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ASSESSMENT OF BIOGAS QUALITY ACROSS RURAL HOUSEHOLD BIOGAS PLANTS IN CAMEROON
Abstract
The development and efficient use of renewable energy technologies is essential to sustain access to clean energy for all. In developing countries, it is necessary to improve the efficiency of biogas production to contribute to the decarbonization of the energy supply. This study aims to assess the quality of biogas produced from household biogas plants in rural areas of Cameroon. Through snowball sampling, data were collected from forty-five (45) functional biogas plants across the five agroecological zones of the country. Biogas was analyzed using the portable BIOGAS 5000 gas analyzer and compared for different designs of biogas plants and geographic locations. The results show on average that the floating drum biogas plant produced biogas with a higher methane content (57.90% v/v) than the floating drum design (55.30% v/v). The mean carbon dioxide content is 38.80% v/v for the fixed dome and 30.25% v/v for the floating drum biogas plant. Statistical tests indicate that the location of the biogas plant affected the methane content of the biogas produced. The feedstocks and design of biogas plants varied with the different agroecological zones of the country, and majorly accounted for the different qualities of biogas. The quality of biogas in Cameroon is within the reported range (average) of biogas quality in developing countries. However, it is still essential to promote the production of biogas with optimal quality in the country.
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References17
Hepher, B. (2010). Energy pathways. In Nutrition of Pond Fishes. DOI: 10.1017/cbo9780511735455.005
Zachmann, G., Holz, F., Roth, A., McWilliams, B., Sogalla, R., Meissner, F., & Kemfert, C. (2021). Decarbonisation of energy. Determining a robust mix of carriers for action-neutral EU.
Blyth, L. (2022). COVID-19 slows progress toward universal energy access. Press release, World Bank. Available online on: https://www.worldbank.org/en/news(accessed on 2 October 2022).
Ketuama, C. T., Mazancova, J., & Roubik, H. (2022). Impact of market constraints on the development of small-scale biogas technology in Sub-Saharan Africa: a systematic review. Environ Sci Pollut Res 29, 65978-65992. doi.org/DOI: 10.1007/s11356- 022-22262-y. 022-22262-y
Roubik, H., Mazancova, J., Le Dinh, P., Dinh Van, D., & Banout, J. (2018). Biogas Quality across Small-Scale Biogas Plants: A Case of Central Vietnam. Energies, 11(7), 1794. DOI: 10.3390/en11071794
Seadi, T., Rutz, D., Prassl, H., Kottner, M., Finsterwalder, T., Volk, S., Reviewers, R. J., Sioulas, K., & Kulisic, B. (2008). Biogas: Training Handbook.
Deublein D., & Steinhauser, A. (2008). Biogas from Waste and Renewable Resources. An Introduction, Weinheim: WILEY-VCH Verlag GmbH & Co. KGaA. ISBN 978-3-527-31841-4. DOI: 10.1002/9783527621705
Cilliers, P. F., Grobler, W. G. S., & Rautenbach, P. J. (1997). Biogas user's manual. Inst. for Agricultural Engineering.
Abbasi, T., Abbasi, S. A., & Taussef, S. M. (2012). Biogas Energy. SpringerBriefs in Environmental Science. DOI: 10.1007/978-1-4614-1040-9
Bhajani, S. (2022). Review: Factors Affecting Biogas Production. International Journal for Research in Applied Science and Engineering Technology, 10(2), 79-88. DOI: 10.22214/ijraset.2022.40192
Nsair, A., Cinar, O. S., Alassali, A., Qdais, A. H., & Kuchta, K. (2020). Operational Parameters of Biogas Plants: A Review and Evaluation Study. Energies, 13(15), 3761. DOI: 10.3390/en13153761
Heegde, F. T., & Sonder K. (2007). Domestic biogas in Africa; a first assessment of the potential and need. Biogas for better life, an African initiative. SNV Netherlands.
Ndongsok D., Mandeng, T. I. S., Azemtsa, H., Tankeu, C., & Ruppel, O. C., (2018). The state of biofuels development in Cameroon. Selected policy recommendations for sustainable biofuels production.
Wirba, A. V., Mas-ud, A., Muhammad-Sukki, F., Ahmad, S., Mat Tahar, R., Abdul Rahim, R., Munir, A. B., & Karim, M. E. (2015). Renewable energy potentials in Cameroon: Prospects and challenges. Renewable Energy, 76, 560 - 565. DOI: 10.1016/j.renene.2014.11.083
Mboumboue, E., & Njomo, D. (2018). Biomass resources assessment and bioenergy generation for a clean and sustainable development in Cameroon. Biomass and Bioenergy, 118, 16-23. DOI: 10.1016/j.biombioe.2018.08.002
Muh, E., Tabet, F., & Amara, S. (2019). The Future of Biogas Production in Cameroon: Prospects, Challenges and Opportunities. Current Alternative Energy, 2(2), 82-101. DOI: 10.2174/2405463102666180925141102
Zamorska-Wojdyla, D., Gaj, K., Holtra, A., & Sitarska, M. (2012). Quality Evaluation of Biogas and Selected Methods of its Analysis. Ecological Chemistry and Engineering S, 19(1), 77-87. DOI: 10.2478/v10216-011-0008-9
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