Contribution of land use practices to GHGs in the Canadian Prairies crop sector.

The global crop sector is estimated to contribute about 10.4% of global GHGs annually. The Canadian crop sector is assessed as adding about 6.5% to total national emissions. These estimates over report the impact of farming as they ignore the complex interaction of cropping with the environment and...

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Main Authors: Lana Awada, Cecil Nagy, Peter W B Phillips
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2021-01-01
Series:PLoS ONE
Online Access:https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0260946&type=printable
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author Lana Awada
Cecil Nagy
Peter W B Phillips
author_facet Lana Awada
Cecil Nagy
Peter W B Phillips
author_sort Lana Awada
collection DOAJ
description The global crop sector is estimated to contribute about 10.4% of global GHGs annually. The Canadian crop sector is assessed as adding about 6.5% to total national emissions. These estimates over report the impact of farming as they ignore the complex interaction of cropping with the environment and the role land use, land use change and forestry (LULUCF) play in sequestering carbon. This study quantifies the contribution of land use to GHG emissions and removals in the Canadian Prairies crop sector between 1985 and 2016. The modeling effort explores how different farming practices (i.e., conventional tillage (CT), minimum tillage (MT), zero tillage (ZT), summerfallow, crop rotations, and residue retention) and input usage rates (i.e., fertilizer and fuel) affect GHG emissions in different soil climate zones and provinces in the Prairies region. The adoption of sustainable practices led to an 80% decline in GHG emissions in the crop sector between 1985 and 2016. Since 2005, the baseline for Canada's Paris commitment, sectoral emissions dropped 53%, more than is required to meet the 2030 target. Most promising, the crop sector was a net GHG sink between 2013 and 2016 in Alberta and between 2006 and 2016 in Saskatchewan. As positive as these developments have been, more can be done by directing research to identify options for reducing GHGs in Manitoba (which made only minimal improvements as farmers there faced conditions requiring continuous use of conventional tillage practices), to explore better nitrogen management (a major continuing source of GHG from cropping) and by searching for low carbon transport options.
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spelling doaj.art-25df423f120c44649e942f8a8c6c870a2025-03-04T05:32:13ZengPublic Library of Science (PLoS)PLoS ONE1932-62032021-01-011612e026094610.1371/journal.pone.0260946Contribution of land use practices to GHGs in the Canadian Prairies crop sector.Lana AwadaCecil NagyPeter W B PhillipsThe global crop sector is estimated to contribute about 10.4% of global GHGs annually. The Canadian crop sector is assessed as adding about 6.5% to total national emissions. These estimates over report the impact of farming as they ignore the complex interaction of cropping with the environment and the role land use, land use change and forestry (LULUCF) play in sequestering carbon. This study quantifies the contribution of land use to GHG emissions and removals in the Canadian Prairies crop sector between 1985 and 2016. The modeling effort explores how different farming practices (i.e., conventional tillage (CT), minimum tillage (MT), zero tillage (ZT), summerfallow, crop rotations, and residue retention) and input usage rates (i.e., fertilizer and fuel) affect GHG emissions in different soil climate zones and provinces in the Prairies region. The adoption of sustainable practices led to an 80% decline in GHG emissions in the crop sector between 1985 and 2016. Since 2005, the baseline for Canada's Paris commitment, sectoral emissions dropped 53%, more than is required to meet the 2030 target. Most promising, the crop sector was a net GHG sink between 2013 and 2016 in Alberta and between 2006 and 2016 in Saskatchewan. As positive as these developments have been, more can be done by directing research to identify options for reducing GHGs in Manitoba (which made only minimal improvements as farmers there faced conditions requiring continuous use of conventional tillage practices), to explore better nitrogen management (a major continuing source of GHG from cropping) and by searching for low carbon transport options.https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0260946&type=printable
spellingShingle Lana Awada
Cecil Nagy
Peter W B Phillips
Contribution of land use practices to GHGs in the Canadian Prairies crop sector.
PLoS ONE
title Contribution of land use practices to GHGs in the Canadian Prairies crop sector.
title_full Contribution of land use practices to GHGs in the Canadian Prairies crop sector.
title_fullStr Contribution of land use practices to GHGs in the Canadian Prairies crop sector.
title_full_unstemmed Contribution of land use practices to GHGs in the Canadian Prairies crop sector.
title_short Contribution of land use practices to GHGs in the Canadian Prairies crop sector.
title_sort contribution of land use practices to ghgs in the canadian prairies crop sector
url https://journals.plos.org/plosone/article/file?id=10.1371/journal.pone.0260946&type=printable
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