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Hiroki Ikawa

Datos Biográficos

ID6822479
NOMBREHiroki Ikawa
NOMBRESHiroki
APELLIDOIkawa
FIRMAIKAWA H
AFILIACIONESNational Institute for Agro-Environmental Sciences
ORCID0000-0002-4984-8067
VERIFICADOSí
TOTAL DE OBRAS3
TOTAL DE CITAS0
TOTAL COMO AUTOR3
TOTAL COMO EDITOR0
PRIMER AÑO DE PUBLICACIÓN2020
AÑO MÁS RECIENTE DE PUBLICACIÓN2022
ÍNDICE H0
  • Daytime warming during early grain filling offsets the CO 2 fertilization effect in rice

    Open Access•Guoyou Zhang, Kazuhiro Ujiie et al.•ARTICLE•Environmental Research Letters•2022

    Increasing concentrations of atmospheric CO 2 are projected to have positive effects on crop photosynthesis and yield (CO 2 fertilization effect, CFE). High-temperature events, such as heatwaves, during sensitive periods can have significant negative impacts on crop yield and quality; however, the combined effects of elevated CO 2 (EC) and short-period elevated temperature (ET) have not been determined in the open field. Here, we show a strong ne…

  • Soil respiration strongly offsets carbon uptake in Alaska and Northwest Canada

    Open Access•Jennifer D Watts, Susan M Natali et al.•ARTICLE•Environmental Research Letters•2021

    Soil respiration (i.e. from soils and roots) provides one of the largest global fluxes of carbon dioxide (CO 2 ) to the atmosphere and is likely to increase with warming, yet the magnitude of soil respiration from rapidly thawing Arctic-boreal regions is not well understood. To address this knowledge gap, we first compiled a new CO 2 flux database for permafrost-affected tundra and boreal ecosystems in Alaska and Northwest Canada. We then used th…

  • The biophysical climate mitigation potential of boreal peatlands during the growing season

    Open Access•Manuel Helbig, J M Waddington et al.•ARTICLE•Environmental Research Letters•2020

    Peatlands and forests cover large areas of the boreal biome and are critical for global climate regulation. They also regulate regional climate through heat and water vapour exchange with the atmosphere. Understanding how land-atmosphere interactions in peatlands differ from forests may therefore be crucial for modelling boreal climate system dynamics and for assessing climate benefits of peatland conservation and restoration. To assess the bioph…

Sin obras prominentes en esta página.

  • The biophysical climate mitigation potential of boreal peatlands during the growing season

    Open Access•Manuel Helbig, J M Waddington et al.•ARTICLE•Environmental Research Letters•2020

    Peatlands and forests cover large areas of the boreal biome and are critical for global climate regulation. They also regulate regional climate through heat and water vapour exchange with the atmosphere. Understanding how land-atmosphere interactions in peatlands differ from forests may therefore be crucial for modelling boreal climate system dynamics and for assessing climate benefits of peatland conservation and restoration. To assess the bioph…

  • Soil respiration strongly offsets carbon uptake in Alaska and Northwest Canada

    Open Access•Jennifer D Watts, Susan M Natali et al.•ARTICLE•Environmental Research Letters•2021

    Soil respiration (i.e. from soils and roots) provides one of the largest global fluxes of carbon dioxide (CO 2 ) to the atmosphere and is likely to increase with warming, yet the magnitude of soil respiration from rapidly thawing Arctic-boreal regions is not well understood. To address this knowledge gap, we first compiled a new CO 2 flux database for permafrost-affected tundra and boreal ecosystems in Alaska and Northwest Canada. We then used th…

  • Daytime warming during early grain filling offsets the CO 2 fertilization effect in rice

    Open Access•Guoyou Zhang, Kazuhiro Ujiie et al.•ARTICLE•Environmental Research Letters•2022

    Increasing concentrations of atmospheric CO 2 are projected to have positive effects on crop photosynthesis and yield (CO 2 fertilization effect, CFE). High-temperature events, such as heatwaves, during sensitive periods can have significant negative impacts on crop yield and quality; however, the combined effects of elevated CO 2 (EC) and short-period elevated temperature (ET) have not been determined in the open field. Here, we show a strong ne…

Atmospheric sciences (3 obras) · Environmental Science (3 obras) · Biology (2 obras) · Boreal (2 obras) · Climate change and permafrost (2 obras) · Ecology (2 obras) · Ecosystem (2 obras) · Forestry (2 obras) · Geography (2 obras) · Geology (2 obras)

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