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浅析羧基对多层软包装薄膜分层的影响

Towards a Better Understanding of Delamination of Multilayer Flexible Packaging Films by Carboxylic Acids.

机构信息

Laboratory for Circular Process Engineering (LCPE), Department of Green Chemistry and Technology, Ghent University, Graaf Karel De Goedelaan 5, 8500, Kortrijk, Belgium.

Laboratory for Chemical Technology (LCT), Department of Materials, Textiles and Chemical Engineering, Faculty of Engineering & Architecture, Ghent University, Technologiepark 121, 9052, Zwijnaarde, Belgium.

出版信息

ChemSusChem. 2021 Oct 5;14(19):4198-4213. doi: 10.1002/cssc.202002877. Epub 2021 Feb 10.

Abstract

Recycling multilayer plastic packaging is challenging due to its intrinsic compositional heterogeneity. A promising route to increase recycling rates for these materials is delamination, which allows recycling the polymers separately. Yet, this process is not well understood on a fundamental level. This study aimed to obtain first principles-based insights of the delamination mechanism of multilayer flexible packaging film (MFPF) with carboxylic acids. Delamination of MFPFs was described through a model based on Fick's first law of diffusion and first-order dissolution kinetics of polyurethane adhesives. The model was experimentally tested on 5 different MFPFs at different temperatures (50-75 °C), formic acid concentrations (50-100 vol %), and solid/liquid (S/L) ratios (0.005, 0.025, and 0.12 g mL ). Under the studied conditions the model proved to successfully estimate the delamination time of MFPF with the average Theil's Inequality Coefficient (TIC) value of 0.14. Essential for scaling-up delamination processes is the possibility to use high S/L ratios as the solubility of the adhesive is rarely limiting.

摘要

由于多层塑料包装的固有成分异质性,回收利用具有挑战性。一种提高这些材料回收率的有前途的方法是分层,这允许将聚合物分开回收。然而,在基础层面上,这个过程还没有被很好地理解。本研究旨在从第一性原理上了解羧酸对多层软包装膜(MFPF)分层的机理。通过基于菲克第一扩散定律和聚氨酯胶粘剂一级溶解动力学的模型来描述 MFPF 的分层过程。该模型在 5 种不同的 MFPF 上在不同的温度(50-75°C)、甲酸浓度(50-100 体积%)和固/液(S/L)比(0.005、0.025 和 0.12 g mL)下进行了实验测试。在研究条件下,该模型成功地估计了 MFPF 的分层时间,平均泰尔不等式系数(TIC)值为 0.14。对于分层过程的放大化,关键是能够使用高 S/L 比,因为胶粘剂的溶解度很少是限制因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f7be/8518906/d6824e6e3b3b/CSSC-14-4198-g014.jpg

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