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Modeling, prediction and multi-objective optimization of the coal gasification system

机译:煤气化系统的建模,预测和多目标优化

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As global energy demand continues to increase, coal as basic energy still accounts for a significant proportion. Under the pressure of environmental protection, clean and efficient coal utilization technologies are in great demand. Coal gasification technology has the potential to realize near-zero-emissions for coal utilization. This paper establishes the coal gasification system model and analyzes the effect of oxygen/coal ratio and water/coal ratio on the system performance index of cold syngas efficiency, effective component ratio, carbon conversion ratio, and production ratio of hydrogen. The results show that when the oxygen/coal ratio increases, the efficiency of cold syngas and effective components ratio increase first and then decrease, carbon conversion ratio first increases and then remains unchanged, hydrogen production ratio gradually decreases; When the steam/coal ratio increases, the cold syngas efficiency, and carbon conversion ratio first increase and then decrease, effective component ratio ingredients gradually decreases, and the hydrogen production ratio increases. Using BP neural network to realize the prediction of the gasification system, and the mean square error reaches the magnitude of 10e-7. Multi-objective optimization results show that the oxygen/coal ratio and steam/coal ratio corresponding to the highest production ratio of hydrogen is 0.52 and 0.05. The highest carbon conversion ratio corresponds to the oxygen/coal ratio of 0.95 and the steam/coal ratio of 0.05.
机译:随着全球能源需求持续增加,煤炭作为基本能源仍占大量比例。在环境保护压力下,清洁高效的煤炭利用技术需求量很大。煤气化技术有可能实现煤炭利用的近零排放。本文建立了煤气化系统模型,分析了氧气/煤比和水/煤比对冷合金效率,有效成分,碳转化率和生产比率的系统性能指标的影响。结果表明,当氧气/煤比增加时,冷合金的效率和有效的组分比率升高,碳转化比首次增加,然后保持不变,氢气生产比率逐渐降低;当蒸汽/煤比增加时,冷合金效率和碳转化率首先增加,然后减少,有效的组分比成分逐渐降低,氢生产比率增加。使用BP神经网络实现气化系统的预测,平均方误差达到10E-7的幅度。多目标优化结果表明,对应于氢气的最高产量比对应的氧气/煤比和蒸汽/煤比为0.52和0.05。最高碳转化率对应于0.95的氧/煤比,蒸汽/煤比为0.05。

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