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首页> 外文期刊>Waste Management >Nanostructured micro particles as a low-cost and sustainable catalyst in the recycling of PET fiber waste by the glycolysis method
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Nanostructured micro particles as a low-cost and sustainable catalyst in the recycling of PET fiber waste by the glycolysis method

机译:纳米结构微粒作为低成本和可持续的催化剂,通过糖醇分解方法再循环PET纤维废物

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摘要

Magnetic Mg-Al-O@Fe_3O_4 micro particles were synthesized by coating nanosized Mg-Al double oxides onto Fe_3O_4 micro particles. The formed hierarchical structure gave Mg-Al-O@Fe_3O_4 micro particles a high active surface area, which enabled these micro particles to work efficiently as a catalyst in the glycolysis of poly(ethylene terephthalate) (PET). The bis(hydroxyethyl) terephthalate (BHET) yield reached above 80 mol% in the presence of 0.5 wt% of Mg-Al-O@Fe_3O_4 micro catalyst in the reaction system within 90 min at 240 °C After the reaction, Mg-Al-O@Fe_3O_4 micro catalyst was easily retrieved by a magnetic decantation and can be repetitively used for two times with a high catalytic efficiency. After that, the deactivated Mg-Al-O@Fe_3O_4 micro catalyst can be regenerated by heat treatment. The regenerated Mg-Al-O@Fe_3O_4 micro catalyst displays a comparable catalytic performance as that of the virgin catalyst. In addition, the Mg-Al double oxides and Fe_3O_4 micro particles are low-cost and environmentally benign. Therefore, the Mg-Al-O@Fe_3O_4 micro catalyst may contribute to an economically and environmentally improved large-scale circular recycling of PET fiber waste.
机译:通过将纳米型Mg-Al双氧化物涂覆到Fe_3O_4微粒上,合成磁性Mg-Al-O @ Fe_3O_4微颗粒。形成的等级结构得到Mg-Al-O @ Fe_3O_4微粒高活性表面积,使这些微粒能够有效地作为聚(苯二甲酸乙二醇酯)(PET)的糖溶解中的催化剂。在反应后在240℃下在240℃下,在反应体系中在240℃下,在反应体系中在240分钟内在240分钟内达到0.5wt%的Mg-Al-o @ Fe_3O_4微催化剂以上的双苯二甲酸酯(BHET)产率高于80mol%。 -O @Fe_3O_4微催化剂通过磁性倾析容易检索,并且可以以高催化效率重复使用两次。之后,可以通过热处理再生去活化的Mg-Al-O @ Fe_3O_4微催化剂。再生Mg-Al-O @ Fe_3O_4微催化剂显示出与原始催化剂的相当催化性能。此外,Mg-Al双氧化物和Fe_3O_4微粒是低成本和环境良性的。因此,Mg-Al-O @ Fe_3O_4微催化剂可能有助于PET纤维废物的经济和环境改善的大规模圆形回收。

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