Does Tree Management Affect Biomass and Soil Carbon Stocks of Acacia mangium Willd. Stands in Kerala, India?

  • Kunhamu T
  • Kumar B
  • Samuel S
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Abstract

He biophysical, technical, economic, and practical potential of agroforestry to sequester C for the West African Sahel, East Africa, and Southern Africa. Agroforestry systems (AFS) such as parklands, live fences, and homegardens had substantial C stocks, but only accumulated 0.20.8 Mg C ha1 woodlots (2.25.8 Mg C ha1 year1 year1 Abstract Agroforestry can raise carbon (C) stocks of agricultural systems, and such increases can potentially be sold as CO2 emission offsets. We assembled infor- . Rotational and possibly improved fallows in Southern C in most systems would be less than $30 ha1 Africa sequestered C relatively faster, but only during the fallow phases. Data on soil C are scarce because most studies only compared soil C under different land uses, which provides limited (and sometimes unreliable) information on sequestra- tion rates. Comparing results from different studies is difficult, because no standard protocols exist. Few studies have evaluated the economic potential of agroforestry to sequester C. However, at prices of $10 per Mg CO2 year1 -eq or less, the value of stored , which is a small fraction of annual farm revenue and it needs to cover all transaction measurement reporting and verification costs. Practical constraints to C sequestration (CS) such as land tenure, policy issues, and the opportunity costs incurred by possibly foregoing more profitable land management options have not been fully explored for Africa. For evaluating the challenges and opportunities involved in CS by smallholder farmers, comprehensive studies are needed that explore all C and non-C costs and benefits of agroforestry activities

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Kunhamu, T. K., Kumar, B. M., & Samuel, S. (2011). Does Tree Management Affect Biomass and Soil Carbon Stocks of Acacia mangium Willd. Stands in Kerala, India? (pp. 217–228). https://doi.org/10.1007/978-94-007-1630-8_12

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