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Effects of acetylation on the thermal decomposition kinetics of makino bamboo fibers

机译:乙酰化对木竹纤​​维热分解动力学的影响

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In this study, makino bamboo (Phyllostachys makinoi) fibers were acetylated with different solution ratios of acetic anhydride/dimethylformamide using a liquid phase reaction. This reaction resulted in the production of acetylated bamboo fibers (BFs) with the following weight percent gains (WPGs): 2, 6, 9, 13, and 19%. The effects of the acetylation level on the thermal decomposition kinetics of bamboo fibers were evaluated by thermogravimetric analysis. The results revealed that as the acetylation level increased, both the onset and maximum decomposition temperatures increased. In addition, four model-free iso-conversional methods, the Friedman method, Flynn-Wall-Ozawa method, the Starink method, and the modified Coats-Redfern method, were used to determine the thermal decomposition kinetics. Accordingly, the activation energies of thermal decomposition with conversion rates ranging between 10% and 70% were 191-196, 190-191, 192-194, 182-186, 186-191, and 189-201kJ/mol for unmodified BFs and acetylated BFs with WPGs of 2, 6, 9, 13, and 19%, respectively. There were no significant dependencies among them. Furthermore, the Avrami method was used to determine the reaction order of unmodified BFs (0.47), which was lower than those of acetylated BFs (0.55-0.74).
机译:在这项研究中,使用液相反应,用不同比例的乙酸酐/二甲基甲酰胺溶液比例将玛基诺竹(Phyllostachys makinoi)纤维乙酰化。该反应导致乙酰化竹纤维(BFs)的生产,其重量增加率如下(WPG):2%,6%,9%,13%和19%。通过热重分析评价了乙酰化水平对竹纤维热分解动力学的影响。结果表明,随着乙酰化水平的增加,起始和最高分解温度均增加。此外,使用了四种无模型的等温转化方法,即弗里德曼方法,弗林-沃尔-小泽方法,Starink方法和改进的Coats-Redfern方法,来确定热分解动力学。因此,对于未改性的BF和乙酰化的,热分解的活化能(转化率在10%和70%之间)为191-196、190-191、192-194、182-186、186-191和189-201kJ / mol。 WPG分别为2、6%,9、13和19%的BF。它们之间没有显着的依赖性。此外,使用Avrami方法确定未修饰BFs(0.47)的反应顺序,该顺序比乙酰化BFs(0.55-0.74)低。

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