4.7 Article

Characteristics of the Waste Wood Biomass and Its Effect on the Properties of Wood Sanding Dust/Recycled PP Composite

期刊

POLYMERS
卷 14, 期 3, 页码 -

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MDPI
DOI: 10.3390/polym14030468

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waste wood biomass; wood-plastic composite; hybrid filler; coagulation; wood processing wastewater

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In order to reduce climate changes, researchers are focusing on decreasing the burning of waste wood biomass and increasing its conversion into value-added products. This study investigates the effect of waste wood biomass on the properties of recycled polypropylene-based wood-plastic composites. The results show that the presence of waste biomass positively affects the mechanical properties, water uptake, and dimensional stability of the composite samples.
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.

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