Assessment of Forestry Residues Potential for Off-Grid Electrification in the Republic of Benin (West Africa)

Authors

  • Rodrigue Ogoulonou Balagueman Unité de Recherche en Biologie forestière et Modélisation Ecologique (UR-BioME), Laboratoire d’Ecologie, de Botanique et de Biologie végétale (LEB), Université de Parakou, Parakou, Bénin Author
  • Eméline Sêssi Pélagie Assèdé Department of Plant and Soil Sciences, Faculty of Natural and Agricultural Sciences, University of Pretoria, South Africa Author
  • Bill Mahougnon Agassounon Unité de Recherche en Biologie forestière et Modélisation Ecologique (UR-BioME), Laboratoire d’Ecologie, de Botanique et de Biologie végétale (LEB), Université de Parakou, Parakou, Bénin Author
  • Ismail Moumouni-Moussa Laboratoire de Recherche sur l'Innovation pour le Développement Agricole (LRIDA), Université de Parakou, Parakou, Bénin Author
  • Bernard Effah Akenten Appiah-Menka University of Skills Training and Entrepreneurial Development, Faculty of Agriculture Education, Department of Crop & Soil Sciences Education, Ghana Author
  • Samadori Sorotori Honoré Biaou Unité de Recherche en Biologie forestière et Modélisation Ecologique (UR-BioME), Laboratoire d’Ecologie, de Botanique et de Biologie végétale (LEB), Université de Parakou, Parakou, Bénin Author

Keywords:

wood residues, biomass-electricity, off-grid power, sustainability

Abstract

This study assessed the potential of forestry residues for off-grid electrification in the Republic of Benin while accounting for the spatial  variation of residues potential and their use impact on local biodiversity. We found significant spatial variation of residues potential, with  a much higher surplus residues in the north (3,599.05 tons/year) compared to the south (457.79 tons/year). This discrepancy might result  from the spatial difference in geographical variables across the two regions. A maximum electricity potential of 100,259,786 kWh can be  generated from the theoretical potential of residues which falls short of satisfying the estimated national off-grid electricity demand of 443,916,975 kWh. The research also highlighted the positive influence of wood processing technology and diversity of processed wood species on residues potential. The two variables may be targeted by policymakers to tailor actions for enhancing local transition towards renewable energy. Using scenarios-based projections, our study prompt the conclusion that forestry residues can be used sustainably  for off-grid electrification with a minimal impact on biodiversity. Combining the surplus residues from wood processing industries with   energy plantations may optimize forestry residues mobilization for off-grid electrification.

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Published

2023-10-30