Bibliographic Details
| Title: |
Investigation on spent coffee ground-epoxy resin composite as a sustainable radiation shielding material. |
| Authors: |
Jia Xuan, Tang1 (AUTHOR), Sazali, Muhammad Arif1 (AUTHOR) arifsazali@utm.my, Muhammad Amir, Siti Madiha2 (AUTHOR), Abu Bakar, Asyraf Arif2 (AUTHOR), Ismail, Ahmad Hambali2 (AUTHOR), Sarkawi, Muhammad Syahir1 (AUTHOR), Mohd Ali, Nur Syazwani1 (AUTHOR), Jamaluddin, Khairulnadzmi1 (AUTHOR) |
| Source: |
Applied Radiation & Isotopes. Sep2026, Vol. 235, pN.PAG-N.PAG. 1p. |
| Subjects: |
Radiation shielding, Neutron capture, Coffee grounds, Biodegradable materials, Gamma rays, Filler materials, Epoxy resins, Mechanical behavior of materials |
| Abstract: |
Growing interest in bio-based fillers offers a sustainable alternative to toxic, heavy metal-based radiation shielding. However, biomass often compromises mechanical integrity, limiting practical structural applications. This study investigates the mechanical and radiation shielding properties of epoxy resin composites reinforced with spent coffee grounds (SCG). The influence of SCG content (0, 10, 20, and 30 wt%) on tensile, flexural, and impact strength was evaluated, alongside neutron and gamma attenuation. Composite samples were fabricated using a fixed epoxy-hardener ratio and tested for mechanical properties following ASTM standards. Neutron and gamma shielding performance was evaluated using a241Am-Be neutron source and a137Cs gamma source, respectively. FIB-SEM was used to assess the internal morphology, while EDX mapping provided elemental analysis. Results showed that increasing SCG content led to a decline in mechanical properties: tensile strength decreased from 27.0 MPa to 12.0 MPa, flexural strength from 62.4 MPa to 38.0 MPa, impact strength from 3.4 kJ/m2 to 2.2 kJ/m2 due to particle agglomeration, void formation, and weak interfacial bonding. However, neutron shielding efficiency improved with higher SCG loadings, with the macroscopic removal cross-section rising from 0.1752 cm−1 to 0.1878 cm−1 due to high carbon and hydrogen content in SCG that enhances neutron moderation and scattering. Gamma attenuation varied minimally across all formulations, with linear attenuation coefficients ranging from 0.0832 cm−1 to 0.0987 cm−1. Calculated Half-Value Layer (HVL) results ranged from 3.69 to 3.96 cm for neutrons and 7.02–8.33 cm for gamma rays. Notably, 10 wt% SCG delivers the optimal balance between gamma-ray attenuation effectiveness and mechanical structural integrity, making it the most suitable formulation for practical low-dose radiation shielding applications. This study demonstrates that spent coffee grounds can serve as a promising sustainable filler in radiation shielding composites, particularly for neutron attenuation. • Spent coffee grounds (SCG) were used as a sustainable filler in epoxy composites. • Neutron shielding performance improved with SCG content while gamma shielding showed no change. • Mechanical properties declined with increasing SCG due to poor dispersion and interfacial bonding. • 10 wt% provided the best balance between structural integrity and radiation shielding effectiveness. [ABSTRACT FROM AUTHOR] |
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| Database: |
Engineering Source |