Impact of Multiple Reprocessing on Properties of Polyhydroxybutyrate and Polypropylene

热重分析 差示扫描量热法 材料科学 聚丙烯 熔体流动指数 挤压 结晶度 聚羟基丁酸酯 傅里叶变换红外光谱 凝胶渗透色谱法 反应挤出 极限抗拉强度 扫描电子显微镜 复合材料 热稳定性 热分解 化学工程 聚合物 化学 有机化学 共聚物 工程类 热力学 物理 遗传学 生物 细菌
作者
Priyanka Main,Sandra Petersmann,Nadine Wild,Michael Feuchter,Ivica Đuretek,Mariya Edeleva,Peter Ragaert,Ludwig Cardon,Thomas Lucyshyn
出处
期刊:Polymers [MDPI AG]
卷期号:15 (20): 4126-4126 被引量:9
标识
DOI:10.3390/polym15204126
摘要

Biobased plastics have the potential to be sustainable, but to explore their circularity further, current end-of-life options need to be broadened. Mechanical recycling is one of the most accepted methods to bring back plastics into the loop. Polyhydroxybutyrates (PHBs) are biobased and biodegradable in nature with promising properties and varied applications in the market. This study focuses on their potential for mechanical recycling by multiple extrusion cycles (E1–E5) and multi-faceted characterization of the virgin (V) and reprocessed materials from E1 to E5. The behavior is compared to polypropylene (PP) as a reference with a similar property profile, which has also been reprocessed five times. The thermal properties of both series showed a stable melting point and thermal decomposition temperature from thermal analyses (differential scanning calorimetry (DSC) and thermogravimetric analysis (TGA)). However, a steady increase in the degree of crystallinity was observed which could counterbalance the decrease in molecular weight due to repeated extrusion measured by gel permeation chromatography and resulted in similar values of tensile strength across the cycles. The strain at break was impacted after the first extrusion, but no significant change was observed thereafter; the same was observed for impact strength. Even in scanning electron microscopy (SEM) images, virgin and E5 samples appeared similar, showing the stability of morphological characteristics. Fourier transform infrared spectroscopy (FTIR) results revealed that no new groups are being formed even on repeated processing. The deviation between the PHB and PP series was more predominant in the melt mass flow rate (MFR) and rheology studies. There was a drastic drop in the MFR values in PHB from virgin to E5, whereas not much difference was observed for PP throughout the cycles. This observation was corroborated by frequency sweeps conducted with the parallel plate method. The viscosity dropped from virgin to E1 and E2, but from E3 to E5 it presented similar values. This was in contrast to PP, where all the samples from virgin to E5 had the same values of viscosity. This paper highlights the possibilities of mechanical recycling of PHB and explains why future work with the addition of virgin material and other additives is an area to be explored.

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