Jorda-Reolid Maria, Gomez-Caturla Jaume, Ivorra-Martinez Juan, Stefani Pablo Marcelo, Rojas-Lema Sandra, Quiles-Carrillo Luis
Departamento de Materiales y Tecnologías, Asociación de Investigación de la Industria del Juguete, Conexas y Afines (AIJU), Av. de la Industria, 23, 03440 Ibi, Spain.
Instituto de Tecnología de Materiales (ITM), Universitat Politècnica de València (UPV), Plaza Ferrándiz y Carbonell 1, 03801 Alcoy, Spain.
Polymers (Basel). 2021 Mar 17;13(6):922. doi: 10.3390/polym13060922.
The present study reports on the development of wood plastic composites (WPC) based on micronized argan shell (MAS) as a filler and high-density polyethylene obtained from sugarcane (Bio-HDPE), following the principles proposed by the circular economy in which the aim is to achieve zero waste by the introduction of residues of argan as a filler. The blends were prepared by extrusion and injection molding processes. In order to improve compatibility between the argan particles and the green polyolefin, different compatibilizers and additional filler were used, namely polyethylene grafted maleic anhydride (PE-g-MA 3 wt.-%), maleinized linseed oil (MLO 7.5 phr), halloysite nanotubes (HNTs 7.5 phr), and a combination of MLO and HNTs (3.75 phr each). The mechanical, morphological, thermal, thermomechanical, colorimetric, and wettability properties of each blend were analyzed. The results show that MAS acts as a reinforcing filler, increasing the stiffness of the Bio-HDPE, and that HNTs further increases this reinforcing effect. MLO and PE-g-MA, altogether with HNTs, improve the compatibility between MAS and Bio-HDPE, particularly due to bonds formed between oxygen-based groups present in each compound. Thermal stability was also improved provided by the addition of MAS and HNTs. All in all, reddish-like brown wood plastic composites with improved stiffness, good thermal stability, enhanced compatibility, and good wettability properties were obtained.
本研究报告了基于微细化阿甘果壳(MAS)作为填料和甘蔗来源的高密度聚乙烯(生物高密度聚乙烯,Bio-HDPE)开发木塑复合材料(WPC)的情况,遵循循环经济提出的原则,即通过引入阿甘果壳残渣作为填料来实现零废物目标。通过挤出和注塑工艺制备共混物。为了提高阿甘果壳颗粒与绿色聚烯烃之间的相容性,使用了不同的增容剂和额外的填料,即马来酸酐接枝聚乙烯(PE-g-MA,3 wt.-%)、马来化亚麻籽油(MLO,7.5 phr)、埃洛石纳米管(HNTs,7.5 phr)以及MLO和HNTs的组合(各3.75 phr)。分析了每种共混物的机械、形态、热、热机械、比色和润湿性。结果表明,MAS作为增强填料,提高了Bio-HDPE的刚度,并且HNTs进一步增强了这种增强效果。MLO和PE-g-MA与HNTs一起改善了MAS和Bio-HDPE之间的相容性,特别是由于每种化合物中存在的氧基之间形成的键。添加MAS和HNTs也提高了热稳定性。总而言之,获得了具有改善的刚度、良好的热稳定性、增强的相容性和良好润湿性的微红棕色木塑复合材料。