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Thermodynamic equilibrium model and second law analysis of a downdraft waste gasifier

机译:向下气流废气气化炉的热力学平衡模型和第二定律分析

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摘要

The management of municipal solid waste (MSW) and the current status of world energy resources crisis are important problems. Gasification is a kind of waste-to- energy conversion scheme that offers the most attractive solution to both waste disposal and energy problems. In this study, the thermodynamic equilibrium model based on equilibrium constant for predicting the composition of producer gas in a downdraft waste gasifier was developed. To enhance the performance of the model, further modification was made by multiplying the equilibrium constants with coefficients. The modified model was validated with the data reported by different researchers. MSW in Thailand was then used to simulate and to study the effects of moisture content (MC) of the waste on the gasifier's performance. The results showed that the mole fraction of H_2 gradually increases; CO decreases; CH_4, which has a very low percentage in the producer gas increases; N_2 slightly decreases; and CO_2 increases with increasing MC. The reaction temperature, the calorific value, and the second law efficiency, decrease when MC increases.
机译:城市固体废物(MSW)的管理和世界能源危机的现状是重要的问题。气化是一种废物转化为能源的方案,它为废物处理和能源问题提供了最有吸引力的解决方案。在这项研究中,建立了一种基于平衡常数的热力学平衡模型,用于预测下沉式废气气化炉中生产气体的组成。为了提高模型的性能,通过将平衡常数乘以系数进行了进一步修改。使用不同研究人员报告的数据验证了修改后的模型。然后,泰国的MSW被用来模拟和研究废物的水分含量(MC)对气化炉性能的影响。结果表明,H_2的摩尔分数逐渐增加; CO降低; CH_4,其在产生气中的增加百分比非常低; N_2略有下降;随着MC的增加CO_2增加。当MC增加时,反应温度,发热量和第二定律效率降低。

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