DOI: 10.37763/wr.1336-4561/71.3.556567 ISSN: 2729-8906

Investigation of Gamma Radiation Shielding Properties of Acacia Mangium Wood from Sabah, Malaysia

Thamer A. Thabet, Normah Awang Besar, Affendy Hassan, Mohamadu Boyie Jalloh, Nur Fadzlunisaa Wakimin
Gamma radiation shielding properties of Acacia mangium wood (ages 3 - 15 years) were investigated at 662 keV (¹³⁷Cs). Mass attenuation coefficients, linear attenuation (µ), and half-thickness were measured; the attenuation properties were discussed include linear attenuation (µ) and mass attenuation (µ/ρ). Additionally, the paper will explore the feasibility of substituting traditional shielding materials, such as concrete and copper, with these tropical wood species for low-energy gamma-ray diagnostic applications. Two mathematical models have been developed to predict wood density based on variations in relaxation length and half-thickness values. The results indicate that the three-year-old Acacia mangium tree has the longest relaxation length at 83.33 cm and the lowest density at 0.43 g/cm³. In contrast, the 15-year-old tree has the shortest relaxation length of 28.56 cm and the highest density at 0.76 g/cm³. Furthermore, the results show that the 3-year-old Acacia mangium tree's wood has the maximum half-thickness value (57.75 cm), while the fifteen-year-old tree's wood has the lowest half-thickness value (about 19.85 cm). A good agreement (greater than 85% in most cases) was observed between the measured values and predicted ones. A strong linear correlation was observed between the measured density and the age of the tree (R² = 0.824), as well as between the estimated density and the age of Acacia mangium trees (R² = 0.952). Acacia mangium shows potential as a sustainable gamma shielding material for low-energy applications.