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Thermal Stability Change of Insoluble Sulfur by a Heat Treatment and Its Mechanism Study

机译:热处理过程中不溶硫的热稳定性变化及其机理研究

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摘要

Insoluble sulfur (IS), used as a vulcanizing reagent of rubber, is prepared by the thermal ring-opening polymerization of sulfur (S_(8)). Enhancing its thermal stability and content ratio (yield) is important for the industrial production of IS. The post-heating process at a high temperature of 70 or 90°C of the mixture of IS and S_(8) enhanced the thermal stability of IS and reduced the yield of IS. Further, the process at 30°C enhanced its thermal stability and maintained its yield. Since the thermal stability of IS is considered to be closely related to the chain length of polymer sulfur, a method for determining the chain length of IS was investigated by quantifying the amount of electron spin of radicals from sulfur, estimated from electron spin resonance (ESR) measurements. We confirmed that the long-period post-heating process at 30°C induced high thermal stability without reducing the yield of IS due to growth of the sulfur polymer chains.
机译:通过硫的热开环聚合反应制备用作橡胶的硫化剂的不溶性硫(IS)(S_(8))。增强其热稳定性和含量比(产率)对于IS的工业生产非常重要。 IS和S_(8)的混合物在70或90°C高温下的后加热过程增强了IS的热稳定性并降低了IS的收率。此外,该方法在30℃下提高了其热稳定性并保持了其产率。由于IS的热稳定性被认为与聚合物硫的链长密切相关,因此,通过量化由电子自旋共振(ESR)估算的硫基自由基的电子自旋量,研究了确定IS链长的方法) 测量。我们确认,由于硫聚合物链的生长,在30°C下进行的长时间后加热过程可产生较高的热稳定性,而不会降低IS的收率。

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