Recycling of Polyurethane via Mechanocatalytic Methanolysis/Hydrolysis.

IF 7.5 2区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
ChemSusChem Pub Date : 2025-03-20 DOI:10.1002/cssc.202500253
Bolun Wang, Joel Britschgi, Nguyen Khang Tran, Ivana Jevtovikj, Piyush Ingale, Cansu Mai, Stephan Andreas Schunk, Ferdi Schüth
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引用次数: 0

Abstract

Polyurethane (PU) is the 6th most produced plastic on a global basis, and thus one of the most important targets in the field of recycling of plastic waste. The glycolysis of PU is currently considered the most promising pathway toward industrial implementation. However, the energy consumption during the process, the cost of the excess glycol relative to PU, and the potentially reduced quality of polyol products resulting from glycol residues may still limit the speed of implementation of PU chemical recycling processes from lab to the pilot plant scale. Therefore, an alternative route for PU depolymerization is explored using mechanochemistry and catalysis. In this work, recovery of up to 86% of soluble polyol by mechanocatalytic methanolysis/hydrolysis of NaOH-impregnated commercial PU product (household sponge), with a Cu/MgAlOx co-catalyst below 100 °C, is described. The recycled polyol can serve as new raw material and has been successfully used as feedstock for the resynthesis of PU. The low reaction temperature, reduced volume of solvent, and easy separation of products could make this novel chemical recycling methodology an attractive alternative to the conventional solvolysis pathways.

通过机械催化甲烷分解/水解回收聚氨酯。
聚氨酯(PU)是全球第六大产量的塑料,因此是塑料废物回收领域最重要的目标之一。聚氨酯的糖酵解目前被认为是最有前途的工业实施途径。然而,过程中的能源消耗,相对于PU的过量乙二醇的成本,以及乙二醇残留物可能导致的多元醇产品质量下降,仍然可能限制PU化学回收过程从实验室到中试工厂规模的实施速度。因此,我们探索了一种利用机械化学和催化技术进行聚氨酯解聚的替代途径。在这项工作中,我们描述了在100℃以下用Cu/MgAlOx共催化剂对naoh浸渍的商用PU产品(家用海绵)进行机械催化甲醇解/水解,回收高达86%的可溶性多元醇。回收的多元醇可以作为新的原料,并成功地作为原料用于聚氨酯的再合成。该方法具有反应温度低、溶剂体积小、产物易于分离等优点,是传统溶剂分解途径的一个有吸引力的替代方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ChemSusChem
ChemSusChem 化学-化学综合
CiteScore
15.80
自引率
4.80%
发文量
555
审稿时长
1.8 months
期刊介绍: ChemSusChem Impact Factor (2016): 7.226 Scope: Interdisciplinary journal Focuses on research at the interface of chemistry and sustainability Features the best research on sustainability and energy Areas Covered: Chemistry Materials Science Chemical Engineering Biotechnology
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