纤维素纳米纤维与接枝甲基丙烯酸甲酯的脱蛋白天然橡胶复合材料的热分解和热氧化降解研究

Nguyễn Thị, Quynh, Ngoc, Le Quang Dien, N. Thu, Tran Thi Ha, Thuy, Nguyen Ngoc, Mai
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摘要

天然橡胶(NR)是一种聚合物,在日常生活中应用广泛。然而,传统橡胶工业严重依赖石油基材料,造成环境污染问题。因此,为了减少环境挑战,人们将天然橡胶与无毒化学品和天然填料(如纤维素纳米纤维 (CNF))结合在一起制成产品。本研究介绍了 CNF 在空气和氮气环境下对由 CNF 和脱蛋白天然橡胶接枝甲基丙烯酸甲酯(DPNR-g-MMA)制成的新型复合材料热性能的影响。MMA 与 DPNR 的接枝共聚是在胶乳相中进行的。利用超声波将 CNF 以 0.5%、1% 和 1.5% 的比例分散在 DPNR-g-PMMA 中,制成 CNF/DPNR-g-PMMA 复合材料。DPNR-g-PMMA 用作复合材料的基体,CNF 用作其增强相。傅立叶变换红外光谱(FTIR)和质子核磁共振光谱(1H NMR)被用来确认接枝共聚是否成功。热重分析法(TGA)和差示扫描量热法(DSC)对材料的热性能进行了研究,其中热重分析法检测了复合材料在空气和氮气环境下的热稳定性。所得数据表明,与 DPNR 和 DPNR-g-PMMA 相比,所有 CNF/DPNR-g-PMMA 复合材料的分解温度都有所降低,尤其是当 CNF 的比例为 1%时。将 CNF 与 DPNR-g-PMMA 混合后,CNF/DPNR-g-PMMA 1%的分解温度在氮气环境中提高了近 2 ℃,在空气环境中提高了 5.27 ℃。这些结果证明,CNF 对 DPNR-g-PMMA 的热稳定性起着关键作用。
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Investigation of Thermal Decomposition and Thermal Oxidative Degradation of a Composite of Cellulose Nanofibers and Deproteinized Natural Rubber Grafted Methyl Methacrylate
Natural rubber (NR) is a polymer that has many applications in daily life. However, the traditional rubber industry relies heavily on petroleum-based materials, causing environmental pollution problems. Therefore, to reduce environmental challenges, products created from NR are combined with non-toxic chemicals and natural fillers such as cellulose nanofibers (CNF). This study presents the effect of CNF on the thermal properties of novel composites made from CNF and deproteinized natural rubber grafted methyl methacrylate (DPNR-g-MMA) under air and nitrogen atmosphere. Graft copolymerization of MMA onto DPNR to produce DPNR-g-PMMA was performed in the latex phase. The CNF/DPNR-g-PMMA composite was created by dispersing CNF in DPNR-g-PMMA at ratios of 0.5%, 1%, and 1.5% using ultrasonic waves. DPNR-g-PMMA was employed as the composite's matrix and CNF served as its reinforcing phase. Fourier transform infrared spectroscopy (FTIR) and proton nuclear magnetic resonance spectroscopy (1H NMR) were used to confirm the success of the graft copolymerization. The thermal properties of materials were studied by Thermalgravimetric analysis (TGA) and Differential scanning calorimetry (DSC), in which the thermal stability of composites was examined via TGA under air and nitrogen atmosphere. The obtained data illustrate that, in comparison to DPNR and DPNR-g-PMMA, the decomposition temperature of all CNF/DPNR-g-PMMA composites, especially at CNF ratio of 1%. After blending CNF to DPNR-g-PMMA, the decomposition temperatures of CNF/DPNR-g-PMMA 1% increased by nearly 2 °C in nitrogen atmosphere and by 5.27 °C in air atmosphere. These results prove that the CNF is a key role in the thermal stability of DPNR-g-PMMA.
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