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首页> 外文期刊>Polymer Degradation and Stability >Dependence of fungal biodegradation of PEG/castor oil-based polyurethane elastomers on the hard-segment structure
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Dependence of fungal biodegradation of PEG/castor oil-based polyurethane elastomers on the hard-segment structure

机译:PEG /蓖麻油基聚氨酯弹性体的真菌生物降解作用对硬段结构的依赖

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摘要

In the context of protecting of the environment, this work studies the biodegradation of PEG-based polyurethane elastomer films in the presence of the soft rot fungus Chaetomium globosum, determined via the Petri-dish test. Using PEG with high-molecular weight (MW = 1500) as a chain extender led to polyurethane elastomers with lower physical crosslink density and higher swelling rates. The structural modifications in the hard-segment area (C=O and N-H peaks) are considerable and were analyzed by FTIR spectroscopy. Biodegradation lowers the final mechanical properties, but increases yield points, especially in the case of polyurethane elastomers crosslinked with castor oil. Polyurethane elastomer samples showed visible degradation proved by the mechanical weakening of the films. Thus, breaking strains decrease from 670-1180% to 500-680% and tensile strengths decreased from 11.5-27.5 MPa to 4 -11.5 MPa after 130 days of fungal biodegradation. The changes in the morphology of the polyurethane films surface were analyzed by SEN! and have been found to exhibit increasing porous structure and fungal hyphae. The effects of the hard-segment composition of the polyurethane elastomers on the fungal biodegradation behaviour were investigated.
机译:在保护环境的背景下,这项工作研究了通过陪替氏培养皿测定的在软腐真菌球壳拟南芥(Chaetomium globosum)存在下基于PEG的聚氨酯弹性体薄膜的生物降解。使用具有高分子量(MW = 1500)的PEG作为扩链剂,可得到具有较低物理交联密度和较高溶胀率的聚氨酯弹性体。硬段区域的结构修饰(C = O和N-H峰)相当大,并已通过FTIR光谱分析。生物降解会降低最终的机械性能,但会提高屈服点,尤其是在聚氨酯弹性体与蓖麻油交联的情况下。聚氨酯弹性体样品显示出明显的降解,这是由膜的机械弱化证明的。因此,在真菌生物降解130天后,断裂应变从670-1180%降低至500-680%,拉伸强度从11.5-27.5 MPa降低至4 -11.5 MPa。通过SEN!分析聚氨酯膜表面的形态变化。并且已经发现其显示出增加的多孔结构和真菌菌丝。研究了聚氨酯弹性体的硬段组成对真菌生物降解行为的影响。

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