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首页> 外文期刊>Waste Management >Waste tires pyrolysis kinetics and reaction mechanisms explained by TGA and Py-GC/MS under kinetically-controlled regime
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Waste tires pyrolysis kinetics and reaction mechanisms explained by TGA and Py-GC/MS under kinetically-controlled regime

机译:TGA和Py-GC / MS在动力学控制下解释了废轮胎的热解动力学和反应机理

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摘要

The fast pyrolysis of waste tires (WTs) is studied by quasi-isothermal thermogravimetric (TGA) analysis, kinetic modelling and an analytical pyrolyzer coupled with gas chromatography/mass spectrometry (Py-GC/MS). The TGA demonstrated that the WTs pyrolysis is ruled by devolatilization/condensation and depropagation reactions, up to 482 ℃. At higher temperatures, the cyclization and aromatization of primary products take place to form mostly monoaromatics. Py-GC/MS experiments were performed under kinetic regime according to the thermal map established by the ratio between Biots (31.25) and Py-numbers (7.710~6). Limonene (51%) and isoprene (20.5%) were the major compounds detected at temperatures below 435 ℃, while above 600 ℃ limonene was converted to mono-aromatics (S_(btx) = 28.7%). The approach to equilibrium of Diels-Alder reaction demonstrated that there is an equilibrium-ruled behavior between isoprene and limonene, particularly at T > 600 ℃. The E_a values calculated by the Starinks model ranged from 101.5 to 176.7 kJ/mol, while for model-based kinetics it was 152.7 kJ/kmol. The integration of TGA, kinetic modelling and Py-GC/MS provided insights into pyrolysis reaction mechanism.
机译:通过准等温热重分析(TGA),动力学建模和分析热解仪结合气相色谱/质谱(Py-GC / MS),研究了废轮胎(WTs)的快速热解。 TGA证明WTs的热解受高达482℃的脱挥发分/冷凝和脱繁殖反应控制。在较高的温度下,初级产品发生环化和芳构化,形成大部分为单芳族化合物。根据Biots(31.25)与Py数之比(7.710〜6)建立的热图,在动力学条件下进行了Py-GC / MS实验。柠檬烯(51%)和异戊二烯(20.5%)是在低于435℃的温度下检测到的主要化合物,而在600℃以上的温度下,柠檬烯被转化为单芳烃(S_(btx)= 28.7%)。 Diels-Alder反应的平衡方法表明,异戊二烯和柠檬烯之间存在平衡规律的行为,特别是在T> 600℃时。 Starinks模型计算出的E_a值在101.5至176.7 kJ / kmol之间,而基于模型的动力学则为152.7 kJ / kmol。 TGA,动力学建模和Py-GC / MS的集成为热解反应机理提供了见解。

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