Vitolina Sanita, Shulga Galia, Neiberte Brigita, Jaunslavietis Jevgenijs, Verovkins Anrijs, Betkers Talrits
Latvian State Institute of Wood Chemistry, Dzerbenes 27, LV-1006 Riga, Latvia.
Polymers (Basel). 2022 Jan 24;14(3):468. doi: 10.3390/polym14030468.
To decrease climate changes, more research focuses on decreasing waste wood biomass (WWB) burning and increasing its conversion into value-added products. The WWB was isolated from model wood processing wastewater with a new hybrid coagulant by the coagulation/flocculation method. This study is aimed to characterize the WWB and to investigate its effect in the composition of a hybrid lignocellulosic filler on the properties of recycled polypropylene (rPP)-based wood-plastic composites (WPCs). The waste biomass contained high-molecular lignin and hemicelluloses substances and represented a finely dispersed powder. It was hydrophobic and was characterized by enhanced thermal stability. To minimize the negative effect of polymer wastes on the environment, recycled polypropylene as a polymer matrix was used with the hybrid filler in fabricating WPC samples. The presence of the coagulated WWB in the hybrid filler composition positively affects the mechanical properties, water uptake and dimensional stability of the composite samples. Such a behavior of the waste biomass showed its function as a compatibilizer, which promoted the interfacial adhesion in the composite system.
为了减少气候变化,更多的研究集中在减少废木材生物质(WWB)燃烧,并增加其转化为增值产品的量。通过混凝/絮凝法,使用新型混合混凝剂从模拟木材加工废水中分离出WWB。本研究旨在表征WWB,并研究其在混合木质纤维素填料组成中对基于回收聚丙烯(rPP)的木塑复合材料(WPC)性能的影响。该废弃生物质含有高分子量木质素和半纤维素物质,呈现出细分散的粉末状。它具有疏水性,并具有增强的热稳定性。为了尽量减少聚合物废料对环境的负面影响,在制造WPC样品时,将回收聚丙烯作为聚合物基体与混合填料一起使用。混合填料组成中凝结的WWB的存在对复合样品的机械性能、吸水性和尺寸稳定性有积极影响。这种废弃生物质的行为表明它起到了增容剂的作用,促进了复合体系中的界面粘合。