Deposition velocity of H2: a new algorithm for its dependence on soil moisture and temperature

We derive an analytical expression for the deposition velocity of H2 on soil, vd, which explicitly describes the dependence of vd on the average soil moisture, and temperature, T. It is based on the solution of the equation for vertical diffusion in a two-layer soil model consisting of a dry top lay...

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Main Authors: Dieter H. Ehhalt, Franz Rohrer
Format: Article
Language:English
Published: Taylor & Francis Group 2013-02-01
Series:Tellus: Series B, Chemical and Physical Meteorology
Subjects:
Online Access:http://www.tellusb.net/index.php/tellusb/article/view/19904/pdf_1
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spelling doaj-11d58ad9b1434b0caf6bbe78e7e0398f2020-11-25T01:30:15ZengTaylor & Francis GroupTellus: Series B, Chemical and Physical Meteorology1600-08892013-02-016501910.3402/tellusb.v65i0.19904Deposition velocity of H2: a new algorithm for its dependence on soil moisture and temperatureDieter H. EhhaltFranz RohrerWe derive an analytical expression for the deposition velocity of H2 on soil, vd, which explicitly describes the dependence of vd on the average soil moisture, and temperature, T. It is based on the solution of the equation for vertical diffusion in a two-layer soil model consisting of a dry top layer of a depth, δ, free of H2 removal, and a moist deeper layer with a uniform H2 removal rate constant. The dependence of δ on is derived from modelled vertical profiles of Θw. The resulting dependence of vd on is compared to the previously used vd() derived from a single-layer model, i.e. one without a dry top layer, and with a set of vd from field measurements. The implications are discussed.http://www.tellusb.net/index.php/tellusb/article/view/19904/pdf_1atmospheric hydrogendry deposition2 layer modelsoil uptake of molecular hydrogentheoretical dry deposition velocity
collection DOAJ
language English
format Article
sources DOAJ
author Dieter H. Ehhalt
Franz Rohrer
spellingShingle Dieter H. Ehhalt
Franz Rohrer
Deposition velocity of H2: a new algorithm for its dependence on soil moisture and temperature
Tellus: Series B, Chemical and Physical Meteorology
atmospheric hydrogen
dry deposition
2 layer model
soil uptake of molecular hydrogen
theoretical dry deposition velocity
author_facet Dieter H. Ehhalt
Franz Rohrer
author_sort Dieter H. Ehhalt
title Deposition velocity of H2: a new algorithm for its dependence on soil moisture and temperature
title_short Deposition velocity of H2: a new algorithm for its dependence on soil moisture and temperature
title_full Deposition velocity of H2: a new algorithm for its dependence on soil moisture and temperature
title_fullStr Deposition velocity of H2: a new algorithm for its dependence on soil moisture and temperature
title_full_unstemmed Deposition velocity of H2: a new algorithm for its dependence on soil moisture and temperature
title_sort deposition velocity of h2: a new algorithm for its dependence on soil moisture and temperature
publisher Taylor & Francis Group
series Tellus: Series B, Chemical and Physical Meteorology
issn 1600-0889
publishDate 2013-02-01
description We derive an analytical expression for the deposition velocity of H2 on soil, vd, which explicitly describes the dependence of vd on the average soil moisture, and temperature, T. It is based on the solution of the equation for vertical diffusion in a two-layer soil model consisting of a dry top layer of a depth, δ, free of H2 removal, and a moist deeper layer with a uniform H2 removal rate constant. The dependence of δ on is derived from modelled vertical profiles of Θw. The resulting dependence of vd on is compared to the previously used vd() derived from a single-layer model, i.e. one without a dry top layer, and with a set of vd from field measurements. The implications are discussed.
topic atmospheric hydrogen
dry deposition
2 layer model
soil uptake of molecular hydrogen
theoretical dry deposition velocity
url http://www.tellusb.net/index.php/tellusb/article/view/19904/pdf_1
work_keys_str_mv AT dieterhehhalt depositionvelocityofh2anewalgorithmforitsdependenceonsoilmoistureandtemperature
AT franzrohrer depositionvelocityofh2anewalgorithmforitsdependenceonsoilmoistureandtemperature
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