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Effect of the Nucleophilicity and Solvent on the Chemical Modification of Flexible Poly(vinyl chloride) by Substitution

机译:亲核性和溶剂对柔性聚氯乙烯取代化学改性的影响

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摘要

The chemical modification might become an alternative to the thermal degradation of waste Polyvinylchloride (PVC). Therefore, the nucleophile substitution of chlorine from flexible PVC by hydroxide (OH^sup -^), thiocyanate (SCN^sup -^), azide (N^sup -^^sub 3^), and iodide (I^sup -^) was investigated in ethylene glycol (EG) at 190° C. With the exception of I^sup -^, all nucleophiles used resulted in substitution yields of about 20%. However, also high elimination yields were observed. When SCN was used as the nucleophile, the substitution/elimination ratio increased with decreasing temperature. The product at 150° C contained a mixed structure of thiocyanate and Isothiocyanate groups, while at 190° C, only the structure of isothiocyanate was present the product, due to the isomerization of the -S-C=N group under the formation of -N=C=S at elevated temperatures. The substitution and dehydrochlorination yields increased with an increasing molar SCN/CI ratio. When EG was replaced by diethylene glycol (DEG) or triethylene glycol (TEG), the dehydrochlorination was found to proceed more rapidly. The use of a solvent with a lower polarity improved the contact between the solvent and the polymer; however, solvents with a lower polarity favor the elimination over the substitution. Therefore, the substitution-elimination ratio increased in the order EG > DEG > TEG. [PUBLICATION ABSTRACT]
机译:化学改性可能成为废聚氯乙烯(PVC)热降解的替代方法。因此,柔性PVC中氯的亲核试剂被氢氧化物(OH ^ sup-^),硫氰酸盐(SCN ^ sup-^),叠氮化物(N ^ sup-^ sub 3 ^)和碘化物(I ^ sup-^)取代。在190℃下在乙二醇(EG)中研究。除了I 2以外,所有使用的亲核试剂导致约20%的取代产率。然而,也观察到高消除产率。当SCN用作亲核试剂时,取代/消除比率随温度降低而增加。在150°C时,该产物包含硫氰酸酯和异硫氰酸酯基团的混合结构,而在190°C时,由于-SC = N基团在形成-N =时发生异构化,因此只有异硫氰酸酯存在该结构。在高温下C = S。随SCN / CI摩尔比的增加,取代和脱氯化氢的产率也增加。当用二甘醇(DEG)或三甘醇(TEG)代替EG时,发现脱氯化氢进行得更快。极性较低的溶剂的使用改善了溶剂与聚合物之间的接触。但是,极性较低的溶剂优先于取代。因此,取代消除率以EG> DEG> TEG的顺序增加。 [出版物摘要]

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  • 来源
    《Polymer Engineering and Science 》 |2011年第6期| p.1108-1115| 共8页
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    Tomohito Kameda, Yuuzou Fukuda, Guido Grause, Toshiaki YoshiokaGraduate School of Environmental Studies, Tohoku University, 6-6-07 Aoba, Aramaki, Aoba-ku,Sendai 980-8579, JapanCorrespondence to: Toshiaki Yoshioka, e-mail: yoshioka@env.che.tohoku. ac.jpDOI 10.1002/pen.21693Published online in Wiley Online Library (wileyonlinelibrary.com).© 2011 Society of Plastics Engineers,;

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