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首页> 外文期刊>Polymer Degradation and Stability >Four-factor optimization for PET glycolysis with consideration of the effect of sodium bicarbonate catalyst using response surface methodology
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Four-factor optimization for PET glycolysis with consideration of the effect of sodium bicarbonate catalyst using response surface methodology

机译:使用响应表面方法考虑碳酸氢钠催化剂的效果,对PET糖醇分析的四因素优化

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摘要

In this study, Response Surface Methodology based on four-factor Box-Behnken design was applied to suggest the optimal conditions for glycolysis of polyethylene terephthalate (PET) and to analyze the individual and interaction effects of the factors on the process. Four independent factors of interest, namely reaction time (3-5 h), reaction temperature (192-200 °C), mass ratio of ethylene glycol (EG) to PET (2.5-7.5), and mass ratio of sodium bicarbonate (NaHCO_3) to PET (0.6-1.0%), were under consideration for their catalyst effect on the process. A regression model as a mathematical function of the four factors was obtained to predict the yield of bis(2-hydroxyethyl) terephthalate (BHET) yield and its reliability was evaluated by analysis of variance. A remarkably high yield of 75.7% was obtained with 1.3% error from the predicted value at the optimal operating conditions for temperature, time, EG:PET mass ratio, and NaHCO_3:PET mass ratio of 192 °C, 3.02 h, 6.09 and 0.82%, respectively. The experimental results and analysis of response surfaces revealed that an inappropriately large amount of catalyst might restrict monomer conversion under excess EG conditions. Moreover, PET glycolysis process could be carried out under lower temperature and shorter time due to the profound effect of excess EG at a suitable concentration level of NaHCO_3. This suggested future in-depth analysis with wider parameter space to optimize PET glycolysis under conditions of large amount of EG and to gain insight into the interaction effect between EG amount and catalyst concentration.
机译:在本研究中,应用了基于四因素Box-Behnken设计的响应表面方法,表明聚对苯二甲酸乙二醇酯(PET)的糖酵解的最佳条件,并分析了该过程对因素的个体和相互作用效应。感兴趣的四个独立因素,即反应时间(3-5小时),反应温度(192-200℃),乙二醇(例如)对PET(2.5-7.5)的质量比和碳酸氢钠的质量比(NaHCO_3 )对于宠物(0.6-1.0%),正在考虑其对该方法的催化剂影响。作为四个因子的数学函数的回归模型得到了预测双苯二甲酸酯(BHET)产率的产率,通过分析方差评价其可靠性。在最佳操作条件下的预测值下获得了75.7%的显着高产量为75.7%,以进行温度,时间,例如:PET质量比和NaHCO_3:PET质量比为192°C,3.02小时,6.09和0.82 %, 分别。响应表面的实验结果及分析显示,不恰当的大量催化剂可能限制单体转化在过量的情况下。此外,由于在NaHCO_3的合适浓度水平下,可以在较低温度和较短的时间内进行PET糖醇解过程。这提出了未来的深入分析,具有更广泛的参数空间,以在大量的条件下优化PET糖酵解,并在例如量和催化剂浓度之间获得相互作用效果的洞察。

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  • 来源
    《Polymer Degradation and Stability》 |2020年第9期|109257.1-109257.10|共10页
  • 作者单位

    Department of Chemical Engineering College of Engineering Technology Can Tho University Campus Ⅱ 3/2 Street Xuan Khanh Ward Ninh Kieu District Can Tho Viet Nam;

    Department of Chemical Engineering College of Engineering Technology Can Tho University Campus Ⅱ 3/2 Street Xuan Khanh Ward Ninh Kieu District Can Tho Viet Nam;

    Department of Chemical Engineering College of Engineering Technology Can Tho University Campus Ⅱ 3/2 Street Xuan Khanh Ward Ninh Kieu District Can Tho Viet Nam;

    Department of Automation Technology College of Engineering Technology Can Tho University Campus Ⅱ 3/2 Street Xuan Khanh Ward Ninh Kieu District Can Tho Viet Nam;

    Faculty of Materials Science and Engineering Kyoto Institute of Technology Kyoto 606-8585 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Glycolysis; Sodium bicarbonate; PET; Catalyst; Response surface methodology; Box-behnken design;

    机译:糖酵解;碳酸氢钠;宠物;催化剂;响应面方法;Box-Behnken设计;

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