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Influence of Ammonium Zirconium Carbonate on Properties of Poly(vinyl alcohol)/Xylan Composite Films

机译:碳酸铵对聚(乙烯醇)/木聚合物复合膜性能的影响

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摘要

A series of composite films were prepared using poly(vinyl alcohol) (PVA) and xylan as degradable raw materials under the addition of glycerol and ammonium zirconium carbonate (AZC). The influences of AZC on the mechanical properties, water-resisting properties, thermal stability, solubility (S), and water vapor permeability of PVA/xylan composite films were comparatively discussed. The results showed that AZC had a positive impact on improving the water resistance and mechanical properties of composite films especially for elongation at break (EAB). With increasing the AZC amounts from 0% to 15%, EAB increased rapidly from 18.5% to 218.0%, and the S values decrease from 11.64% to 8.64%. When the AZC amount reached 15%, the tensile strength still performed well (22.10 MPa). The great compatibility of components in composite films was also observed. Moreover, the addition of AZC had great influences on the thermal stability of composite films and the degradation in soil.
机译:使用聚(乙烯醇)(PVA)和木聚糖制备一系列复合薄膜,作为添加甘油和碳酸铵(AZC)的可降解原料。相对讨论了AZC对AZC对机械性能,防水性能,热稳定性,溶解度和水蒸气渗透性的影响,讨论了PVA / Xylan复合膜的水蒸气渗透性。结果表明,AZC对改善复合薄膜的耐水性和机械性能,特别是在断裂(EAB)处的伸长率产生正影响。随着AZC的增加量为0%至15%,EAB从18.5%达到218.0%的速度迅速增加,并且S值从11.64%降至8.64%。当AZC量达到15%时,拉伸强度仍然良好(22.10MPa)。还观察到复合膜中的组分的巨大相容性。此外,AZC的添加对复合膜的热稳定性和土壤中的降解产生了极大的影响。

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