9 MeV 和 12 MeV 电子模式 LINAC 中臭氧 (O3) 浓度的测量和风险分析

J. Penelitian, Pendidikan Ipa, Nur Khasanah, Bunawas, Wayan Ari, Rinarto Subroto, Lalu Sahrul, Paramita Putri, Dia Ulfariah
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引用次数: 0

摘要

这项研究调查了直线加速器(LINAC)电子模式放射治疗过程中潜在的非辐射危害,特别是臭氧(O3)的产生。研究利用实验测量来确定 LINAC 患者候诊室和控制室的臭氧浓度。测量假设在一个工作日内有±2小时的延迟,使用 9 MeV 和 12 MeV 能量、400 MU 剂量率以及 0o、90o 和 270o 的照射角度。发现 LINAC 病人候诊室和控制室的最大臭氧浓度分别为 6.6 ppb(12 MeV)和 8.3 ppb(12 MeV)。这些浓度低于化学阈值限值,对人体接触是安全的。值得注意的是,在 LINAC 存储器中观测到了可能可检测到的臭氧水平。总之,这项研究强调了监测臭氧水平的重要性,以确保 LINAC 设施中患者和工作人员的安全。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement and Risk Analysis of Ozone (O3) Concentrations in the 9 MeV and 12 MeV Electron Mode LINAC
This study investigates potential non-radiation hazards, specifically Ozone (O3) production, during Linear Accelerator (LINAC) electron mode radiotherapy. The research uses experimental measurements to determine Ozone concentration in the LINAC patient waiting room and control room. Measurements are taken assuming a ±2-hour delay in one working day, using 9 MeV and 12 MeV energy, 400 MU dose rate, and illumination angles of 0o, 90o, and 270o. Maximum Ozone concentrations in the LINAC patient waiting room and control room are found to be 6.6 ppb (12 MeV) and 8.3 ppb (12 MeV), respectively. These concentrations fall below the chemical threshold limit and are deemed safe for human exposure. Notably, potentially detectable Ozone levels are observed in the LINAC banker. Overall, this research highlights the importance of monitoring Ozone levels to ensure the safety of both patients and personnel in LINAC facilities.
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