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Effect of Increasing Course of Temperature and Pressure on Polypropylene Degradation in Supercritical Water

机译:温度和压力升高过程对超临界水中聚丙烯降解的影响

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The effect of increasing course of temperature and pressure on polypropylene (PP) degradation in supercritical water was investigated for developing a process of recycling waste plastic. A group of experiments was carried out in a reaction system at a pressure of 26MPa, temperature of 380℃ or 400℃ for 30min, 70min, and 120min by Course One (the increasing course of temperature and pressure is via gaseous regions to supercritical regions), and the other group was carried out at corresponding holding conditions by Course Two (the increasing course of temperature and pressure is via liquid regions to supercritical regions). The time of the increasing courses was about 30min. Products were analyzed by Ostward-type viscometer, gaseous chromatography, and mass spectrometers (GC/MS). Characterization results suggested that different increasing courses of temperature and pressure would give rise to different results, although they were treated under the similar holding conditions. It was also found that Course Two was more effective on PP degradation in supercritical water.
机译:研究了温度和压力升高过程对超临界水中聚丙烯(PP)降解的影响,以开发回收废塑料的方法。通过课程一,在反应系统中于26MPa的压力,380或400℃的温度下进行了30min,70min和120min的一组实验(温度和压力的增加过程是通过气态区到超临界区) ,另一组是通过第二过程在相应的保持条件下进行的(温度和压力的增加过程是通过液体区域到超临界区域)。增加课程的时间约为30分钟。用Ostward型粘度计,气相色谱法和质谱仪(GC / MS)分析产物。表征结果表明,尽管在相似的保持条件下进行了处理,但是温度和压力的不同升高过程会产生不同的结果。还发现第二道对超临界水中的PP降解更有效。

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