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首页> 外文期刊>Waste and biomass valorization >Thermodynamic Analysis of Municipal Solid Waste Gasification Under Isothermal and Adiabatic Conditions by a Gibbs Free Energy Minimization Model
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Thermodynamic Analysis of Municipal Solid Waste Gasification Under Isothermal and Adiabatic Conditions by a Gibbs Free Energy Minimization Model

机译:基于吉布斯自由能最小化模型的等温绝热条件下城市固体废物气化的热力学分析

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摘要

An equilibrium model has been developed to predict the composition of a gaseous mixture obtained from the gasification process of the Curitiba City Municipal Solid Waste (MSW). The ultimate analysis of this MSW was also obtained in this study (C = 53.60%, H = 6.74%, N = 1.85%, S = 0.21%, O = 31.03%, Ash = 6.57%), what is necessary when there is lack of experimental information on the elemental composition of the feedstock. Simulations for different gasification scenarios were carried out regarding autothermic and supercritical operations. The developed model was validated with experimental data from literature and was used for optimizing the gasification of MSW according to the amount of air injected in the system, feedstock moisture, temperature and pressure in the gasifier. It was observed that an increase in the pressure of an adiabatic process can increase the lower heat value (LHV) of the gas if the moisture is also increased until an optimum condition. Isothermal processes simulated with supercritical water at high temperatures (higher than that reached in the adiabatic scenarios) resulted in higher LHVs of the gas product.
机译:已经开发了一种平衡模型来预测从库里提巴市城市固体废物(MSW)的气化过程中获得的气体混合物的组成。该研究还获得了该城市固体废弃物的最终分析结果(C = 53.60%,H = 6.74%,N = 1.85%,S = 0.21%,O = 31.03%,灰分= 6.57%),如果存在缺乏有关原料元素组成的实验信息。针对自热和超临界运行进行了不同气化方案的模拟。根据文献中的实验数据对开发的模型进行了验证,该模型根据系统中注入的空气量,原料水分,气化炉中的温度和压力,用于优化MSW的气化。已经观察到,如果还增加水分直到最佳条件,则绝热过程的压力的增加可以增加气体的较低的热值(LHV)。用超临界水在高温下模拟的等温过程(高于绝热情况下达到的等温过程)导致气体产品的LHV更高。

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