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Effects of solvent on degradation of poly(vinyl chloride)

机译:溶剂对聚氯乙烯降解的影响

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摘要

Poly(vinyl chloride) (PVC) was decomposed in t-decalin and tetralin at 300-460 degreesC under an initial nitrogen pressure of 4.0 MPa. To aid mechanistic discussions, some reactions were also performed in the absence of solvent. In the beginning of the reaction at 300 degreesC, PVC was converted to THF-insoluble dehydrochlorinated PVC (idcPVC) irrespective of the presence of solvent, by liberation of hydrogen chloride. In the reactions without solvent, oil and solid carbon were produced from idcPVC predominantly by degradation and condensation reactions respectively. In the presence of solvent, idcPVC was converted into oil directly or via THF-soluble dehydrochlorinated PVC (sdcPVC). Particularly in tetralin, the decomposition of idcPVC into oil was accelerated significantly over 440 degreesC. A reaction mechanism was discussed using two parameters, atomic ratio of hydrogen and carbon (H/C) and carbon content (C-i). (C) 2003 Elsevier Science Ltd. All rights reserved. [References: 34]
机译:聚氯乙烯(PVC)在初始氮气压力为4.0 MPa的条件下于300-460℃在叔萘烷和四氢化萘中分解。为了帮助进行机械讨论,还在没有溶剂的情况下进行了一些反应。在300℃的反应开始时,不考虑溶剂的存在,通过释放氯化氢将PVC转化为THF不溶性的脱氯化氢PVC(idcPVC)。在没有溶剂的反应中,idcPVC主要通过降解和缩合反应生成油和固体碳。在溶剂存在下,idcPVC直接或通过可溶于THF的脱氯化氢PVC(sdcPVC)转化为油。特别是在四氢化萘中,在440摄氏度以上,idcPVC分解成油的速度大大加快。使用氢,碳原子比(H / C)和碳含量(C-i)两个参数讨论了反应机理。 (C)2003 Elsevier ScienceLtd。保留所有权利。 [参考:34]

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