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Sustainable biochar to mitigate global climate change

Nature Communications · 2010 · Vol. 1(1) · pp. 56–56
Dominic WoolfJames E. AmonetteF. Alayne Street‐PerrottJohannes LehmannStephen Joseph

Abstract

Production of biochar (the carbon (C)-rich solid formed by pyrolysis of biomass) and its storage in soils have been suggested as a means of abating climate change by sequestering carbon, while simultaneously providing energy and increasing crop yields. Substantial uncertainties exist, however, regarding the impact, capacity and sustainability of biochar at the global level. In this paper we estimate the maximum sustainable technical potential of biochar to mitigate climate change. Annual net emissions of carbon dioxide (CO(2)), methane and nitrous oxide could be reduced by a maximum of 1.8 Pg CO(2)-C equivalent (CO(2)-C(e)) per year (12% of current anthropogenic CO(2)-C(e) emissions; 1 Pg=1 Gt), and total net emissions over the course of a century by 130 Pg CO(2)-C(e), without endangering food security, habitat or soil conservation. Biochar has a larger climate-change mitigation potential than combustion of the same sustainably procured biomass for bioenergy, except when fertile soils are amended while coal is the fuel being offset.

Global Energy and Sustainability ResearchAtmospheric and Environmental Gas DynamicsEnvironmental Impact and SustainabilityBiocharEnvironmental scienceSlash-and-charClimate change mitigationBiomass (ecology)Climate changeGreenhouse gasCarbon sequestrationSoil waterBioenergy

MeSH terms

Carbon DioxideCharcoalMethaneNitrous OxideClimate Change

Funding

  • U.S. Department of Energy
  • U.S. Department of Agriculture
  • Battelle
  • New York State Energy Research and Development Authority
  • Economic and Social Research Council
  • Natural Environment Research Council
  • Biological and Environmental Research
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