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Jan Willem van Groenigen

Biographic Data

ID6822166
NAMEJan Willem van Groenigen
GIVEN NAMESJan Willem
FAMILY NAMEvan Groenigen
SIGNATUREVAN GROENIGEN J W
AFFILIATIONSWageningen University & Research
ORCID0000-0001-9637-0601
VERIFIEDYes
TOTAL WORKS3
TOTAL CITATIONS0
AUTHOR COUNT3
EDITOR COUNT0
FIRST PUBLICATION YEAR2017
LATEST PUBLICATION YEAR2022
H-INDEX0
  • Synthesizing the evidence of nitrous oxide mitigation practices in agroecosystems

    Open Access•Diego Grados, Klaus Butterbach‐Bahl et al.•ARTICLE•Environmental Research Letters•2022

    Nitrous oxide (N 2 O) emissions from agricultural soils are the main source of atmospheric N 2 O, a potent greenhouse gas and key ozone-depleting substance. Several agricultural practices with potential to mitigate N 2 O emissions have been tested worldwide. However, to guide policymaking for reducing N 2 O emissions from agricultural soils, it is necessary to better understand the overall performance and variability of mitigation practices and i…

  • Soil quality – A critical review

    Open Access•Else K Bünemann, Giulia Bongiorno et al.•ARTICLE•Soil Biology and Biochemistry•2018

    Sampling and analysis or visual examination of soil to assess its status and use potential is widely practiced from plot to national scales. However, the choice of relevant soil attributes and interpretation of measurements are not straightforward, because of the complexity and site-specificity of soils, legacy effects of previous land use, and trade-offs between ecosystem services. Here we review soil quality and related concepts, in terms of de…

  • 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…

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  • 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…

  • Soil quality – A critical review

    Open Access•Else K Bünemann, Giulia Bongiorno et al.•ARTICLE•Soil Biology and Biochemistry•2018

    Sampling and analysis or visual examination of soil to assess its status and use potential is widely practiced from plot to national scales. However, the choice of relevant soil attributes and interpretation of measurements are not straightforward, because of the complexity and site-specificity of soils, legacy effects of previous land use, and trade-offs between ecosystem services. Here we review soil quality and related concepts, in terms of de…

  • Synthesizing the evidence of nitrous oxide mitigation practices in agroecosystems

    Open Access•Diego Grados, Klaus Butterbach‐Bahl et al.•ARTICLE•Environmental Research Letters•2022

    Nitrous oxide (N 2 O) emissions from agricultural soils are the main source of atmospheric N 2 O, a potent greenhouse gas and key ozone-depleting substance. Several agricultural practices with potential to mitigate N 2 O emissions have been tested worldwide. However, to guide policymaking for reducing N 2 O emissions from agricultural soils, it is necessary to better understand the overall performance and variability of mitigation practices and i…

Environmental Science (3 works) · Agriculture (2 works) · Chemistry (2 works) · Ecology (2 works) · Soil Carbon and Nitrogen Dynamics (2 works) · Soil water (2 works) · Agroecosystem (1 works) · Agroforestry (1 works) · Agronomy (1 works) · Arable land (1 works)

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