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首页> 外文期刊>Journal of Applied Polymer Science >Synthesis, Characterization, and Thermal Behaviors of Tannin Stearates Prepared from Quebracho and Pine Bark Extracts
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Synthesis, Characterization, and Thermal Behaviors of Tannin Stearates Prepared from Quebracho and Pine Bark Extracts

机译:从Quebracho和松树皮提取物制备的单宁硬脂酸酯的合成,表征和热行为

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Reported is the preparation of various condensed tannin stearates and the associated chemical characterization and thermal properties of these products. Stearate esters of condensed tannins from both quebracho and pine bark extracts were prepared in generally high, isolated yields from reaction with stearic acid chloride. Tannin esterification was confirmed by both Fourier transform infrared and nuclear magnetic resonance (NMR), and the average degree of stearate substitution was calculated from H-1-NMR analysis. Product degree of substitution (DS) was observed to proportionately increase with higher stearic acid chloride ratio with maximum DS values of 4.0 and 5.1 achieved for quebracho and pine tannins, respectively. Thermal analysis revealed that tannin stearate products have increased thermal stability with a degradation onset at significantly higher temperature for those samples possessing relatively greater DS. Analysis using differential scanning calorimetry revealed isolated products to consist of multiple components which exhibit interesting melt behaviors, a likely result from their work up on isolation. However, multiple melt features of the individual components in products were lost on heating to give single, broad melt endotherms due to coalescence of sample components. Furthermore, tannin stearate samples with high DS show relatively greater endothermic melting at higher temperature than those samples with lower DS.
机译:报告了各种缩合单宁硬脂酸酯的制备以及这些产品的相关化学特性和热性能。从quebracho和松树皮提取物中得到的缩合单宁的硬脂酸酯是从与硬脂酰氯的反应中分离得到的高产率制备的。通过傅立叶变换红外和核磁共振(NMR)证实单宁酯化,并且通过H-1-NMR分析计算硬脂酸酯的平均取代度。观察到产品取代度(DS)随着较高的硬脂酰氯比率成比例增加,而quebracho和松树单宁的最大DS值分别达到4.0和5.1。热分析表明,对于那些具有相对较大DS的样品,单宁硬脂酸酯产品具有更高的热稳定性,并在更高的温度下开始降解。使用差示扫描量热法的分析表明,分离出的产物由多种组分组成,这些组分表现出有趣的熔融行为,这很可能是由于分离后的工作。但是,由于样品成分的聚结,产品中单个成分的多种熔融特征会在加热后消失,从而产生单一而宽泛的熔融吸热。此外,具有较高DS的单宁硬脂酸酯样品比具有较低DS的样品在较高温度下显示出相对较大的吸热熔化。

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