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首页> 外文期刊>Journal of Applied Polymer Science >A Comparative Study of Polystyrene Decomposition in Supercritical Water and Air Environments Using Diamond Anvil Cell
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A Comparative Study of Polystyrene Decomposition in Supercritical Water and Air Environments Using Diamond Anvil Cell

机译:金刚石砧池在超临界水和空气环境中聚苯乙烯分解的比较研究

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Polystyrene (PS) decomposition in supercritical water (SCW) and in air was studied with the diamond anvil cell (DAC) technique coupled with microscopy and FTIR. Apparent concentrations were calculated by using digital imaging analysis. When PS + water systems (11.8-22.6 wt % PS) were rapidly heated at a rate of 2.3deg C/s, the PS particle melted at 279.8-320.2deg C. After formation of a globule at 409.3-452.5deg C, the globule started to dissolve in color to yellow at 496.1deg C. At 570.3deg C and 742.5 MPa, solubility reached the maximum of 91.5 wt % (11.8 wt % PS). The soluble material was a styrenelike liquid, which was identified by IR after cooling. In isothermal runs at 400 and 450deg C, two heterogeneous liquid phases consisting of water and decomposed PS were found. Styrenelike liquid products were identified after the reactions. PS decomposition stages in air consisted of melting, gas generation, liquid ring configuration, and finally yellow volatile products formation at 583.2deg C. The results show conclusively that PS can be dissolved in SCW above 496.1deg C and homogenous reaction is likely to occur above 570.3deg C. Reactions in SCW at 400 and 450deg C take place in heterogeneous liquid phases, while in the PS + air system, a formed liquid ring undergoes depolymerization.
机译:采用金刚石砧池(DAC)技术结合显微镜和FTIR研究了超临界水(SCW)和空气中的聚苯乙烯(PS)分解。通过使用数字成像分析计算表观浓度。当PS +水系统(11.8-22.6 wt%PS)以2.3摄氏度/秒的速度快速加热时,PS颗粒在279.8-320.2摄氏度下熔化。在409.3-452.5摄氏度下形成小球后,在496.1℃下,小球开始溶解成黄色。在570.3℃和742.5MPa下,溶解度达到最大值91.5wt%(11.8wt%PS)。可溶性材料是苯乙烯样液体,冷却后通过IR鉴定。在400和450℃的等温运行中,发现了由水和分解的PS组成的两个非均相液相。反应后鉴定出类苯乙烯液体产物。空气中PS的分解阶段包括熔化,气体产生,液环构型,最后在583.2℃形成黄色挥发性产物。结果表明,在496.1℃以上,PS可以溶解在SCW中,而在90℃以上,则可能发生均相反应。 570.3℃。SCW在400和450℃下的反应在异相中进行,而在PS +空气系统中,形成的液环发生解聚。

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