Experimental determination and theoretical framework of kinetic fractionation at the water vapour - ice interface at low temperature

Climate reconstruction from ice cores rely on good knowledge of equilibrium and kinetic isotopic fractionation at each step of the water cycle. One of the strongest limitations when interpreting water isotopes in remote Antarctic ice cores is the formulation of the isotopic fractionation at solid co...

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Main Author: celiaeschst
Format: Other/Unknown Material
Language:unknown
Published: AFEQ english 2015
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Online Access:http://afeqeng.hypotheses.org/439
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spelling ftopenedition:oai:hypotheses.org:afeqeng/439 2023-05-15T13:49:29+02:00 Experimental determination and theoretical framework of kinetic fractionation at the water vapour - ice interface at low temperature celiaeschst 2015-11-24T15:11:34Z http://afeqeng.hypotheses.org/439 unknown AFEQ english http://afeqeng.hypotheses.org/439 post 2015 ftopenedition 2017-03-09T06:58:41Z Climate reconstruction from ice cores rely on good knowledge of equilibrium and kinetic isotopic fractionation at each step of the water cycle. One of the strongest limitations when interpreting water isotopes in remote Antarctic ice cores is the formulation of the isotopic fractionation at solid condensation (vapour to ice). The uncertainties associated with the coefficients for equilibrium fractionation and water vapour diffusion in air make the formulation of isotopic fractionation at soli. Other/Unknown Material Antarc* Antarctic OpenEdition Antarctic
institution Open Polar
collection OpenEdition
op_collection_id ftopenedition
language unknown
description Climate reconstruction from ice cores rely on good knowledge of equilibrium and kinetic isotopic fractionation at each step of the water cycle. One of the strongest limitations when interpreting water isotopes in remote Antarctic ice cores is the formulation of the isotopic fractionation at solid condensation (vapour to ice). The uncertainties associated with the coefficients for equilibrium fractionation and water vapour diffusion in air make the formulation of isotopic fractionation at soli.
format Other/Unknown Material
author celiaeschst
spellingShingle celiaeschst
Experimental determination and theoretical framework of kinetic fractionation at the water vapour - ice interface at low temperature
author_facet celiaeschst
author_sort celiaeschst
title Experimental determination and theoretical framework of kinetic fractionation at the water vapour - ice interface at low temperature
title_short Experimental determination and theoretical framework of kinetic fractionation at the water vapour - ice interface at low temperature
title_full Experimental determination and theoretical framework of kinetic fractionation at the water vapour - ice interface at low temperature
title_fullStr Experimental determination and theoretical framework of kinetic fractionation at the water vapour - ice interface at low temperature
title_full_unstemmed Experimental determination and theoretical framework of kinetic fractionation at the water vapour - ice interface at low temperature
title_sort experimental determination and theoretical framework of kinetic fractionation at the water vapour - ice interface at low temperature
publisher AFEQ english
publishDate 2015
url http://afeqeng.hypotheses.org/439
geographic Antarctic
geographic_facet Antarctic
genre Antarc*
Antarctic
genre_facet Antarc*
Antarctic
op_relation http://afeqeng.hypotheses.org/439
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