Data

N2O emissions from winter wheat crop, Kingsthorpe, Queensland, Australia 2009.

Queensland University of Technology
Scheer, Clemens
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ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=info:doi10.4225/09/586f24b91a10b&rft.title=N2O emissions from winter wheat crop, Kingsthorpe, Queensland, Australia 2009.&rft.identifier=10.4225/09/586f24b91a10b&rft.publisher=Queensland University of Technology&rft.description=Soil N2O fluxes from winter wheat were monitored over one season with an automated measuring and analysis system allowing for a high temporal resolution. Emissions were measured from different irrigation intesities according to the following experimental set up: 3 different irrigation treatments: Fully-irrigated (I-50%): The crop will be irrigated when 50% of the plant available water capacity (PAWC) is depleted; Deficit-irrigated 1 (I-60%): The crop will be irrigated when 60% of the PAWC is depleted; Deficit-irrigated 3 (I-85%): The crop will be irrigated when 85% of the PAWC is depleted. N2O emissions were measured with the closed chamber method with 3 replicates per treatmet for the period from June to October 2009&rft.creator=Scheer, Clemens &rft.date=2010&rft.edition=1&rft.relation=http://eprints.qut.edu.au/37657/&rft.coverage=northlimit=-27.394544; southlimit=-27.566365; westlimit=151.677089; eastLimit=151.958097; projection=WGS84&rft.coverage=Kingsthorpe, Queensland, Australia&rft_rights=© Queensland University of Technology, 2010. &rft_subject=winter wheat&rft_subject=irrigatation intensity&rft_subject=EARTH SCIENCES&rft_subject=GEOCHEMISTRY&rft_subject=ATMOSPHERIC SCIENCES&rft_subject=N2O&rft_subject=vertosol&rft.type=dataset&rft.language=English Access the data

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© Queensland University of Technology, 2010.

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Contact Information

Postal Address:
Dr Clemens Scheer
Ph: +61 7 3138 7636

clemens.scheer@qut.edu.au

Full description

Soil N2O fluxes from winter wheat were monitored over one season with an automated measuring and analysis system allowing for a high temporal resolution. Emissions were measured from different irrigation intesities according to the following experimental set up: 3 different irrigation treatments: Fully-irrigated (I-50%): The crop will be irrigated when 50% of the plant available water capacity (PAWC) is depleted; Deficit-irrigated 1 (I-60%): The crop will be irrigated when 60% of the PAWC is depleted; Deficit-irrigated 3 (I-85%): The crop will be irrigated when 85% of the PAWC is depleted. N2O emissions were measured with the closed chamber method with 3 replicates per treatmet for the period from June to October 2009

Data time period: 06 2009 to 31 10 2009

This dataset is part of a larger collection

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151.9581,-27.39454 151.9581,-27.56637 151.67709,-27.56637 151.67709,-27.39454 151.9581,-27.39454

151.817593,-27.4804545

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