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Reaction mechanism of styrene monomer recovery from waste polystyrene by supercritical solvents

机译:超临界溶剂回收废聚苯乙烯中苯乙烯单体的反应机理

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The degradation of polystyrene in supercritical benzene, toluene, ethylbenzene and p-xylene was studied at 310-370 degrees C, 4.0-6.0 MPa using a novel fast process. Supercritical degradation has unique properties such as excellent heat and mass transfer. By using this technique, polystyrene has been successfully depolymerised into monomer, dimer and other products in a very short reaction time with high conversion. Toluene used as supercritical solvent was more effective than other solvents such as benzene, ethylbenzene and p-xylene for the recovery of styrene from polystyrene, though the conversions of polystyrene were similar in all the above solvents. The highest yield of styrene obtained from polystyrene in supercritical toluene at 360 degrees C for 20 min reached 77 wt.%. The reaction mechanism consists of depolymerisation of polystyrene and secondary reactions due to closed system. This study indicated that different supercritical solvents affected these two processes differently. (c) 2005 Elsevier Ltd. All rights reserved.
机译:采用新颖的快速方法研究了聚苯乙烯在超临界苯,甲苯,乙苯和对二甲苯中的降解,温度为310-370℃,温度为4.0-6.0 MPa。超临界降解具有独特的性能,例如出色的传热和传质。通过使用该技术,聚苯乙烯已在非常短的反应时间内以高转化率成功解聚为单体,二聚体和其他产品。甲苯作为超临界溶剂比苯,乙苯和对二甲苯等其他溶剂更有效地从聚苯乙烯中回收苯乙烯,尽管在上述所有溶剂中聚苯乙烯的转化率均相似。在360℃下于超临界甲苯中由聚苯乙烯获得的苯乙烯的最高产率为20重量%,达到77重量%。该反应机理包括聚苯乙烯的解聚和由于封闭系统引起的二级反应。这项研究表明,不同的超临界溶剂对这两个过程的影响不同。 (c)2005 Elsevier Ltd.保留所有权利。

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