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The Influence of Oxygen Concentration and Equivalence Ratio on Pyrolysis Gas in Oxygen-Enriched Pyrolysis by Theoretical Calculation

机译:氧浓度与等效比对富含氧热解的热解气相的影响理论计算

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Oxygen-enriched pyrolysis for the treatment of municipal solid waste (MSW) was proposed in this paper. Its advantages with respect to air pyrolysis, such as high efficiency, lower heat loss and emissions, have been described based on mechanism analysis and thermodynamic calculations. Effects of oxygen concentration, equivalence ratio (ER) on gas products and their heat values were investigated by theoretical calculation. It was found that with the increase of oxygen concentration the gas yield and heat values decrease, with the increase of ER, the content of CO and CH_4 decrease, while the content of H_2 varied from increase into decrease with ER=0.27 as the turning point. When ER exceeded 0.30, the pyrolysis controlled reaction became into the combustion controlled reaction. The most suitable ER for oxygen-enriched pyrolysis ranges from 0.20 to 0.30 and water content of MSW should be controlled in the range from 15% to 25%. Therefore, choice of ER was very important in oxygen-enriched pyrolysis process. ER could control the components and heat values of gas products. In addition gas product quality could be improved owing to the increase of oxygen concentration within a certain ER range.
机译:对城市固体废弃物(MSW)治疗富氧热解在本文中提出的。其相对于空气的热解的优点,如高效率,更低的热损失和排放,已经基于机理分析和热力学计算说明。氧浓度,对气体产品和它们的热值的当量比(ER)的效果是通过理论计算的影响。结果发现,与氧浓度的气体产率和热值降低的增加,与ER,CO和CH_4减少的含量的增加,而H_2的含量从增加变化到与ER = 0.27下降作为转弯点。当ER超过0.30,热解反应控制成为进入燃烧控制的反应。为富氧的热解的范围从0.20至0.30和MSW的含水量最适合ER应在的范围内控制为15%至25%。因此,ER的选择是在富氧热解过程非常重要。 ER可以控制气体产品的成分和热值。此外气体产品质量可能由于某个ER范围内的氧浓度的增加得到提高。

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