Scientific Study

Access to over 2,900 scientific references, studies and publications. This section is constantly updated with studies that have been published in scientific journals.

Products: Hazelnuts

Notice: Undefined variable: post in /home/nimianet/domains/test.nimia.net/public_html/wp-content/mu-plugins/custom-studies.php on line 744

Notice: Trying to get property 'ID' of non-object in /home/nimianet/domains/test.nimia.net/public_html/wp-content/mu-plugins/custom-studies.php on line 744

The Use of Waste Hazelnut Shells as a Reinforcement in the Development of Green Biocomposites

Authors: Ceraulo, M., La Mantia, F. P., Mistretta, M. C., & Titone, V.
  • Journals: Polymers (Basel)
  • Pages: 2151
  • Volume: 14(11)
  • Year: 2022

Notice: Undefined variable: post in /home/nimianet/domains/test.nimia.net/public_html/wp-content/mu-plugins/custom-articles.php on line 247

Notice: Trying to get property 'ID' of non-object in /home/nimianet/domains/test.nimia.net/public_html/wp-content/mu-plugins/custom-articles.php on line 247
Biodegradable Mater-Bi (MB) composites reinforced with hazelnut shell (HS) powder were prepared in a co-rotating twin-screw extruder followed by compression molding and injection molding. The effects of reinforcement on the morphology, static and dynamic mechanical properties, and thermal and rheological properties of MB/HS biocomposites were studied. Rheological tests showed that the incorporation of HS significantly increased the viscosity of composites with non-Newtonian behavior at low frequencies. On the other hand, a scanning electron microscope (SEM) examination revealed poor interfacial adhesion between the matrix and the filler. The thermal property results indicated that HS could act as a nucleating agent to promote the crystallization properties of biocomposites. Furthermore, the experimental results indicated that the addition of HS led to a significant improvement in the thermomechanical stability of the composites. This paper demonstrates that the incorporation of a low-cost waste product, such as hazelnut shells, is a practical way to produce low-cost biocomposites with good properties. With a content of HS of 10%, a remarkable improvement in the elastic modulus and impact strength was observed in both compression and injection-molded samples. With a higher content of HS, however, the processability in injection molding was strongly worsened. https://doi.org/10.3390/polym14112151