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Microwave-Induced Synthesis of Carboxymethyl Hemicelluloses and Their Rheological Properties

机译:微波诱导羧甲基半纤维素的合成及其流变性质

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In this article, a facile, rapid, and efficient method was developed for the preparation of carboxymethyl hemicelluloses using microwave-induced organic reaction enhancement chemistry. The influences of the factors including reaction time, temperature, and the amount of sodium mono-chloroacetate and sodium hydroxide on the degree of substitution (DS) of the products were investigated. The rheological properties and the chemical structure of the resulting polymers were also studied. It was found that microwave irradiation could significantly promote the chemical reaction efficiency and accelerate the carboxymethylation of hemicelluloses with sodium mono-chloroacetate. Therefore, carboxymethyl hemicelluloses with higher DS of 1.02 could be obtained in much shorter time scales as compared to the conventional heating method. Results from rheological analysis indicated that carboxymethyl hemicellulose solutions exhibited shear-thinning behavior in the range of shear rates tested and showed lower viscosity and modulus in comparison with those of the native hemicelluloses due to lower molecular weight and the role of carboxymethyl groups in reducing the entanglements between hemicelluloses chains.
机译:在本文中,开发了一种使用微波诱导的有机反应增强化学方法制备羧甲基半纤维素的简便,快速而有效的方法。研究了反应时间,温度,一氯乙酸钠和氢氧化钠的用量等因素对产物取代度(DS)的影响。还研究了所得聚合物的流变性质和化学结构。发现微波辐射可以显着提高化学反应效率,并用单氯乙酸钠加速半纤维素的羧甲基化。因此,与常规加热方法相比,可以在更短的时间范围内获得具有更高的DS为1.02的羧甲基半纤维素。流变学分析的结果表明,羧甲基半纤维素溶液在测试的剪切速率范围内表现出剪切稀化行为,并且由于具有较低的分子量和羧甲基在减少纠缠中的作用,因此与天然半纤维素相比具有较低的粘度和模量。在半纤维素链之间。

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