Modeling and optimization of energy production from lignocellulosic biomass in Burkina Faso

Fernand Zoma, M. Sawadogo
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Abstract

Burkina Faso has significant biomass (lignocellulosic) potential that can be used for energy production. Despite this availability, there are many problems in developing viable schemes to implement optimal bioenergy production in Burkina Faso given the technologies and energy needs. This study aims to develop a Mixed Integer Linear Programming (MILP) model to evaluate and optimize the main supply chain options in terms of economic criteria. The proposed model was applied to a case study in five Burkina Faso regions to produce heat, electricity, and briquettes from crop residues (cotton stalks) and agro-industrial residues (cashew nut shells and mango pits). The obtained results indicate that the optimal technologies are briquetting plants for the production of briquettes and the best biomasses are agro-industrial residues. A sensitivity analysis is therefore made considering variations in the price of biomass and products.
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布基纳法索木质纤维素生物质能源生产的建模和优化
布基纳法索具有巨大的生物质(木质纤维素)潜力,可用于能源生产。尽管有这种可用性,但考虑到技术和能源需求,在制定可行方案以在布基纳法索实施最佳生物能源生产方面存在许多问题。本研究旨在建立一个混合整数线性规划(MILP)模型,以经济标准评估和优化主要供应链选项。所提出的模型被应用于布基纳法索五个地区的一个案例研究中,该地区利用作物残留物(棉花秸秆)和农业工业残留物(腰果壳和芒果核)生产热能、电力和压块。结果表明,生产型煤的最佳工艺是压块厂,最佳生物质是农工废渣。因此,考虑到生物质和产品价格的变化,进行了敏感性分析。
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