Effects of Charcoal Production on Livelihood and Environment in Sapele Local Government Area, Delta State, Nigeria
Yıl 2025,
Cilt: 22 Sayı: 3, 623 - 635, 29.09.2025
Theophilus Miebi Gbıgbı
,
Oghenekevwe Abigail Ohwo
,
Elite Pearl Okpoto
Öz
Economic hardship, poverty, unemployment, and the escalating cost of oil have driven Nigerians to explore diverse avenues for sourcing domestic cooking energy to support their livelihoods. Trade in forest products have significantly influenced livelihood of market participants. This paper examines the many-sided impacts of charcoal production on livelihoods and the environment in Sapele Local Government, Delta State, Nigeria. The study involved 100 respondents and used descriptive statistics and multiple regression analyses. The findings showed that charcoal producers are predominantly male-dominated, with most respondents being married and having secondary education. They produce 21-40 bags of charcoal and have 10-19 years of production experience. The total variable cost of charcoal production amounted to ₦394.736.50, with a total fixed cost of ₦16.983.00. Total cost of production equaled ₦449.596.00, resulting in a gross margin of ₦54.859.5 and a net income of ₦37.876.50, leading to a return on investment of ₦9.20. The overall model fit was determined to be 59.3% (R2 = 0.593, p < 0.05), indicating that the variables could accurately predict 59.3% of income derived from charcoal production. Marital status, production size, and experience were identified as factors influencing profitability. Charcoal production was found to have positive impacts on livelihoods, including savings for future, paying children's school fees, and asset acquisition and access to health services. However, it had negative environmental consequences, such as tree felling, increased erosion, and elevated temperatures. Constraints identified included timber quality and availability. The study recommends policy interventions to address issue of timber quality to enhance charcoal production and stresses the importance of establishing woodlots to ensure sustainable development and mitigate wood scarcity.
Etik Beyan
This study was prepared under the permission numbered AEDSU/090823/0020, dated 09/08/23, from the Ethics Committee of Department of Agricultural Economics, Delta State University, Abraka, Delta State, Nigeria.
Teşekkür
The authors appreciate respondents for the time taken to provide information for this work.
Kaynakça
-
Açıkgöz, T. (2023). Agricultural production connectedness and networks in Türkiye. Journal of Tekirdag Agricultural Faculty, 20(4):799-810. https://doi.org/10.33462/jotaf.1166050
-
Adino, A., Aemro, W. and Tessema, A. (2020). Analysis of economic efficiency in charcoal production in Northwest Ethiopia: A Cobb-Douglas production frontier approach. Trees, Forests, and People, 2(2020): 100020.
-
Agunleye, O. O., Kolawole, A. O., Adesakin, M. F. and Arowolaju, O. O. (2020). Economic and environmental implications of charcoal production in Kogi State, Nigeria. World Rural Observation, 12(4): 47-55. https://doi.org/10.7537/marswro120420.06
-
Ahmad, R. K., Sulaiman, S. A., Yusup, S., Dol, S. S., Inayat, M. and Umar, H. A. (2022). Exploring the potential of coconut shell biomass for charcoal production. Ain Shams Engineering Journal, 13(1): 101499.
-
Bamwesigye, D., Kupec, P., Chekuimo, G., Pavlis, J., Asamoah, O., Samuel, A., Darkwah, S. A. and Hlaváˇcková, P. (2020). Charcoal and wood biomass utilization in Uganda: The socioeconomic and environmental dynamics and implications. Sustainability, 12: 8337.
-
Bede-Ojimadu, O. and Orisakwe, O. E. (2020). Exposure to wood smoke and associated health effects in Sub-Saharan Africa: A Systematic Review. Annual Global Health, 86: 1–27.
-
Billig, M., Badwan, A., Ankona, E. and Anker, Y. (2022). Charcoal production in Palestinian villages-The paradox of resistance to innovation driving rural development. Journal of Rural Studies, 89: 25-34.
-
Downward, G. S., van der Zwaag, H. P. and Simons, L. (2018). Occupational exposure to indoor air pollution among bakery workers in Ethiopia: A comparison of electric and biomass cookstoves. Environmental Pollution, 233: 690–697.
-
Drewello, H. (2022). Towards a theory of local energy transition. Sustainability, 14(18): 11119. https://doi.org/10.3390/su141811119
-
FAO (2016). Forestry for A Low-Carbon Future: Integrating Forests and Wood Products in Climate Change Strategies. Food and Agriculture Organızation of the United Nations Publishers, Rome, Italy.
-
Gbigbi, T. M. (2017). Are there road blocks to access micro-credit from selected microfinance banks in delta state, Nigeria? Implications for small scale farmers sustainability! Journal of Food Industry, 1(1):1-16.
-
Gbigbi, T. M. (2021). Technical efficiency and profitability of cassava production in Delta State: A stochastic frontier production function analysis. Journal of Tekirdag Agricultural Faculty,18(1): 21-31.
-
Gbigbi, T. M. (2022). Agricultural bank credit intervention and the application of big push theory to beneficiaries: Evidence from Nigeria. Journal of Tekirdag Agricultural Faculty, 19(2): 237-247.
-
Gbigbi, T. M. and Achoja, F. O. (2019). Cooperative financing and the growth of catfish aquaculture value chain in Nigeria. Croatian Journal of Fisheries, 77(4): 263-270.
-
Gbigbi, T.M. and Osun, T. (2014). Technical efficiency and economic returns in artisanal fishery in the Niger Delta, Nigeria. International Journal of Fisheries and Aquatic Studies, 2(1):184-188.
-
Ibe, K. K. and Kollur, S. P. (2024). Challenges towards the adoption and use of sustainable cooking methods: a comprehensive review. Sustainable Environment, 10(1): 2362509
-
Kariuki, D. W. (2021). Socio-economic determinants of household continued use of solid biofuels (fuelwood and charcoal) for cooking purposes in sub-Saharan Africa-Kenya’s situation. East African Journal of Environment and Natural Resources, 3(1): 49-68.
-
Kumar, S., Lohan, S. K. and Parihar, D. S. (2023). Biomass Energy from Agriculture, Conversion Techniques and Use. In: Handbook of Energy Management in Agriculture. Ed(s): Rakshit, A., Biswas, A., Sarkar, D., Meena, V. S. and Datta, R., Springer Nature, Singapore Pte Ltd., Singapore. https://doi.org/10.1007/978-981-19-7736-7_10-1
-
Nyarko, I., Nwaogu, C., Miroslav, H. and Peseu, P. O. (2021). Socio-economic analysis of wood charcoal production as a significant output of forest bioeconomy in Africa. Forests, 12(5): 568. https://doi.org/10.3390/f12050568
-
Ohwo, O. A. and Nzekwe-Ebonwu N. F. (2021). Impacts of rural community on the forest estate in Ugbolu, Oshimili North Local Government Area, Delta State, Nigeria. Journal of Forest, 8(1): 45-60.
-
Ohwo, O. A. and Ogoha, E. (2017). Contributions of sawn-wood trade to livelihood sustenance in Sapele Local Government Area of Delta State, Nigeria. Journal of Agriculture and Food Environment, 4(1):37-46.
-
Ohwo, O. A., Gbigbi, T. M. and Daje, O. G. (2021). Marketing of selected non wood forest products in Asaba, Delta State. Kastamonu University Journal of Forestry Faculty, 21(1): 74-89.
-
Ohwo, O. A., Ikpoza, E. A. and Emmanuel. O. U. (2020). Economic analysis of sawmill waste and its implication on sustainable forest management in Delta State. International Journal of Agriculture and Rural Development, 23(2): 5113-5120.
-
Olasimbo, O. J. and Olusola, A. (2018). Socio economic impact of charcoal production. Tropical Plant Research, 5(1): 46-52.
-
Oyeniran, I. W. and Isola, W. A. (2023). Patterns and determinants of household cooking fuel choice in Nigeria. Energy, 278: 127753.
-
Sadiya, F. J. (2022). Assessing the level of awareness of the impact of charcoal on forest degradation in Mpigi District. (PhD. Thesis) Kampala International University, Kampala, Uganda.
-
Sari Gedik, D. and Yilmaz, E. (2023). Determination of the factors affecting the level of benefit from young farmer project support in rural development: Tekirdag sample, Türkiye. Journal of Tekirdag Agricultural Faculty, 20(2): 418-429. https://doi.org/10.33462/jotaf.1165409
-
Udali, A., Andrighetto, N., Grigolato, S. and Gatto, P. (2021). Economic impacts of forest storms—taking stock of after-vaia situation of local roundwood markets in Northeastern Italy. Forests, 12(4): 414:1-19. https://doi.org/10.3390/f12040414
-
Ullah, S., Noor, R. S., Abid, A., Mendako, R. K., Waqas, M. M., Shah, A. N. and Tian, G. (2021). Socio-economic impacts of livelihood from fuelwood and timber consumption on the sustainability of forest environment: Evidence from Basho valley, Baltistan, Pakistan. Agriculture, 11(7): 596.
-
Yiran, G. A. B., Ablo, A. D. and Asem, F. E. (2020). Urbanization and domestic energy trends: Analysis of household energy consumption patterns in relation to land-use change in peri-urban Accra, Ghana. Land Use Policy, 99: 105047.
Effects of Charcoal Production on Livelihood and Environment in Sapele Local Government Area, Delta State, Nigeria
Yıl 2025,
Cilt: 22 Sayı: 3, 623 - 635, 29.09.2025
Theophilus Miebi Gbıgbı
,
Oghenekevwe Abigail Ohwo
,
Elite Pearl Okpoto
Öz
Economic hardship, poverty, unemployment, and the escalating cost of oil have driven Nigerians to explore diverse avenues for sourcing domestic cooking energy to support their livelihoods. Trade in forest products have significantly influenced livelihood of market participants. This paper examines the many-sided impacts of charcoal production on livelihoods and the environment in Sapele Local Government, Delta State, Nigeria. The study involved 100 respondents and used descriptive statistics and multiple regression analyses. The findings showed that charcoal producers are predominantly male-dominated, with most respondents being married and having secondary education. They produce 21-40 bags of charcoal and have 10-19 years of production experience. The total variable cost of charcoal production amounted to ₦394.736.50, with a total fixed cost of ₦16.983.00. Total cost of production equaled ₦449.596.00, resulting in a gross margin of ₦54.859.5 and a net income of ₦37.876.50, leading to a return on investment of ₦9.20. The overall model fit was determined to be 59.3% (R2 = 0.593, p < 0.05), indicating that the variables could accurately predict 59.3% of income derived from charcoal production. Marital status, production size, and experience were identified as factors influencing profitability. Charcoal production was found to have positive impacts on livelihoods, including savings for future, paying children's school fees, and asset acquisition and access to health services. However, it had negative environmental consequences, such as tree felling, increased erosion, and elevated temperatures. Constraints identified included timber quality and availability. The study recommends policy interventions to address issue of timber quality to enhance charcoal production and stresses the importance of establishing woodlots to ensure sustainable development and mitigate wood scarcity.
Etik Beyan
This study was prepared under the permission numbered AEDSU/090823/0020, dated 09/08/23, from the Ethics Committee of Department of Agricultural Economics, Delta State University, Abraka, Delta State, Nigeria.
Teşekkür
The authors appreciate respondents for the time taken to provide information for this work.
Kaynakça
-
Açıkgöz, T. (2023). Agricultural production connectedness and networks in Türkiye. Journal of Tekirdag Agricultural Faculty, 20(4):799-810. https://doi.org/10.33462/jotaf.1166050
-
Adino, A., Aemro, W. and Tessema, A. (2020). Analysis of economic efficiency in charcoal production in Northwest Ethiopia: A Cobb-Douglas production frontier approach. Trees, Forests, and People, 2(2020): 100020.
-
Agunleye, O. O., Kolawole, A. O., Adesakin, M. F. and Arowolaju, O. O. (2020). Economic and environmental implications of charcoal production in Kogi State, Nigeria. World Rural Observation, 12(4): 47-55. https://doi.org/10.7537/marswro120420.06
-
Ahmad, R. K., Sulaiman, S. A., Yusup, S., Dol, S. S., Inayat, M. and Umar, H. A. (2022). Exploring the potential of coconut shell biomass for charcoal production. Ain Shams Engineering Journal, 13(1): 101499.
-
Bamwesigye, D., Kupec, P., Chekuimo, G., Pavlis, J., Asamoah, O., Samuel, A., Darkwah, S. A. and Hlaváˇcková, P. (2020). Charcoal and wood biomass utilization in Uganda: The socioeconomic and environmental dynamics and implications. Sustainability, 12: 8337.
-
Bede-Ojimadu, O. and Orisakwe, O. E. (2020). Exposure to wood smoke and associated health effects in Sub-Saharan Africa: A Systematic Review. Annual Global Health, 86: 1–27.
-
Billig, M., Badwan, A., Ankona, E. and Anker, Y. (2022). Charcoal production in Palestinian villages-The paradox of resistance to innovation driving rural development. Journal of Rural Studies, 89: 25-34.
-
Downward, G. S., van der Zwaag, H. P. and Simons, L. (2018). Occupational exposure to indoor air pollution among bakery workers in Ethiopia: A comparison of electric and biomass cookstoves. Environmental Pollution, 233: 690–697.
-
Drewello, H. (2022). Towards a theory of local energy transition. Sustainability, 14(18): 11119. https://doi.org/10.3390/su141811119
-
FAO (2016). Forestry for A Low-Carbon Future: Integrating Forests and Wood Products in Climate Change Strategies. Food and Agriculture Organızation of the United Nations Publishers, Rome, Italy.
-
Gbigbi, T. M. (2017). Are there road blocks to access micro-credit from selected microfinance banks in delta state, Nigeria? Implications for small scale farmers sustainability! Journal of Food Industry, 1(1):1-16.
-
Gbigbi, T. M. (2021). Technical efficiency and profitability of cassava production in Delta State: A stochastic frontier production function analysis. Journal of Tekirdag Agricultural Faculty,18(1): 21-31.
-
Gbigbi, T. M. (2022). Agricultural bank credit intervention and the application of big push theory to beneficiaries: Evidence from Nigeria. Journal of Tekirdag Agricultural Faculty, 19(2): 237-247.
-
Gbigbi, T. M. and Achoja, F. O. (2019). Cooperative financing and the growth of catfish aquaculture value chain in Nigeria. Croatian Journal of Fisheries, 77(4): 263-270.
-
Gbigbi, T.M. and Osun, T. (2014). Technical efficiency and economic returns in artisanal fishery in the Niger Delta, Nigeria. International Journal of Fisheries and Aquatic Studies, 2(1):184-188.
-
Ibe, K. K. and Kollur, S. P. (2024). Challenges towards the adoption and use of sustainable cooking methods: a comprehensive review. Sustainable Environment, 10(1): 2362509
-
Kariuki, D. W. (2021). Socio-economic determinants of household continued use of solid biofuels (fuelwood and charcoal) for cooking purposes in sub-Saharan Africa-Kenya’s situation. East African Journal of Environment and Natural Resources, 3(1): 49-68.
-
Kumar, S., Lohan, S. K. and Parihar, D. S. (2023). Biomass Energy from Agriculture, Conversion Techniques and Use. In: Handbook of Energy Management in Agriculture. Ed(s): Rakshit, A., Biswas, A., Sarkar, D., Meena, V. S. and Datta, R., Springer Nature, Singapore Pte Ltd., Singapore. https://doi.org/10.1007/978-981-19-7736-7_10-1
-
Nyarko, I., Nwaogu, C., Miroslav, H. and Peseu, P. O. (2021). Socio-economic analysis of wood charcoal production as a significant output of forest bioeconomy in Africa. Forests, 12(5): 568. https://doi.org/10.3390/f12050568
-
Ohwo, O. A. and Nzekwe-Ebonwu N. F. (2021). Impacts of rural community on the forest estate in Ugbolu, Oshimili North Local Government Area, Delta State, Nigeria. Journal of Forest, 8(1): 45-60.
-
Ohwo, O. A. and Ogoha, E. (2017). Contributions of sawn-wood trade to livelihood sustenance in Sapele Local Government Area of Delta State, Nigeria. Journal of Agriculture and Food Environment, 4(1):37-46.
-
Ohwo, O. A., Gbigbi, T. M. and Daje, O. G. (2021). Marketing of selected non wood forest products in Asaba, Delta State. Kastamonu University Journal of Forestry Faculty, 21(1): 74-89.
-
Ohwo, O. A., Ikpoza, E. A. and Emmanuel. O. U. (2020). Economic analysis of sawmill waste and its implication on sustainable forest management in Delta State. International Journal of Agriculture and Rural Development, 23(2): 5113-5120.
-
Olasimbo, O. J. and Olusola, A. (2018). Socio economic impact of charcoal production. Tropical Plant Research, 5(1): 46-52.
-
Oyeniran, I. W. and Isola, W. A. (2023). Patterns and determinants of household cooking fuel choice in Nigeria. Energy, 278: 127753.
-
Sadiya, F. J. (2022). Assessing the level of awareness of the impact of charcoal on forest degradation in Mpigi District. (PhD. Thesis) Kampala International University, Kampala, Uganda.
-
Sari Gedik, D. and Yilmaz, E. (2023). Determination of the factors affecting the level of benefit from young farmer project support in rural development: Tekirdag sample, Türkiye. Journal of Tekirdag Agricultural Faculty, 20(2): 418-429. https://doi.org/10.33462/jotaf.1165409
-
Udali, A., Andrighetto, N., Grigolato, S. and Gatto, P. (2021). Economic impacts of forest storms—taking stock of after-vaia situation of local roundwood markets in Northeastern Italy. Forests, 12(4): 414:1-19. https://doi.org/10.3390/f12040414
-
Ullah, S., Noor, R. S., Abid, A., Mendako, R. K., Waqas, M. M., Shah, A. N. and Tian, G. (2021). Socio-economic impacts of livelihood from fuelwood and timber consumption on the sustainability of forest environment: Evidence from Basho valley, Baltistan, Pakistan. Agriculture, 11(7): 596.
-
Yiran, G. A. B., Ablo, A. D. and Asem, F. E. (2020). Urbanization and domestic energy trends: Analysis of household energy consumption patterns in relation to land-use change in peri-urban Accra, Ghana. Land Use Policy, 99: 105047.