Related Experiment Video
Updated: Sep 20, 2025

Assessment of Methane and Nitrous Oxide Fluxes from Paddy Field by Means of Static Closed Chambers Maintaining Plants Within Headspace
Published on: September 6, 2018
Modest volcanic SO2 emissions from the Indonesian archipelago
Philipson Bani1,2, Clive Oppenheimer3, Vitchko Tsanev3
1Laboratoire Magmas et Volcans, Université Blaise Pascal-CNRS-IRD, OPGC, 63170, Aubière, France. philipson.bani@ird.fr.
Indonesian volcanoes emit a modest amount of sulfur dioxide (SO2) annually, despite their historical significance. This study quantifies emissions and explores the underlying magmatic processes controlling sulfur release.
Area of Science:
- Geochemistry
- Volcanology
- Environmental Science
Background:
- Indonesia has the most active volcanoes globally, with some known for significant historical eruptions.
- Previous research lacked sufficient data on sulfur dioxide (SO2) emissions from Indonesian volcanoes.
- The potential for substantial global volcanic SO2 contributions from Indonesia was hypothesized but unevaluated.
Purpose of the Study:
- To quantify current SO2 emissions from Indonesian volcanoes.
- To investigate the geodynamic, petrologic, and magmatic factors influencing sulfur transfer to the atmosphere.
- To reconcile the paradox of Indonesia's volcanic activity and its SO2 emission levels.
Main Methods:
- Conducted new gas measurements at Indonesian volcanoes.
- Calculated combined SO2 output from continuous emissions.
- Estimated SO2 yield from explosive eruptions.
- Compared Indonesian emission data with global volcanic SO2 fluxes.
- Analyzed magmatic and hydrothermal processes influencing sulfur degassing.
Main Results:
- The total SO2 inventory for Indonesian volcanoes is estimated at 1.27–1.69 Tg/yr.
- This total SO2 output is comparatively modest, with some individual volcanoes like Etna exhibiting higher sustained fluxes.
- Sulfur-rich eruptions are linked to the long-term accumulation of volatiles in magma reservoirs.
Conclusions:
- Despite hosting numerous active volcanoes, Indonesia's overall SO2 emissions are not a dominant factor in global volcanic sulfur output.
- The study highlights the importance of understanding magmatic and hydrothermal systems in controlling volcanic gas release.
- Long-term volatile accumulation in magma reservoirs is a key factor in sulfur-rich explosive eruptions.
More Related Videos
Related Concept Videos
The Sulfur Cycle
Sulfur Assimilation
The Carbon Cycle
Global Climate Change
Arrhenius Plots
The Arrhenius equation can be used...
Emission Spectra

