Global Multidisciplinary Journal

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TRANSFORMING WASTE MANAGEMENT: EVALUATION OF A FIXED BED BATCH-TYPE PYROLYSIS PLANT UTILIZING SCRAP TIRES IN BANGLADESH

4 Bangladesh Power Development Board, Ministry of Power, Energy and Mineral Resources, Dhaka, Bangladesh

Abstract

This study assesses the efficacy of a fixed bed batch-type pyrolysis plant utilizing scrap tires as feedstock for waste management in Bangladesh. Pyrolysis presents a promising approach to address the mounting challenge of tire disposal by converting scrap tires into valuable products such as fuel oil, carbon black, and steel wire. The research encompasses the design, fabrication, and performance evaluation of the pyrolysis plant under local operational conditions. Through comprehensive testing and analysis, key performance indicators including pyrolysis efficiency, product yield, and environmental impact are assessed. The findings offer insights into the feasibility and sustainability of pyrolysis-based waste management solutions in Bangladesh, with implications for addressing broader environmental and energy challenges.

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Keywords

References

πŸ“„ Abnisa, F., Arami-Niya, A., Daud, W. M. A. W., & Sahu, J. N. (2013). Characterization of bio-oil and bio-char from pyrolysis of palm oil wastes. Bioenergy Research, 6(2), 830e840.
πŸ“„ Aguiar, L., Marquez-Montesinos, F., Gonzalo, A., Sanchez, J. L., & Arauzo, J. (2008). Influence of temperature and particle size on the fixed bed pyrolysis of orange peel residues. Journal of Analytical and Applied Pyrolysis, 83(1), 124e130.
πŸ“„ Choudhury, N., Chutia, R., Bhaskar, T., & Kataki, R. (2014). Pyrolysis of jute dust : Effect of reaction parameters and analysis of products. Journal of Material Cycles and Waste Management, 16, 449e459.
πŸ“„ De Jongh, W. A., Carrier, M., & Knoetze, J. H. (2011). Vacuum pyrolysis of intruder plant biomasses. Journal of Analytical and Applied Pyrolysis, 92(1), 184e193.
πŸ“„ Fu, P., Yi, W., Bai, X., Li, Z., Hu, S., & Xiang, J. (2011). Effect of temperature on gas composition and char structural features of pyrolyzed agricultural residues. Bioresource Technology, 102(17), 8211e8219.
πŸ“„ Islam, M. R., Haniu, H., & Beg, M. R. A. (2008). Liquid fuels and chemicals from pyrolysis of motorcycle tire waste : Product yields, compositions and related properties. Fuel, 87, 3112e3122.
πŸ“„ Islam, M. N., Islam, M. N., Beg, M. R. A., & Islam, M. R. (2005). Pyrolytic oil from fixed bed pyrolysis of municipal solid waste and its characterization. Renewable Energy, 30(3), 413e420.
πŸ“„ Islam, M. R., Islam, M. N., Mustafi, N. N., Rahim, M. A., & Haniu, H. (2013). Thermal recycling of solid tire wastes for alternative liquid fuel: The first commercial step in Bangladesh. Procedia Engineering, 56, 573e582.
πŸ“„ Islam, M. R., Joardder, M. U. H., Hasan, S. M., Takai, K., & Haniu, H. (2011). Feasibility study for thermal treatment of solid tire wastes in Bangladesh by using pyrolysis technology. Waste Management, 31(9e10), 2142e2149.
πŸ“„ Islam, M. R., Tushar, M. S. H. K., & Haniu, H. (2008). Production of liquid fuels and chemicals from pyrolysis of Bangladeshi bicycle/rickshaw tire wastes. Journal of Analytical and Applied Pyrolysis, 82, 96e109.

How to Cite

Mohammad Halim Rahman. (2024). TRANSFORMING WASTE MANAGEMENT: EVALUATION OF A FIXED BED BATCH-TYPE PYROLYSIS PLANT UTILIZING SCRAP TIRES IN BANGLADESH. Global Multidisciplinary Journal, 3(02), 01-06. https://doi.org/10.55640/gmj-abc218

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