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首页> 外文期刊>Process Biochemistry >High-fold improvement of assorted post-consumer poly(ethylene terephthalate) (PET) packages hydrolysis using Humicola insolens cutinase as a single biocatalyst
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High-fold improvement of assorted post-consumer poly(ethylene terephthalate) (PET) packages hydrolysis using Humicola insolens cutinase as a single biocatalyst

机译:使用Humicola Insolens Cutinase作为单一生物催化剂的分类消费后聚(乙二醇酯)(PET)包装水解的高倍

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摘要

The dissemination of technologies for poly(ethylene terephthalate) (PET) recycling is of paramount importance in the context of the plastics circular economy. One of the most promising alternatives is to use enzymes as catalysts for PET depolymerization to its monomers, but this route still needs improvement, especially regarding titer and productivity. In the present work, a sequential approach comprised of fractional factorial and central composite rotatable designs, the path of steepest ascent and one-way evaluation of variable effect, was performed to address these limitations, during assorted post-consumer PET (PC-PET) hydrolysis catalyzed by Humicola insolens cutinase. The highest terephthalic acid concentration and productivity during PC-PET hydrolysis were 100.9 mM (16.8 g/L) and 14.4 mM/day, corresponding to overall improvements of 10-fold and 20-fold, respectively. These data are among the best results described so far for enzyme-catalyzed hydrolysis of used PET packages. Also, the use of a single enzyme system, instead of multiple biocatalysts to achieve final conversion of PET to its monomers, lowers the process complexity and costs.
机译:在塑料循环经济的背景下,聚(乙烯对苯二甲酸乙二醇酯)(PET)回收技术的传播至关重要。最有前途的替代方案之一是使用酶作为PET解聚的催化剂,但这种路线仍然需要改善,特别是关于滴度和生产率。在本作工作中,通过分数阶乘和中央复合旋转设计,陡峭上升的路径和可变效应的单向评估组成的顺序方法是为了解决这些限制,在各种消费者宠物(PC-PET)期间解决这些限制用湿液体催化水解催化剂。 PC-PET水解期间的最高对苯二甲酸浓度和生产率为100.9mm(16.8g / L)和14.4毫米/天,对应于10倍和20倍的总体改善。这些数据是迄今为止所描述的最佳结果,用于酶催化的使用PET包装的水解。此外,使用单一酶系统,而不是多种生物催化剂来实现PET的最终转化为其单体,降低了过程复杂性和成本。

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