Nitrous oxide distribution in soil and surface flux

The N2O surface emission and profile redistribution in a silty clay soil was investigated with 4 cropping systems (alfalfa, summerfallow, wheat and native grass during spring thaw. The relationship between gas concentration profiles and surface flux was also explored. There is little information in...

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Main Author: Kagan, Michael William
Format: Others
Language:en
en_US
Published: 2007
Online Access:http://hdl.handle.net/1993/2261
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-MWU.anitoba.ca-dspace#1993-22612013-01-11T13:30:06ZKagan, Michael William2007-06-01T19:18:59Z2007-06-01T19:18:59Z2000-03-01T00:00:00Zhttp://hdl.handle.net/1993/2261The N2O surface emission and profile redistribution in a silty clay soil was investigated with 4 cropping systems (alfalfa, summerfallow, wheat and native grass during spring thaw. The relationship between gas concentration profiles and surface flux was also explored. There is little information in the literature reporting the efficiency of current storage methods for N2O samples collected in the field. One of the most common methods is storage in a syringe with subsequent manual injection into a gas chromatograph for analysis. Four methods of storage are investigated: the syringe method, the vacutainer method, and autosampler both with and without a liquid diffusion barrier. Many N2O flux studies focus on the inputs into the N 2O-forming processes and the timing of significant flux events, while little has been done specifically comparing N2O movement through different soil textures. Thus a laboratory method was developed to compare the effects of soil textureon permeability and redistribution of N2O in three different soils (sandy clay, clay loam and clay. (Abstract shortened by UMI.)6832686 bytes184 bytesapplication/pdftext/plainenen_USNitrous oxide distribution in soil and surface fluxSoil ScienceM.Sc.
collection NDLTD
language en
en_US
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description The N2O surface emission and profile redistribution in a silty clay soil was investigated with 4 cropping systems (alfalfa, summerfallow, wheat and native grass during spring thaw. The relationship between gas concentration profiles and surface flux was also explored. There is little information in the literature reporting the efficiency of current storage methods for N2O samples collected in the field. One of the most common methods is storage in a syringe with subsequent manual injection into a gas chromatograph for analysis. Four methods of storage are investigated: the syringe method, the vacutainer method, and autosampler both with and without a liquid diffusion barrier. Many N2O flux studies focus on the inputs into the N 2O-forming processes and the timing of significant flux events, while little has been done specifically comparing N2O movement through different soil textures. Thus a laboratory method was developed to compare the effects of soil textureon permeability and redistribution of N2O in three different soils (sandy clay, clay loam and clay. (Abstract shortened by UMI.)
author Kagan, Michael William
spellingShingle Kagan, Michael William
Nitrous oxide distribution in soil and surface flux
author_facet Kagan, Michael William
author_sort Kagan, Michael William
title Nitrous oxide distribution in soil and surface flux
title_short Nitrous oxide distribution in soil and surface flux
title_full Nitrous oxide distribution in soil and surface flux
title_fullStr Nitrous oxide distribution in soil and surface flux
title_full_unstemmed Nitrous oxide distribution in soil and surface flux
title_sort nitrous oxide distribution in soil and surface flux
publishDate 2007
url http://hdl.handle.net/1993/2261
work_keys_str_mv AT kaganmichaelwilliam nitrousoxidedistributioninsoilandsurfaceflux
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