Belardi Ilary, Sarasini Fabrizio, Tirillò Jacopo, Russo Pietro, De Francesco Giovanni, Marconi Ombretta, Marrocchi Assunta
Department of Agricultural, Food and Environmental Sciences, University of Perugia, 06121 Perugia, Italy.
Department of Chemical Engineering Materials Environment and UdR INSTM, University of Rome La Sapienza, 00184 Rome, Italy.
Polymers (Basel). 2025 Jan 5;17(1):114. doi: 10.3390/polym17010114.
Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) is a highly promising biodegradable and bio-based thermoplastic recognized for its environmental benefits and potential versatility. However, its industrial adoption has been limited due to its inherent brittleness and suboptimal processability. Despite these challenges, PHBV's performance can be tailored for a wide range of applications through strategic modifications, particularly by blending it with other biodegradable polymers or reinforcing it with natural fibers and bio-based fillers. This study explores the potential of brewers' spent grain (BSG) as a sustainable source for the development of PHBV biocomposites. The biocomposites were synthesized by incorporating arabinoxylan-bound benzoate, which can be derived from BSG, as a sustainable filler at concentrations of 4% and 10% /. The resulting materials were characterized using tensile testing, scanning electron microscopy (SEM), thermogravimetric analysis (TGA), and differential scanning calorimetry (DSC). The findings demonstrate that the incorporation of functionalized arabinoxylan significantly enhances the mechanical properties of PHBV, preserves its thermal stability, and increases its crystallinity (from 59.9% to 67.6%), highlighting a positive impact on both material performance and processing characteristics.
聚(3-羟基丁酸酯-co-3-羟基戊酸酯)(PHBV)是一种极具前景的可生物降解且基于生物的热塑性塑料,因其环境效益和潜在的多功能性而受到认可。然而,由于其固有的脆性和欠佳的加工性能,其在工业上的应用受到了限制。尽管存在这些挑战,但通过策略性改性,特别是将其与其他可生物降解聚合物共混或用天然纤维和生物基填料增强,可以针对广泛的应用来调整PHBV的性能。本研究探讨了啤酒糟(BSG)作为开发PHBV生物复合材料的可持续来源的潜力。通过掺入可从BSG中获得的阿拉伯木聚糖结合苯甲酸酯作为可持续填料,以4%和10%/的浓度合成了生物复合材料。使用拉伸试验、扫描电子显微镜(SEM)、热重分析(TGA)和差示扫描量热法(DSC)对所得材料进行了表征。研究结果表明,掺入功能化阿拉伯木聚糖显著提高了PHBV的机械性能,保持了其热稳定性,并增加了其结晶度(从59.9%提高到67.6%),突出了对材料性能和加工特性的积极影响。