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A Proposed Method for Reliable Gasification Kinetics by Thermal Gravimetric Analysis

机译:热重分析的可靠气化动力学方法

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It has been shown in thermodynamic simulations of gasification that recycling up to 25% of carbon dioxide (CO_2) into a reformer allows for a highly hydrogen (H_2) concentrated syngas. While understanding thermodynamic limits is imperative, a kinetic analysis is desired to confirm applicability. Studies on thermal decomposition kinetics of polyethylene terephthalate (PET) in CO_2 gasification atmosphere have been assessed. Using thermal gravimetric analysis, we can show that gasification may be modeled as a series of single step reactions and determine the activation energies, pre-exponential factors and reaction models of those reactions. The use of CO2/air atmosphere instead of air atmosphere results in better char conversion.
机译:在气化的热力学模拟中已经表明,将高达25%的二氧化碳(CO_2)循环到重整器中可以得到高度氢气(H_2)浓缩的合成气。当必须了解热力学极限时,需要进行动力学分析以确认其适用性。评估了在CO_2气化气氛下对苯二甲酸乙二醇酯(PET)的热分解动力学的研究。使用热重分析,我们可以证明气化可以被建模为一系列单步反应,并确定这些反应的活化能,指数前因子和反应模型。使用CO2 /空气气氛而不是空气气氛可导致更好的炭转化率。

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