domes and vents partly fill the caldera floor.

Pico Viejo is not a minor side cone: it is a major volcanic edifice in its own right, with a broad summit crater and an eruption history closely tied to the younger evolution of central Tenerife.

Las CañadasA large older volcanic depression surrounding the central complex.
Pico del TeideThe highest point of Tenerife and Spain.
Pico ViejoA major companion stratovolcano with a broad summit crater.
Post-caldera ventsDomes and lava flows occupy the caldera floor and surrounding rifts.
Simplified cross-section of Teide and Pico Viejo within Las Cañadas caldera
Teide–Pico Viejo within the wider Las Cañadas structure, simplified.
How Teide works

Basaltic supply can feed a much more evolved central system

Tenerife can erupt relatively fluid basaltic magma from rift zones, but the Teide–Pico Viejo central system has also produced evolved phonolitic magma. Longer storage and differentiation can make this magma more viscous and potentially more explosive.

That contrast is one reason Tenerife’s volcanic behaviour is so varied: cinder cones and lava flows can coexist in the geological record with domes and major explosive deposits.

Simplified cross-section showing central and flank magma pathways beneath Teide
Monitoring

Watching seismicity, deformation and gas across Tenerife

Spain’s Instituto Geográfico Nacional operates the official volcanic surveillance network in the Canary Islands. Monitoring combines seismic, geodetic and geochemical observations across Tenerife rather than focusing only on the summit.

SeismicityEarthquake networks track fracturing and fluid movement beneath the island.
Ground deformationGNSS and related methods detect inflation or other movement.
Volcanic gasesGas observations provide information about degassing and deep processes.
Summit observationsFumaroles and temperature changes provide local context.
Satellite dataRemote sensing helps detect deformation and thermal change.
Island-wide networkRift zones and peripheral areas matter as well as Teide itself.
A volcano through time

Teide and Tenerife eruption timeline

~2,000 years ago

Montaña Blanca explosive eruption

A major sub-Plinian phonolitic eruption east of Teide produced widespread pumice and is one of the most important young explosive events in the central complex.

1492

Possible activity seen by Columbus

Christopher Columbus reported seeing fire on Tenerife while passing the island; whether this represents an eruption remains uncertain.

1704–05

Flank eruptions in Tenerife’s rift system

Multiple vents opened during a prolonged eruptive period, reinforcing that historical volcanism is not confined to Teide’s summit.

Historic eruption1706

Trevejo eruption destroys Garachico harbour

Lava from a flank eruption reached the north coast and severely damaged Garachico, demonstrating the island-scale impact of basaltic lava flows.

1798

Chahorra / Narices del Teide eruption

A prolonged eruption on the flank of Pico Viejo produced lava flows within the Las Cañadas area.

Latest Tenerife eruption1909

Chinyero eruption

Tenerife’s most recent eruption opened on the north-west rift zone and produced basaltic lava flows for around ten days.

Hazards

The hazards that matter most around Teide

Lava flows

Basaltic flank eruptions can send lava across roads, land and settlements.

Ashfall

Explosive phonolitic activity could spread ash well beyond the central caldera.

Pyroclastic density currents

Large explosive eruptions can generate dangerous hot ash-and-gas currents.

Ballistic ejecta

Blocks and bombs are important near active vents.

Volcanic gas

Fumarolic gases can accumulate locally around summit vents.

New fissures

Future activity may open away from the central summit along Tenerife’s rift zones.

Myths versus reality

Teide is more than the mountain tourists see

Myth“If Teide erupts, lava will come from the summit.”

Historical Tenerife eruptions show that new vents can open along flank and rift systems.

Myth“No eruption since 1909 means Tenerife is extinct.”

Tenerife belongs to an active volcanic archipelago and remains monitored continuously.

Myth“Teide is just a basaltic shield volcano.”

The central Teide–Pico Viejo complex has produced evolved phonolitic magma as well as lava flows.

Volcoholics insight

Standing on Pico del Teide means standing on the youngest summit of a much older volcanic story

The view from 3,718 metres makes Teide feel like the whole volcano. It is not. Pico Viejo, Las Cañadas, the rift zones, lava fields and domes all belong to the same evolving island system — one built by repeated episodes that have shifted where and how Tenerife erupts.

Questions answered

Teide explained

Where can I find Teide’s latest official status?

Use the Volcoholics volcano directory for the latest verified summary, then follow Spain’s Instituto Geográfico Nacional for authoritative monitoring information.

How high is Pico del Teide?

Pico del Teide reaches 3,718 metres above sea level, making it the highest mountain in Spain.

Is Pico Viejo part of Teide?

Pico Viejo and Pico del Teide form the young Teide–Pico Viejo volcanic complex within Las Cañadas.

When did Tenerife last erupt?

Tenerife’s most recent historical eruption was Chinyero in 1909 on the north-west rift zone.

Who monitors Teide?

Spain’s Instituto Geográfico Nacional operates the official volcanic surveillance network for the Canary Islands.

Official science, made readable

Built from the agencies studying Teide

This evergreen profile uses Spain’s Instituto Geográfico Nacional and Smithsonian Global Volcanism Program material as its factual basis. Permanent geology, eruptive behaviour and history are separated from today’s operational status.

Instituto Geográfico Nacional (IGN)Official Canary Islands volcanic monitoring, seismicity, deformation and geological information.
Smithsonian Global Volcanism ProgramLong-term eruption chronology, Teide–Pico Viejo morphology and geological reference data.