The 1997 El Niño impact on clouds, water vapour, aerosols and reactive trace gases in the troposphere, as measured by the Global Ozone Monitoring Experiment

The El Niño event of 1997/1998 caused dry conditions over the Indonesian area that were followed by large scale forest and savannah fires over Kalimantan, Sumatra, Java, and parts of Irian Jaya. Biomass burning was most intense between August and October 1997, and large amounts of ozone pre...

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Main Authors: D. Loyola, P. Valks, T. Ruppert, A. Richter, T. Wagner, W. Thomas, R. van der A, R. Meisner
Format: Article
Language:English
Published: Copernicus Publications 2006-01-01
Series:Advances in Geosciences
Online Access:http://www.adv-geosci.net/6/267/2006/adgeo-6-267-2006.pdf
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spelling doaj-4ad167502c224595b42cdca3e5230df42020-11-24T23:32:22ZengCopernicus PublicationsAdvances in Geosciences1680-73401680-73592006-01-016267272The 1997 El Niño impact on clouds, water vapour, aerosols and reactive trace gases in the troposphere, as measured by the Global Ozone Monitoring ExperimentD. LoyolaP. ValksT. RuppertA. RichterT. WagnerW. ThomasR. van der AR. MeisnerThe El Niño event of 1997/1998 caused dry conditions over the Indonesian area that were followed by large scale forest and savannah fires over Kalimantan, Sumatra, Java, and parts of Irian Jaya. Biomass burning was most intense between August and October 1997, and large amounts of ozone precursors, such as nitrogen oxides, carbon monoxide and hydrocarbons were emitted into the atmosphere. In this work, we use satellite measurements from the Global Ozone Monitoring Experiment (GOME) sensor to study the teleconnections between the El Niño event of 1997 and the Indonesian fires, clouds, water vapour, aerosols and reactive trace gases (nitrogen dioxide, formaldehyde and ozone) in the troposphere.http://www.adv-geosci.net/6/267/2006/adgeo-6-267-2006.pdf
collection DOAJ
language English
format Article
sources DOAJ
author D. Loyola
P. Valks
T. Ruppert
A. Richter
T. Wagner
W. Thomas
R. van der A
R. Meisner
spellingShingle D. Loyola
P. Valks
T. Ruppert
A. Richter
T. Wagner
W. Thomas
R. van der A
R. Meisner
The 1997 El Niño impact on clouds, water vapour, aerosols and reactive trace gases in the troposphere, as measured by the Global Ozone Monitoring Experiment
Advances in Geosciences
author_facet D. Loyola
P. Valks
T. Ruppert
A. Richter
T. Wagner
W. Thomas
R. van der A
R. Meisner
author_sort D. Loyola
title The 1997 El Niño impact on clouds, water vapour, aerosols and reactive trace gases in the troposphere, as measured by the Global Ozone Monitoring Experiment
title_short The 1997 El Niño impact on clouds, water vapour, aerosols and reactive trace gases in the troposphere, as measured by the Global Ozone Monitoring Experiment
title_full The 1997 El Niño impact on clouds, water vapour, aerosols and reactive trace gases in the troposphere, as measured by the Global Ozone Monitoring Experiment
title_fullStr The 1997 El Niño impact on clouds, water vapour, aerosols and reactive trace gases in the troposphere, as measured by the Global Ozone Monitoring Experiment
title_full_unstemmed The 1997 El Niño impact on clouds, water vapour, aerosols and reactive trace gases in the troposphere, as measured by the Global Ozone Monitoring Experiment
title_sort 1997 el niño impact on clouds, water vapour, aerosols and reactive trace gases in the troposphere, as measured by the global ozone monitoring experiment
publisher Copernicus Publications
series Advances in Geosciences
issn 1680-7340
1680-7359
publishDate 2006-01-01
description The El Niño event of 1997/1998 caused dry conditions over the Indonesian area that were followed by large scale forest and savannah fires over Kalimantan, Sumatra, Java, and parts of Irian Jaya. Biomass burning was most intense between August and October 1997, and large amounts of ozone precursors, such as nitrogen oxides, carbon monoxide and hydrocarbons were emitted into the atmosphere. In this work, we use satellite measurements from the Global Ozone Monitoring Experiment (GOME) sensor to study the teleconnections between the El Niño event of 1997 and the Indonesian fires, clouds, water vapour, aerosols and reactive trace gases (nitrogen dioxide, formaldehyde and ozone) in the troposphere.
url http://www.adv-geosci.net/6/267/2006/adgeo-6-267-2006.pdf
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