Heting Chen, Baolu Yang, Xuan Zhang, Fei Tuo, Qiang Zhou, Zeshu Li, Weihao Qin, Shuying Kong, Zhenglin Ye, Hongying Wang
Improving the sensitivity of gamma-ray spectrometry is crucial for food safety monitoring. However, naturally abundant 40K in these foods generates significant continuous spectrum background that severely interferes with the detection of other key environmental radionuclides. This study conducted Monte Carlo simulations in Geant4 to systematically quantify the interference mechanism of 40K in gamma-ray energy spectrum measurements. Simulations indicate that the continuous spectrum of bremsstrahlung radiation emitted by 40K beta particles is the primary source of interference, leading to a significant increase in the background level. The optimized sample container structure proposed in this study reduces the 40K background in the target energy region (e.g., the 210Pb region) by approximately 57%, improving the detection sensitivity with a 17% reduction in the relative minimum detectable activity.