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Bruce A Hungate

Datos Biográficos

ID6818569
NOMBREBruce A Hungate
NOMBRESBruce A
APELLIDOHungate
FIRMAHUNGATE B A
AFILIACIONESNorthern Arizona University
ORCID0000-0002-7337-1887
VERIFICADOSí
TOTAL DE OBRAS3
TOTAL DE CITAS0
TOTAL COMO AUTOR3
TOTAL COMO EDITOR0
PRIMER AÑO DE PUBLICACIÓN2008
AÑO MÁS RECIENTE DE PUBLICACIÓN2017
ÍNDICE H0
  • Biochar boosts tropical but not temperate crop yields

    Open Access•Simon Jeffery, Diego Ábalos et al.•ARTICLE•Environmental Research Letters•2017

    Applying biochar to soil is thought to have multiple benefits, from helping mitigate climate change [1, 2], to managing waste [3] to conserving soil [4]. Biochar is also widely assumed to boost crop yield [5, 6], but there is controversy regarding the extent and cause of any yield benefit [7]. Here we use a global-scale meta-analysis to show that biochar has, on average, no effect on crop yield in temperate latitudes, yet elicits a 25% average in…

  • A global synthesis reveals biodiversity loss as a major driver of ecosystem change

    Open Access•David U Hooper, E Carol Adair et al.•ARTICLE•Nature•2012

  • Protecting climate with forests

    Open Access•Robert B Jackson, James T Randerson et al.•ARTICLE•Environmental Research Letters•2008

    Policies for climate mitigation on land rarely acknowledge biophysical factors, such as reflectivity, evaporation, and surface roughness. Yet such factors can alter temperatures much more than carbon sequestration does, and often in a conflicting way. We outline a framework for examining biophysical factors in mitigation policies and provide some best-practice recommendations based on that framework. Tropical projects—avoided deforestation, fores…

Sin obras prominentes en esta página.

  • Protecting climate with forests

    Open Access•Robert B Jackson, James T Randerson et al.•ARTICLE•Environmental Research Letters•2008

    Policies for climate mitigation on land rarely acknowledge biophysical factors, such as reflectivity, evaporation, and surface roughness. Yet such factors can alter temperatures much more than carbon sequestration does, and often in a conflicting way. We outline a framework for examining biophysical factors in mitigation policies and provide some best-practice recommendations based on that framework. Tropical projects—avoided deforestation, fores…

  • A global synthesis reveals biodiversity loss as a major driver of ecosystem change

    Open Access•David U Hooper, E Carol Adair et al.•ARTICLE•Nature•2012

  • Biochar boosts tropical but not temperate crop yields

    Open Access•Simon Jeffery, Diego Ábalos et al.•ARTICLE•Environmental Research Letters•2017

    Applying biochar to soil is thought to have multiple benefits, from helping mitigate climate change [1, 2], to managing waste [3] to conserving soil [4]. Biochar is also widely assumed to boost crop yield [5, 6], but there is controversy regarding the extent and cause of any yield benefit [7]. Here we use a global-scale meta-analysis to show that biochar has, on average, no effect on crop yield in temperate latitudes, yet elicits a 25% average in…

Environmental Science (3 obras) · Agroforestry (2 obras) · Biology (2 obras) · Climate change (2 obras) · Ecology (2 obras) · Environmental resource management (2 obras) · Forest Management and Policy (2 obras) · Natural resource economics (2 obras) · Afforestation (1 obras) · Agriculture (1 obras)

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