Affiliations 

  • 1 School of Industrial Technology, Universiti Sains Malaysia, 11800 USM, Penang, Malaysia
  • 2 School of Chemical Sciences, Universiti Sains Malaysia, 11800 USM, Penang, Malaysia
  • 3 PMI Packaging Sdn. Bhd., Taman Perindustrian Senai, 81400 Senai, Johor, Malaysia
  • 4 CY Enterprise Sdn. Bhd., Taman Perindustrian Murni, 81400 Senai, Johor, Malaysia
  • 5 School of Industrial Technology, Universiti Sains Malaysia, 11800 USM, Penang, Malaysia. Electronic address: [email protected]
Int J Biol Macromol, 2024 May;266(Pt 2):131079.
PMID: 38537860 DOI: 10.1016/j.ijbiomac.2024.131079

Abstract

This study investigates the effects of SCG embedded into biodegradable polymer blends and aimed to formulate and characterise biomass-reinforced biocomposites using spent coffee ground (SCG) as reinforcement in PHB/PLA polymer blend. The effect of SCG filler loading and varying PHB/PLA ratios on the tensile properties and morphological characteristics of the biocomposites were examined. The results indicated that tensile properties reduction could be due to its incompatibility with the PHB/PLA matrixSCG aggregation at 40 wt% content resulted in higher void formation compared to lower content at 10 wt%. A PHB/PLA ratio of 50/50 with SCG loading 20 wt% was chosen for biocomposites with treated SCG. Biological treatment of SCG using Phanerochaete chrysosporium CK01 and Aspergillus niger DWA8 indicated P. chrysosporium CK01 necessitated a higher moisture content for optimum growth and enzyme production, whereas the optimal conditions for enzyme production (50-55 %, w/w) differed from those promoting A. niger DWA8 growth (40 %, w/w). SEM micrographs highlighted uniform distribution and effective wetting of treated SCG, resulting in improvements of tensile strength and modulus of biocomposites, respectively. The study demonstrated the effectiveness of sustainable fungal treatment in enhancing the interfacial adhesion between treated SCG and the PHB/PLA matrix.

* Title and MeSH Headings from MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine.