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首页> 外文期刊>Polymer-Plastics Technology and Engineering >Kinetics and Thermodynamics of Neutral Hydrolytic Depolymerization of Polyurethane Foam Waste Using Different Catalysts at Higher Temperature and Autogenious Pressures
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Kinetics and Thermodynamics of Neutral Hydrolytic Depolymerization of Polyurethane Foam Waste Using Different Catalysts at Higher Temperature and Autogenious Pressures

机译:在较高温度和自生压力下使用不同催化剂对聚氨酯泡沫废料进行中性水解解聚的动力学和热力学

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摘要

Neutral hydrolytic depolymerization of the polyurethane (PU) foam waste was done using 0.5 L high pressure autoclave at temperatures of 150°, 180°, 200° and 240°C, the autogenious pressures of 75, 160, 220 and 480 psi and time intervals of 30, 45, 60 and 90 min. The obtained product was characterized by measuring its amine value. The optimum amount of catalysts such as zinc acetate and lead acetate was found to be 1 g. Zinc acetate was more effective catalyst than lead acetate for the depolymerization of PU foam reaction. On the basis of amine value and residual weight of the depolymerized product, the velocity constant was obtained and found to be in order of 10−3 min−1; and the reaction was found to be first order. The energy of activation and frequency factor obtained by an Arrhenius plot were 36.86 kJ mole−1 and 1.349 × 102 mi−1, respectively. The enthalpy of activation at 150°C, 180°C, 200°C, and 240°C was recorded as 43.89, 44.39, 44.72 and 45.37 kJ mole−1, respectively. The entropy of activation at the respective temperatures were recorded as 10.37 × 10−2, 9.79 × 10−2, 9.45 × 10−2 and 8.84 × 10−2 kJ mole−1. The amine was recovered from products of depolymerization reactions.
机译:聚氨酯(PU)泡沫废料的中性水解解聚反应是使用0.5 L高压釜在150°,180°,200°和240°C,75、160、220和480 psi的自生压力和时间下进行的30,45,60和90分钟的间隔。通过测量其胺值表征获得的产物。发现催化剂的最佳用量,例如乙酸锌和乙酸铅为1 g。对于PU泡沫反应的解聚,乙酸锌比乙酸铅更有效的催化剂。根据胺值和解聚产物的残余重量,获得了速度常数,发现其速度顺序为10 min ˆ1 ;发现该反应是一级反应。通过Arrhenius图获得的激活能量和频率因子分别为36.86 kJ mole -1>和1.349×10 2 mi ∠‘1 。在150°C,180°C,200°C和240°C下的激活焓分别记录为43.89、44.39、44.72和45.37 kJ mole â1。在各个温度下激活的熵分别记录为10.37×10 →2 ,9.79×10 →2 ,9.45× — 10 ˆ2 和8.84×10 up2 kJ mole â1。从解聚反应产物中回收胺。

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  • 来源
    《Polymer-Plastics Technology and Engineering》 |2009年第1期|p.83-89|共7页
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  • 作者单位

    Department of Chemical Technology, North Maharashtra University, Jalgaon (MS), India;

    Department of Chemistry, M. J. College, Jalgaon (MS), India;

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