Rosa Thiago Souza da, Trianoski Rosilani, Michaud Franck, Yamashita Fábio, Iwakiri Setsuo
Programa de Pós-Graduação em Engenharia Florestal, Universidade Federal do Paraná, 632, Av. Prefeito Lothário Meissner, Curitiba 80210-170, Brazil.
Departamento de Engenharia e Tecnologia Florestal, Universidade Federal do Paraná, 632, Av. Prefeito Lothário Meissner, Curitiba 80210-170, Brazil.
Polymers (Basel). 2021 Feb 24;13(5):672. doi: 10.3390/polym13050672.
In this investigation, sludge fibre waste (SFW) and Kraft lignin powder (KLP) are introduced into polylactic acid (PLA) matrix biocomposites. These alternative materials allow for both the reuse of fibre waste from paper mill sludge and a reduction in the amount of high-cost biopolymer used in the same volume. Proportions from 10 to 40 wt.% of SFW with the addition of 2.5% and 5% of KLP are incorporated in PLA by extrusion and injection moulding. The thermogravimetric properties, water absorption, tensile and flexural properties, and morphology of the fabricated biocomposites were investigated. According to the results, KLP contributes to thermically stabilising the loss resulting from the incorporation of SFW. Flexural and tensile tests reveal a more pronounced decrease in strength with an SFW ratio above 10%. The modulus of elasticity increases significantly with an SFW ratio above 20%. The strength properties are stabilised with the addition of 5% KLP. The addition of KLP presents a tendency to reduce water absorption obtained by the incorporation of SFW into biocomposites. Scanning electron micrographs evidence that KLP improves the interfacial adhesion by reducing the voids between fibres and PLA.
在本研究中,将污泥纤维废料(SFW)和硫酸盐木质素粉末(KLP)引入聚乳酸(PLA)基生物复合材料中。这些替代材料既实现了造纸厂污泥纤维废料的再利用,又减少了相同体积中高成本生物聚合物的使用量。通过挤出和注塑成型,将10至40 wt.%的SFW与2.5%和5%的KLP添加到PLA中。研究了制备的生物复合材料的热重性能、吸水性、拉伸和弯曲性能以及形态。结果表明,KLP有助于热稳定因加入SFW而导致的损失。弯曲和拉伸试验表明,当SFW比例高于10%时,强度下降更为明显。当SFW比例高于20%时,弹性模量显著增加。添加5%的KLP可使强度性能稳定。添加KLP呈现出降低因将SFW加入生物复合材料中而导致的吸水性的趋势。扫描电子显微镜照片表明,KLP通过减少纤维与PLA之间的空隙来改善界面粘附性。