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Short-term effect of feedstock and pyrolysis temperature on biochar characteristics, soil and crop response in temperature soils

  • Victoria Nelissen
  • , Greet Ruysschaert
  • , Dorette Müller-Stöver
  • , Samuel Bodé
  • , Jason Cook
  • , Frederik Ronsse
  • , Simon Shackley
  • , Pascal Boeckx
  • , Henrik Hauggaard-Nielsen

    Research output: Contribution to journalA2: International peer reviewed article (not A1-type)peer-review

    Abstract

    At present, there is limited understanding of how biochar application to soil could be beneficial to crop growth in temperate regions and which biochar types are most suitable. Biochar’s (two feedstocks: willow, pine; three pyrolysis temperatures: 450°C, 550°C, 650°C) effect on nitrogen (N) availability, N use efficiency and crop yield was studied in northwestern European soils using a combined approach of process-Based and agronomic experiments. Biochar labile carbon (C) fractions were determined and a phytotoxicity test, sorption experiment, N incubation experiment and two pot trials were conducted. Generally, biochar caused decreased soil NO3−availability and N use efficiency, and reduced biomass yields compared to a control soil. Soil NO3−concentrations were more reduced in the willow compared to the pine biochar treatments and the reduction increased with increasing pyrolysis temperatures, which was also reflected in the biomass yields. Woody biochar types can cause short-term reductions in biomass production due to reduced N availability. This effect is biochar feedstock and pyrolysis temperature dependent. Reduced mineral N availability was not caused by labile biochar C nor electrostatic NH4+/NO3−sorption. Hence, the additionof fresh biocharmight in some cases require increased fertilizer N application to avoid short-term crop growth retardation.
    Original languageEnglish
    JournalAgronomy
    Volume4
    Pages (from-to)52-73
    ISSN2073-4395
    DOIs
    Publication statusPublished - 2014

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