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Decolorization and reusing of PET depolymerization waste liquid by electrochemical method with magnetic nanoelectrodes

机译:磁纳米电化学方法通过电化学方法脱色和再利用PET解聚废液

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摘要

This work is aimed at electrochemical decolorization of real waste liquid which obtained in the PET depolymerization process. Firstly, PET fabrics were glycolysized by utilizing excess ethylene glycol (EG). Then, the glycolysis product was mixed with water and purified through repeated crystallization to get bis(2-hydroxyethyl) terephthalate (BHET) crystal. At last, the waste liquid of the depolymerization process was electrochemical decolorized by utilizing chitosan/Fe~(3)O~(4)nanoparticles as the dispersed electrodes under a DC voltage. The UV-Vis absorptions at 338, 531, and 635?nm which were due to the dyes in the waste liquid decreased with the electrolysis time. In contrast, slight change of absorption of EG (at 322?nm) indicated that EG was not destroyed in the electrolytic process. The variation of color removal efficiency with dosage of chitosan/Fe~(3)O~(4)nanoparticles, applied voltage, concentration of electrolyte, pH and electrolytic time were investigated. The max color removal efficiency was 87.24%. PET fabrics were depolymerized by using the decolorized waste liquid or mixture of decolorized waste liquid and EG (1:1 v / v ), and the yields of BHET were 72.3% and 76.6%, respectively. The products were BHET without dyes which were confirmed by DSC and FTIR spectroscopy. Graphical abstract.
机译:这项工作旨在实现在PET解聚过程中获得的实际废液的电化学脱色。首先,通过利用过量的乙二醇(例如),宠物织物溶解。然后,将糖酵解产物与水混合并通过反复结晶纯化,得到双苯二甲酸酯(BHET)晶体。最后,通过在DC电压下利用壳聚糖/ Fe〜(3)O〜(4)纳米颗粒,通过使用壳聚糖/ Fe〜(3)×(4)纳米颗粒作为分散电极来脱色的电化学脱色。由于废物中的染料在338,531和635℃下的UV-Vis吸收率随着电解时间而降低。相反,例如(在322℃)的吸收的轻微变化表明例如在电解过程中未被破坏。研究了用壳聚糖/ Fe〜(3)O〜(4)纳米颗粒,施加的电压,电解质浓度,pH和电解时间的用量的色彩去除效率的变化。最大颜色去除效率为87.24%。通过使用脱色废液或脱色废液的混合物和例如(1:1V / v)的混合物,分别通过脱色废液或混合物来解聚,分别为72.3%和76.6%。产品是没有染料的BHET,其通过DSC和FTIR光谱证实。图形概要。

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