Hiller Benedikt T, Azzi Julia L, Rennert Mirko
Institute for Biopolymers (ibp) at Hof University, Hof University of Applied Sciences, 95028 Hof, Germany.
Plastics Technology Group, Faculty of Mechanical Engineering, Technische Universität Ilmenau, 98683 Ilmenau, Germany.
Polymers (Basel). 2023 May 31;15(11):2533. doi: 10.3390/polym15112533.
Biobased poly(butylene succinate) (PBS) represents one promising sustainable alternative to petroleum-based polymers. Its sensitivity to thermo-oxidative degradation is one reason for its limited application. In this research, two different varieties of wine grape pomaces (WPs) were investigated as fully biobased stabilizers. WPs were prepared via simultaneous drying and grinding to be used as bio-additives or functional fillers at higher filling rates. The by-products were characterized in terms of composition and relative moisture, in addition to particle size distribution analysis, TGA, and assays to determine the total phenolic content and the antioxidant activity. Biobased PBS was processed with a twin-screw compounder with WP contents up to 20 wt.-%. The thermal and mechanical properties of the compounds were investigated with DSC, TGA, and tensile tests using injection-molded specimens. The thermo-oxidative stability was determined using dynamic OIT and oxidative TGA measurements. While the characteristic thermal properties of the materials remained almost unchanged, the mechanical properties were altered within expected ranges. The analysis of the thermo-oxidative stability revealed WP as an efficient stabilizer for biobased PBS. This research shows that WP, as a low-cost and biobased stabilizer, improves the thermo-oxidative stability of biobased PBS while maintaining its key properties for processing and technical applications.
生物基聚丁二酸丁二醇酯(PBS)是一种有望替代石油基聚合物的可持续材料。其对热氧化降解的敏感性是其应用受限的一个原因。在本研究中,研究了两种不同品种的酿酒葡萄果渣(WP)作为完全生物基稳定剂的效果。通过同时干燥和研磨制备WP,以便在较高填充率下用作生物添加剂或功能填料。除了粒度分布分析、热重分析(TGA)以及测定总酚含量和抗氧化活性的试验外,还对这些副产品的成分和相对水分进行了表征。使用双螺杆混炼机将生物基PBS与WP含量高达20 wt.-%的材料进行加工。使用注塑试样通过差示扫描量热法(DSC)、热重分析(TGA)和拉伸试验研究了这些化合物的热性能和力学性能。使用动态氧化诱导时间(OIT)和氧化热重分析测量来确定热氧化稳定性。虽然材料的特征热性能几乎保持不变,但力学性能在预期范围内发生了变化。热氧化稳定性分析表明WP是生物基PBS的有效稳定剂。本研究表明,WP作为一种低成本的生物基稳定剂,在保持其加工和技术应用关键性能的同时,提高了生物基PBS的热氧化稳定性。