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Icelandic volcano's toxic gas is triple that of Europe's industry

Date:
September 24, 2015
Source:
University of Edinburgh
Summary:
A huge volcanic eruption in Iceland emitted on average three times as much of a toxic gas as all European industry combined, a study has revealed. Discharge of lava from the eruption at Bárðarbunga volcano released a huge mass -- up to 120,000 tonnes per day -- of sulphur dioxide gas, which can cause acid rain and respiratory problems.
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A huge volcanic eruption in Iceland emitted on average three times as much of a toxic gas as all European industry combined, a study has revealed.

Discharge of lava from the eruption at Bárðarbunga volcano released a huge mass -- up to 120,000 tonnes per day -- of sulphur dioxide gas, which can cause acid rain and respiratory problems.

The eruption last year was the biggest in Iceland for more than 200 years. It released a river of lava across northern Iceland, and lasted for six months.

Researchers hope that their study will aid understanding of how such eruptions can affect air quality in the UK.

A team of European scientists, including from the Universities of Leeds and Edinburgh and the Met Office, used data from satellite sensors to map sulphur dioxide pollution from the eruption. These were reproduced by computer simulations of the spreading gas cloud.

As well as being given off by volcanoes, sulphur dioxide is also produced by burning fossil fuels and industrial processes such as smelting. Human-made sulphur dioxide production has been falling since 1990, and was recorded at 12,000 tonnes per day in 2010.

The study, published in the Journal of Geophysical Research, was supported by The Natural Environment Research Council and the Royal Society of Edinburgh, amongst others.

Dr John Stevenson, of the University of Edinburgh's School of GeoSciences, who took part in the study, said: "This eruption produced lava instead of ash, and so it didn't impact on flights -- but it did affect air quality. These results help scientists predict where pollution from future eruptions will spread."

Dr Anja Schmidt from the School of Earth and Environment at the University of Leeds, who led the study, said: "The eruption discharged lava at a rate of more than 200 cubic metres per second, which is equivalent to filling five Olympic-sized swimming pools in a minute. Six months later, when the eruption ended, it had produced enough lava to cover an area the size of Manhattan. In the study, we were concerned with the quantity of sulphur dioxide emissions, with numbers that are equally astonishing: In the beginning, the eruption emitted about eight times more sulphur dioxide per day than is emitted from all human-made sources in Europe per day."


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Materials provided by University of Edinburgh. Note: Content may be edited for style and length.


Journal Reference:

  1. Anja Schmidt, Susan Leadbetter, Nicolas Theys, Elisa Carboni, Claire S. Witham, John A. Stevenson, Cathryn E. Birch, Thorvaldur Thordarson, Steven Turnock, Sara Barsotti, Lin Delaney, Wuhu Feng, Roy G. Grainger, Matthew C. Hort, Ármann Höskuldsson, Iolanda Ialongo, Evgenia Ilyinskaya, Thorsteinn Jóhannsson, Patrick Kenny, Tamsin A. Mather, Nigel A. D. Richards, Janet Shepherd. Satellite detection, long-range transport, and air quality impacts of volcanic sulfur dioxide from the 2014-2015 flood lava eruption at Bárðarbunga (Iceland). Journal of Geophysical Research: Atmospheres, 2015; DOI: 10.1002/2015JD023638

Cite This Page:

University of Edinburgh. "Icelandic volcano's toxic gas is triple that of Europe's industry." ScienceDaily. ScienceDaily, 24 September 2015. <www.sciencedaily.com/releases/2015/09/150924104112.htm>.
University of Edinburgh. (2015, September 24). Icelandic volcano's toxic gas is triple that of Europe's industry. ScienceDaily. Retrieved December 21, 2024 from www.sciencedaily.com/releases/2015/09/150924104112.htm
University of Edinburgh. "Icelandic volcano's toxic gas is triple that of Europe's industry." ScienceDaily. www.sciencedaily.com/releases/2015/09/150924104112.htm (accessed December 21, 2024).

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