Development of Biodegradable Poly(Lactic Acid)/Lignin Treated Alkyl Ketene Dimer Properties for Packaging Applications

Wikoramet Teeka, Khemthat Srisujaritpanich, Pattara Somnuake, S. Wacharawichanant
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Abstract

In this work, PLA/lignin treated AKD composites have been developed for packaging applications. The composites were prepared by a thermal processing. The lignin was prepared from the black liquor which is the waste of paper industry by extracting acetic acid and filtering. The resulting lignin has a structure of syringlyl unit (S) and guaiacyl unit (G) because use eucalyptus is a shaft wood use in the paper industry. The lignin contents the PLA matrix were 0.1, 0.3 and 0.5 phr and the improvement of lignin properties by using AKD in ratio 10:1 of lignin and AKD is caused by the reaction between the AKD and the OH group of lignin to from bond called β-ketone ester bond. The treatment of lignin with AKD showed the increase of hydrophobicity and good dispersion in PLA. SEM results of PLA/lignin and PLA/lignin treated AKD showed that when the lignin content increased, the surface roughness was observed except 0.5 phr of PLA/lignin treated AKD composites. The lignin addition decreased the tensile strength of PLA/lignin composites, whereas the PLA/lignin treated AKD at 0.5 phr had similar mechanical properties with neat PLA. Fourier-transform infrared (FTIR) spectroscopy found to be non-crystalline, consistent with differential scanning calorimeter (DSC) results indicated that the enthalpy of crystallization was equal to the enthalpy of melting. Moreover, X-ray diffraction (XRD) result did not appear the peaks. UV-vis analysis indicated the light transmission was protected with increasing lignin contents. Water contact angle test (WCA) results indicated that lignin had a decreasing effect on the waterproofing of the material, but the lignin treated with AKD has a water contact angle similar to that neat PLA.
开发用于包装应用的可生物降解聚乳酸/木质素处理烷基酮二聚体特性
在这项工作中,开发了用于包装应用的聚乳酸/木质素处理 AKD 复合材料。这种复合材料是通过热加工制备的。木质素是从造纸工业废料黑液中提取醋酸并过滤制备的。由于桉树是造纸工业中使用的主要木材,因此生成的木质素具有丁香基(S)和愈创木基(G)的结构。聚乳酸基质中的木质素含量分别为 0.1、0.3 和 0.5 phr,使用 AKD(木质素和 AKD 的比例为 10:1)可改善木质素的性能,这是因为 AKD 与木质素的 OH 基反应生成了称为 β-酮酯键的键。木质素经 AKD 处理后,疏水性增加,在聚乳酸中的分散性良好。聚乳酸/木质素和聚乳酸/木质素处理过的 AKD 的扫描电镜结果表明,当木质素含量增加时,除了 0.5 phr 的聚乳酸/木质素处理过的 AKD 复合材料外,其他材料的表面粗糙度都有所下降。木质素的添加降低了聚乳酸/木质素复合材料的拉伸强度,而 0.5 phr 的聚乳酸/木质素处理 AKD 与纯聚乳酸具有相似的机械性能。傅立叶变换红外光谱(FTIR)显示该复合材料为非结晶材料,这与差示扫描量热仪(DSC)显示的结晶焓等于熔化焓的结果一致。此外,X 射线衍射(XRD)结果也没有出现峰值。紫外可见光分析表明,随着木质素含量的增加,透光率得到了保护。水接触角测试(WCA)结果表明,木质素对材料防水性的影响减小,但经 AKD 处理的木质素的水接触角与纯聚乳酸相似。
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