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Influence of Different Degradation Techniques on the Molecular Weight Distribution of κ -Carrageenan

机译:不同降解工艺对κ-角叉菜胶分子量分布的影响

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Carrageenan as an abundant natural carbohydrate could be used as a representative material instead of synthetic polymers. In this work, the degradation of κ-Carrageenan by means of ultrasound irradiation at a frequency of 24 kHz and its combination with heterogeneous Titanium dioxide, followed by a photocatalytic process was investigated. The scission of carrageenan chains induced by a high intensity field of ultrasonic irradiation; result in various molecular weights of carrageenan. The low molecular weight species of carrageenan have biological and pharmaceutical uses that only should be obtained from the degradation method. The ultrasound power not only led to enhanced turbulence and liquid streaming, but also increased the active surface area. Therefore, TiO_(2) sonophotocatalysis was carried out faster than sonolysis and sonocatalysis processes. The influence of the basic operational parameters such as, ultrasound power and amount of TiO_(2) on the degradation rate of carrageenan was also studied. The results revealed that the extent of sonolytic degradation was increased with increasing of ultrasound power (in the range 30–80 W) and at higher catalyst concentration, the degradation rate in the solution soared. The degraded carrageenans were characterized by gel permeation chromatography (GPC).
机译:角叉菜胶是一种丰富的天然碳水化合物,可以代替合成聚合物用作代表材料。在这项工作中,研究了在24 kHz频率下通过超声辐射降解κ-角叉菜聚糖及其与异质二氧化钛的结合,然后进行光催化过程。高强度超声辐照引起角叉菜胶链断裂;导致角叉菜胶的各种分子量。角叉菜胶的低分子量种类具有生物学和药学用途,仅应从降解方法中获得。超声功率不仅导致湍流和液体流动增强,而且增加了有效表面积。因此,TiO_(2)声光催化比声催化和声催化过程进行得更快。还研究了超声功率和TiO_(2)等基本操作参数对角叉菜胶降解率的影响。结果表明,随着超声功率的增加(在30-80 W范围内),声分解降解的程度增加,并且在较高的催化剂浓度下,溶液的降解速率猛增。降解的角叉菜胶通过凝胶渗透色谱法(GPC)表征。

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