Miedzianowska-Masłowska Justyna, Masłowski Marcin, Strzelec Krzysztof
Institute of Polymer and Dye Technology, Lodz University of Technology, Stefanowskiego 16, 90-537 Lodz, Poland.
Polymers (Basel). 2024 Dec 9;16(23):3444. doi: 10.3390/polym16233444.
This study explores the impact of three bioadditives derived from Alfalfa-biomass, bio-ashes, and lyophilisates-on natural rubber composites, with a primary focus on the anti-aging properties of lyophilisates. Composite samples were prepared by incorporating these bioadditives into natural rubber and analyzed using various characterization techniques to evaluate mechanical, thermal, aging, and surface properties. The results highlight the promising anti-aging effects of lyophilisates, significantly enhancing the aging resistance of natural rubber. The aging factor was the closest to unity among all systems. Biomass and bio-ashes were also examined, offering insights into their influence on tensile strength, viscoelasticity, and surface wettability. The tensile strength values were almost 50% higher than those of the reference sample (8.5 MPa). The study provides a detailed understanding of the interactions between these bioadditives and natural rubber, showcasing their potential to enhance elastomer performance. These findings underscore the viability of Alfalfa-based bioadditives as sustainable options for improving rubber properties, with significant implications for industrial applications.
本研究探讨了源自苜蓿生物质、生物灰和冻干物的三种生物添加剂对天然橡胶复合材料的影响,主要关注冻干物的抗老化性能。通过将这些生物添加剂掺入天然橡胶中来制备复合样品,并使用各种表征技术进行分析,以评估其机械、热、老化和表面性能。结果突出了冻干物具有良好的抗老化效果,显著提高了天然橡胶的抗老化性能。老化因子在所有体系中最接近1。还研究了生物质和生物灰,深入了解了它们对拉伸强度、粘弹性和表面润湿性的影响。拉伸强度值比参考样品(8.5兆帕)高出近50%。该研究详细阐述了这些生物添加剂与天然橡胶之间的相互作用,展示了它们增强弹性体性能的潜力。这些发现强调了基于苜蓿的生物添加剂作为改善橡胶性能的可持续选择的可行性,对工业应用具有重要意义。