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通过等温与非等温机理,利用不同动力学模型对废塑料混合物进行热解研究。

Pyrolysis study of a waste plastic mixture through different kinetic models using isothermal and nonisothermal mechanism.

作者信息

Das Prasanta

机构信息

NIET, Chemical, Petroleum and Hydrogen Technology, NIMS University Jaipur 303121 Rajasthan India

出版信息

RSC Adv. 2024 Aug 14;14(35):25599-25618. doi: 10.1039/d4ra04957h. eCollection 2024 Aug 12.

Abstract

Pyrolysis can be a convenient way to produce oils and gases simultaneously, as well as hydrocarbons and even crude petrochemicals. It can also be used to produce energy from a waste plastic mixture (WPM). To ascertain the kinetics parameters at the heating rates of 5, 10, 20, and 50 °C min, various kinetic models, including (a) model-fitting and (b) model-free, which are further separated into isothermal and non-isothermal categories, have been selected. The apparent activation energy ( ) and pre-exponential factor ( ) were calculated using the Friedman (model-free isothermal), KAS, FWO (model-free non-isothermal), and Coats-Redfern (model-fitting non-isothermal) approaches. The activation energy ( ), pre-exponential component ( ), and overall reaction order () were also calculated using a multi-linear regression methodology. In addition, the solid fuel characterization of WPM has been compared with previous literature results, as have the physico-chemical characteristics of pyrolytic oil. Finally, a brief mention of WPM's kinetic process has been included in this work. However, the results indicated two stages of thermal degradation and volatilization of the WPM zone during pyrolysis (410-510 °C, 510-770 °C). In the temperature range of 410-510 °C, 510-770 °C, two-stage thermal degradation zones are used to analyze the kinetic parameters for WPM. The result showed the average activation values obtained by the KAS, FWO, and Friedmam methods were 297.61, 295.25, and 267.26 kJ mol. In the case of the Coats-Redfern methods, the lowest activation energy was obtained by the PT1 kinetic model at 22.56 kJ mol, and the highest activation energy was found in the D3 kinetic model at 418.80 kJ mol in the temperature zone of 410-510 °C. The temperature zone with the lowest activation energy was found to be between 510 °C and 770 °C.

摘要

热解可以是一种同时生产油和气以及碳氢化合物甚至粗石化产品的便捷方法。它还可用于从废塑料混合物(WPM)中生产能源。为了确定在5、10、20和50℃/分钟的加热速率下的动力学参数,已选择了各种动力学模型,包括(a)模型拟合和(b)无模型,后者又进一步分为等温类别和非等温类别。使用弗里德曼(无模型等温)、KAS、FWO(无模型非等温)和科茨-雷德芬(模型拟合非等温)方法计算了表观活化能( )和指前因子( )。还使用多元线性回归方法计算了活化能( )、指前成分( )和总反应级数( )。此外,已将WPM的固体燃料特性与先前的文献结果进行了比较,热解油的物理化学特性也进行了比较。最后,这项工作中简要提及了WPM的动力学过程。然而,结果表明热解过程中WPM区域存在热降解和挥发的两个阶段(410-510℃,510-770℃)。在410-510℃、510-770℃的温度范围内,使用两阶段热降解区来分析WPM的动力学参数。结果表明,通过KAS、FWO和弗里德曼方法获得的平均活化值分别为297.61、295.25和267.26 kJ/mol。在科茨-雷德芬方法的情况下,在410-510℃的温度区内,PT1动力学模型获得的最低活化能为22.56 kJ/mol,D3动力学模型的最高活化能为418.80 kJ/mol。发现活化能最低的温度区在510℃至770℃之间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/127b/11323526/a9ba3776ff1e/d4ra04957h-f1.jpg

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