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Formation of Bis(hydroxyethyl) terephthalate from waste plastic using ionic liquid as catalyst

机译:使用离子液体作为催化剂从废塑料形成双(羟乙基)对苯二甲酸酯

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摘要

The accumulation of waste PET leads to serious environmental problem. PET degradation has been hot topic and is studied by lots of researchers. At present, numerous catalysts have been developed, among which ionic liquid catalyst is attractive due to its excellent advantages like convenient recycling and highly catalytic effect. In this work, a series of ionic liquids based on 1,1,3,3-tetramethylguanidine (TMG) were synthesized and used as catalyst of PET degradation. The influence of different structure of cation and different metal salt on PET degradation were studied. DFT calculation showed that the interaction between the ionic liquid and ethylene glycol can be changed by adjustment of the structure of the cation. At optimal condition, using [C_6TMC]Cl/2ZnCl_2 as catalyst, PET conversion was 100% and BHET yield was 92.7%. To our best knowledge, this is first report about ionic liquid catalyst of PET degradation with superior BHET yield. Catalytic effect of [C_6TMG]Cl/2ZnCl_2 did not obviously decrease after it was reused for six times. Moreover, the degradation of commercial beverage bottles was investigated using [C_6TMGlCl/2ZnCl_2 as the catalyst, the BHET yield of 84% was obtained, and the quality purity of the product was 90%. In addition, possible mechanism was explored.
机译:废宠物的积累导致严重的环境问题。宠物退化是热门话题,由大量的研究人员研究。目前,已经开发了许多催化剂,其中离子液体催化剂由于其具有方便的回收和高催化效应而具有优异优势,因此具有吸引力。在这项工作中,合成了基于1,1,3,3-四甲基胍(TMG)的一系列离子液体并用作PET降解的催化剂。研究了不同结构与不同金属盐对PET降解的影响。 DFT计算表明,可以通过调节阳离子结构来改变离子液体和乙二醇之间的相互作用。在最佳条件下,使用[C_6TMC] Cl / 2ZNCl_2作为催化剂,PET转化率为100%,BHET产率为92.7%。为了我们的最佳知识,这是具有优异的BHET产率的PET降解离子液体催化剂的首次报告。在重用六次后,[C_6TMG] Cl / 2ZnCl_2的催化作用在重用后没有明显降低。此外,使用[C_6TMGLCL / 2ZNCl_2作为催化剂研究了商业饮料瓶的降解,获得了84%的BHET产率,产物的质量纯度为90%。此外,还有可能的机制。

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  • 来源
    《Polymer Degradation and Stability》 |2021年第8期|109601.1-109601.9|共9页
  • 作者单位

    Beijing Key Laboratory of Membrane Science & Technology College of Chemical Engineering Beijing University of Chemical Technology Beijing 100029 China;

    Beijing Key Laboratory of Membrane Science & Technology College of Chemical Engineering Beijing University of Chemical Technology Beijing 100029 China;

    Beijing Key Laboratory of Membrane Science & Technology College of Chemical Engineering Beijing University of Chemical Technology Beijing 100029 China;

    Beijing Key Laboratory of Membrane Science & Technology College of Chemical Engineering Beijing University of Chemical Technology Beijing 100029 China;

    Beijing Key Laboratory of Membrane Science & Technology College of Chemical Engineering Beijing University of Chemical Technology Beijing 100029 China;

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