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Preparation of Chitosan-Polyvinyl Alcohol Blends and Studies on Thermal and Mechanical Properties

机译:壳聚糖 - 聚乙烯醇共混物的制备及热能和力学性能研究

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Chitosan is a biopolymer, which is an amino polysaccharide derived from the N-deacetylation of chitin. It is a natural polymer because of the presence of degradable enzyme Chitosan. Chitosan is blended with synthetic polymer PVA with formaldehyde enhances the thermal stability. Thermogravimetric analysis was conducted to measure the weight loss of the above mentioned blend systems at a heating rate 10°Cmin~(-1) in nitrogen atmosphere. It is evident that formaldehyde is acting as a cross linker for Chitosan-PVA blend which have high thermal degradation or high thermal stability when compared with Chitosan-PVA-glycerol and Chitosan-PVA blends. The presence of cross linking agents like formaldehyde decreases the solubility to certain extent, and also increases the thermal stability due to the presence of aldehyde (-CHO-) group in the formaldehyde, forming cross links with amine(-NH2-) group present in the Chitosan. This reaction is based on the Schiff's base mechanism. Various compositions of Chitosan-PVA blends have been studied for its thermal and mechanical properties. The mean tensile strength and percentage elongation of Chitosan-PVA blends decreases with decrease in PVA content. But on addition of glycerol on to the blends of Chitosan-PVA, the percentage elongations increase and mean tensile strength decreases.
机译:壳聚糖是一种生物聚合物,是衍生自甲壳素的N-脱乙酰化的氨基多糖。由于存在可降解的酶壳聚糖,它是一种天然的聚合物。用甲醛与合成聚合物PVA混合壳聚糖,增强了热稳定性。进行热量分析以测量在氮气氛中的加热速率10°CMIN〜(-1)的加热速率10°CMIN〜(-1)的重量损失。显然,甲醛作为壳聚糖-PVA混合物的交叉连接器,与壳聚糖-PVA-甘油和壳聚糖-PVA共混物相比,具有高热降解或高热稳定性。甲醛等交联剂的存在降低了某些程度的溶解度,并且还增加了由于甲醛中醛(-CHO-)基团而导致的热稳定性,形成与存在的胺(-NH2-)组的交联链接壳聚糖。该反应基于席夫的基础机制。已经研究了各种壳聚糖-PVA共混物的组合物,用于其热和机械性能。壳聚糖-PVA共混物的平均拉伸强度和百分比伸长率随着PVA含量的降低而降低。但是在甘油上添加到壳聚糖-PVA的混合物上,伸长率升高和平均抗拉强度降低。

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