Zheng Hongbing, Yue Dongmei
Key Laboratory of Beijing City on Preparation and Processing of Novel Polymer Materials, Beijing 100029, China.
Materials (Basel). 2025 Aug 9;18(16):3736. doi: 10.3390/ma18163736.
Natural rubber (NR) possesses excellent comprehensive properties and plays an irreplaceable role in both national defense and people's livelihood. In recent years, lignin, as a new development trend, has emerged as a reinforcing filler in natural rubber, partially replacing traditional carbon black, or serving as an antioxidant in rubber. However, lignin, a polar biomass filler, exhibits poor compatibility with non-polar natural rubber. To address the compatibility issue between the two, this paper adopts an in situ method, utilizing formic acid and hydrogen peroxide to modify natural rubber into two types of epoxidized natural rubber (ENR) with different degrees of epoxidation (E-25% and E-45%). Subsequently, through wet mixing, it is combined with a lignin aqueous solution (20 parts), and ethanol is used as a flocculant to prepare lignin/ENR composite rubber materials. Comprehensive characterization of the composite rubber materials reveals that after epoxidation modification, the interfacial compatibility between lignin and natural rubber has been significantly improved. Wet mixing also effectively enhances the dispersibility of lignin in the rubber matrix. Compared to natural rubber, the composite material with an epoxidation degree of 25% exhibits significantly superior mechanical properties and thermal stability. The tensile properties of the composite rubber increase from 29.4 MPa to 36.2 MPa, indicating the significant reinforcing effect of lignin. This study aims to investigate the effects of the epoxidation degree (25% and 45%) of epoxidized natural rubber (ENR) and the mixing method on the compatibility and reinforcement performance of composite rubber, providing a new method for preparing high-performance lignin/ENR composites.
天然橡胶(NR)具有优异的综合性能,在国防和民生领域都发挥着不可替代的作用。近年来,木质素作为一种新的发展趋势,已成为天然橡胶中的增强填料,部分替代传统炭黑,或在橡胶中用作抗氧化剂。然而,木质素作为一种极性生物质填料,与非极性天然橡胶的相容性较差。为了解决两者之间的相容性问题,本文采用原位法,利用甲酸和过氧化氢将天然橡胶改性为两种不同环氧化程度的环氧化天然橡胶(ENR)(E-25%和E-45%)。随后,通过湿混将其与木质素水溶液(20份)混合,并使用乙醇作为絮凝剂制备木质素/ENR复合橡胶材料。对复合橡胶材料的综合表征表明,经过环氧化改性后,木质素与天然橡胶之间的界面相容性得到了显著改善。湿混也有效地提高了木质素在橡胶基体中的分散性。与天然橡胶相比,环氧化程度为25%的复合材料表现出明显更优异的力学性能和热稳定性。复合橡胶的拉伸性能从29.4MPa提高到36.2MPa,表明木质素具有显著的增强效果。本研究旨在探讨环氧化天然橡胶(ENR)的环氧化程度(25%和45%)和混合方法对复合橡胶相容性和增强性能的影响,为制备高性能木质素/ENR复合材料提供一种新方法。