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首页> 外文期刊>Journal of Applied Polymer Science >Temperature-dependent pyrolytic product evolution profile for polyethylene terephthalate
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Temperature-dependent pyrolytic product evolution profile for polyethylene terephthalate

机译:聚对苯二甲酸乙二醇酯的温度相关热解产物演化曲线

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In this study, a detailed gas chromatographic study of pyrolysis products of polyethylene terephthalate (PET) has been carried out over a wide range of temperature (200-600°C). At low pyrolysis temperatures (200-300°C), yield of lighter hydrocarbons (C5-C10) is low; this gradually increases until maximum decomposition temperature (435°C) and decreases thereafter. At low temperature, PET essentially decomposes by ionic mechanism. However, at higher temperature, it may also proceed by radical mechanism. The following reaction types were considered to explain the decomposition mechanism of PET: (a) heterolytic (ionic) main-chain cleavage to form an olefin-end and an acid-end structure; (b) intra- or intermolecular ester-interchange reactions to yield cyclic oligomers; (c) intramolecular hydrogen transfer to form volatile products and regeneration of the acid-ends or, olefin-ends; (d) decarboxylation and intramolecular elimination of acetaldehyde, and acetylene; and (e) hydrogen abstraction and acetylene addition mechanism for the formation of polycyclic aromatic hydrocarbons.
机译:在这项研究中,对聚对苯二甲酸乙二醇酯(PET)的热解产物进行了详细的气相色谱研究,研究温度范围很广(200-600°C)。在较低的热解温度(200-300°C)下,较轻烃(C5-C10)的产率较低;逐渐升高直至最高分解温度(435℃),此后降低。在低温下,PET基本上通过离子机理分解。但是,在较高温度下,它也可能通过自由基机理进行。认为以下反应类型可解释PET的分解机理:(a)杂解(离子)主链裂解形成烯烃端和酸端结构; (b)在分子内或分子间的酯交换反应以产生环状低聚物; (c)分子内氢转移形成挥发性产物,并酸端或烯烃端再生; (d)乙醛和乙炔的脱羧和分子内消除; (e)氢提取和乙炔加成机理以形成多环芳烃。

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