Background ionizing radiation (BIR) is a major contributor to public exposure, yet its spatial
statistical characterization in institutional environments of Southern Nigeria remains limited. This
study evaluated BIR across two Campuses-Federal University of Petroleum Resources (FUPRE)
and Petroleum Training Institute (PTI) in Effurun, Delta State. Measurements were conducted at
20 sampling points per campus using a Digilert-100 radiation monitor. Exposure rates in FUPRE
ranged from 0.007 to 0.025 mR h⁻¹, with a mean of 0.014 ± 0.005 mR h⁻¹, slightly exceeding the
UNSCEAR reference value of 0.013 mR h⁻¹. PTI recorded lower values (0.002–0.015 mR h⁻¹; mean
0.007 ± 0.004 mR h⁻¹), well below international thresholds. Derived hazard indices confirmed
higher values at FUPRE (EDR = 1.21 ± 0.46 mSv y⁻¹; ADR = 125.28 ± 47.76 nGy h⁻¹; AEDE =
0.15 ± 0.06 mSv y⁻¹; ELCR = 0.54 ×10⁻³) compared to PTI (EDR = 0.61 ± 0.30 mSv y⁻¹; ADR =
63.08 ± 30.64 nGy h⁻¹; AEDE = 0.08 ± 0.04 mSv y⁻¹; ELCR = 0.26 × 10⁻³). Spatial analysis
revealed weak positive autocorrelation (Moran’s I: FUPRE = 0.1737, PTI = 0.0839; p = 0.0610),
with variogram modeling identifying spherical and linear structures for FUPRE and PTI,
respectively. Kriging maps highlighted localized hotspots at FUPRE, while PTI exhibited uniform
distribution. Monte Carlo simulations (10,000 iterations, lognormal, 5% uncertainty) validated
predictive robustness. Radiological Risk Index classification showed FUPRE with very low (3
points), low (11 points), and moderate (6 points) risk zones, whereas PTI was dominated by very
low (13 points) and low (7 points). Comparative analysis positioned the study area (mean BIR =
0.012 mR h⁻¹; ADR = 104.4 nGy h⁻¹) within the lower to mid-range of exposure levels across
Southern Nigeria. Overall, both campuses remain radiologically safe, though FUPRE requires
continued monitoring due to localized enhancements linked to construction activities. These
findings provide a reliable baseline for environmental radiation monitoring in petroleum-based
institutional environments and support regulatory decision-making for radiological safety in
Southern Nigeria.