Schmidt Juliane, Wei Ren, Oeser Thorsten, Dedavid E Silva Lukas Andre, Breite Daniel, Schulze Agnes, Zimmermann Wolfgang
Department of Microbiology and Bioprocess Technology, Institute of Biochemistry, Leipzig University, 04103 Leipzig, Germany.
Leibniz Institute of Surface Modification, Permoserstr. 15, 04318 Leipzig, Germany.
Polymers (Basel). 2017 Feb 16;9(2):65. doi: 10.3390/polym9020065.
Polyurethanes (PU) are widely used synthetic polymers. The growing amount of PU used industrially has resulted in a worldwide increase of plastic wastes. The related environmental pollution as well as the limited availability of the raw materials based on petrochemicals requires novel solutions for their efficient degradation and recycling. The degradation of the polyester PU Impranil DLN by the polyester hydrolases LC cutinase (LCC), TfCut2, Tcur1278 and Tcur0390 was analyzed using a turbidimetric assay. The highest hydrolysis rates were obtained with TfCut2 and Tcur0390. TfCut2 also showed a significantly higher substrate affinity for Impranil DLN than the other three enzymes, indicated by a higher adsorption constant . Significant weight losses of the solid thermoplastic polyester PU (TPU) Elastollan B85A-10 and C85A-10 were detected as a result of the enzymatic degradation by all four polyester hydrolases. Within a reaction time of 200 h at 70 °C, LCC caused weight losses of up to 4.9% and 4.1% of Elastollan B85A-10 and C85A-10, respectively. Gel permeation chromatography confirmed a preferential degradation of the larger polymer chains. Scanning electron microscopy revealed cracks at the surface of the TPU cubes as a result of enzymatic surface erosion. Analysis by Fourier transform infrared spectroscopy indicated that the observed weight losses were a result of the cleavage of ester bonds of the polyester TPU.
聚氨酯(PU)是广泛使用的合成聚合物。工业上聚氨酯使用量的不断增加导致全球塑料废物的增多。相关的环境污染以及石化原料供应的有限性要求找到新颖的解决方案来实现其高效降解和回收利用。使用比浊法分析了聚酯水解酶LC角质酶(LCC)、TfCut2、Tcur1278和Tcur0390对聚酯型聚氨酯Impranil DLN的降解情况。TfCut2和Tcur0390的水解速率最高。TfCut2对Impranil DLN的底物亲和力也明显高于其他三种酶,这由更高的吸附常数表明。所有四种聚酯水解酶对固体热塑性聚酯聚氨酯(TPU)Elastollan B85A - 10和C85A - 10进行酶促降解后,检测到显著的重量损失。在70℃下200小时的反应时间内,LCC分别使Elastollan B85A - 10和C85A - 10的重量损失高达4.9%和4.1%。凝胶渗透色谱法证实较大的聚合物链优先降解。扫描电子显微镜显示由于酶促表面侵蚀,TPU立方体表面出现裂缝。傅里叶变换红外光谱分析表明观察到的重量损失是聚酯TPU酯键断裂的结果。