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Extra info for Biochar for environmental management: science and technology
1950) ‘The interpretation of diffuse X–ray diagrams of carbon’, Acta Crystallography, vol 3, pp107–121 Franklin, R. E. (1951) ‘Crystallite growth in graphitizing and non-graphitizing carbons’, Proceedings of the Royal Society of London, Series A, Mathematical and Physical Sciences, vol 209, pp196–218 Gaunt, J. and Lehmann, J. , Guggenberger, G. and Zech,W. (2001) ‘The Terra Preta phenomenon: A model for sustainable agriculture in the humid tropics’, Naturwissenschaften, vol 88, pp37–41 Harris, P.
This seems to be the case and is supported by scientific evidence (see Chapter 11). Several approaches have been taken to provide first estimates of the large-scale potential of biochar sequestration to reduce atmospheric CO2 (Lehmann et al, 2006; Lehmann, 2007b; Laird, 2008), which will need to be vetted against economic (see Chapters 19 and 20) and ecological constraints and extended to include a full emission balance (see Chapter 18). Such emission balances require a comparison to a baseline scenario, showing what emissions have been reduced by changing to a system that utilizes biochar sequestration.
2004) ‘Stabilization wedges: Solving the climate problem for the next 50 years with current technologies’, Science, vol 305, pp968–972 Peacocke, C. and Joseph, S. (undated) ‘Notes on terminology and technology in thermal conversion prepared for the International Biochar web site’, www. org/images/ Terminology_and_Technology_final_vCP_sj. doc, accessed 15 August 2008 Petersen, J. , Neves, E. and Heckenberger, M. J. (2001) ‘Gift from the past:Terra Preta and prehistoric Amerindian occupation in Amazonia’, in C.