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Characteristics and kinetics of degradation of polystyrene in supercritical water

机译:聚苯乙烯在超临界水中降解的特性及动力学

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The degradation of polystyrene (PS) in subor supercritical water was carried out at reaction temperatures ranging from 370 degrees C to 420 degrees C and pressures of 240 to 320 bar. At 370 degrees C, where water is in a subcritical state, the degradation was in equilibrium in about 5 min, whereas at 380 degrees C and 390 degrees C, where water is in a supercritical state, it was completed in 15 and 3 min, respectively. The equilibrium conversion in the supercritical state (100 wt ) was higher than that in the subcritical water (ca. 80 wt ). The dependence on time of selectivity for the degradation products-styrene monomer, styrene dimer, styrene trimer, toluene, ethyl benzene, isopropyl benzene, and triphenyl benzene-were investigated at 400 degrees C and 280 bar. As the reaction proceeded, selectivity for styrene monomers, dimers, and trimers decreased, whereas that for toluene, ethyl benzene, and isopropyl benzene increased because of the difficulty of decomposing the benzene rings and phenyl radicals. Triphenyl benzene increased with reaction time for the same reason. With increasing temperature, selectivity for the styrene monomers and dimers decreased slightly, whereas selectivity for toluene and ethyl benzene increased a little. The kinetic behavior of PS in supercritical water along with supercritical acetone and n-hexane were investigated. The degradation processes of PS in such supercritical fluids could be formulated by the first-order kinetic law at the initial stage of the reaction. The activation energy for the degradation in supercritical water was evaluated to be 157 kJ/mol compared to an activation energy of 132 kJ/mol in the supercritical n-hexane. (c) 2006 Wiley Periodicals, Inc.
机译:聚苯乙烯(PS)在亚临界水中的降解是在370°C至420°C的反应温度和240至320 bar的压力下进行的。在370°C,水处于亚临界状态,降解在约5 min内达到平衡,而在380°C和390°C,水处于超临界状态,分别在15和3 min内完成。超临界状态下的平衡转化率(100 wt %)高于亚临界水(约80 wt %)。研究了降解产物(苯乙烯单体、苯乙烯二聚体、苯乙烯三聚体、甲苯、乙苯、异丙基苯和三苯苯)在400°C和280 bar下对选择性的依赖性。随着反应的进行,苯乙烯单体、二聚体和三聚体的选择性降低,而甲苯、乙苯和异丙基苯的选择性增加,因为苯环和苯基自由基难以分解。出于同样的原因,三苯苯随反应时间的增加而增加。随着温度的升高,苯乙烯单体和二聚体的选择性略有下降,而甲苯和乙苯的选择性略有增加。研究了PS在超临界水中与超临界丙酮和正己烷的动力学行为。PS在这种超临界流体中的降解过程可以通过反应初始阶段的一阶动力学定律来表述。评估在超临界水中降解的活化能为157 kJ/mol,而在超临界正己烷中的活化能为132 kJ/mol。(c) 2006 Wiley Periodicals, Inc.

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