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Prediction and estimation of biomass energy from agricultural residues using air gasification technology in Iran

机译:伊朗使用空气气化技术预测和估算农业残余物中的生物质能

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Biomass energy has great potential to create significant impacts on the most pressing development challenges of rural poverty and environmental damage. Iran's agricultural residues have the potential to generate a sustainable source of biomass. One method of sustainable biomass energy production is gasification. The objective of the present study is to develop a stoichiometric equilibrium model for the prediction of energy production of gasification. The model was validated with experimental data in order to determine the syngas composition. The RMSE of the modified model was ranged from 0.571 to 1.10. Subsequently, the effects of parameters of operating conditions on the performance of gasification were evaluated to determine its optimal performance characteristics. Also, the developed model was used to estimate the amount of power and heat obtained from different agricultural residues by the gasification process. The results indicated that the total achieved energy from the agricultural residues by gasification technology was 341,290 TJ. Also, the amount of electricity and heat obtained from this energy was 66,075 and 3 99,112 TJ, respectively. (C) 2019 Published by Elsevier Ltd.
机译:生物质能具有巨大潜力,可对农村贫困和环境破坏等最紧迫的发展挑战产生重大影响。伊朗的农业残留物有可能产生可持续的生物质资源。可持续生物质能生产的一种方法是气化。本研究的目的是建立化学计量平衡模型,用于预测气化的能量产生。用实验数据验证该模型,以确定合成气的组成。修改后模型的均方根误差介于0.571至1.10之间。随后,评估操作条件参数对气化性能的影响,以确定其最佳性能特征。此外,开发的模型还用于估算通过气化过程从不同农业残余物中获得的电力和热量。结果表明,气化技术从农业残渣中获得的总能量为341,290 TJ。而且,从该能量获得的电量和热量分别为66,075 TJ和3 99,112 TJ。 (C)2019由Elsevier Ltd.发布

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