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Comparison of Standard Radiological Risk Models and Using RESRAD to Derive Generic Risk-Based Area Factors for Final Status Surveys

机译:比较标准放射风险模型并使用RESRAD得出基于一般风险的区域因素进行最终状态调查

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摘要

The RESidual RADioactivity (RESRAD) computer code has been used for years to calculate carcinogenic risk and radiological dose from exposure to radionuclides. The basic ingestion, inhalation, and direct gamma intake equations used by RESRAD, Risk Assessment Guidance for Superfund (RAGS), and the Soil Screening Guidance for Radionuclides (SSG) are similar and can produce similar results, but there are some notable differences. Of particular interest is the fact that RESRAD incorporates sophisticated environmental transport models. Associated environmental parameters allow risk assessors to consider, among other variables, the size (i.e., surface area) of the contaminated zone, a variable not typically addressed quantitatively under the RAGS/SSG paradigm. Considering the similarities between basic RESRAD, RAGS, and SSG intake equations and given the broad acceptance of RESRAD, it stands to reason that RESRAD-derived area factors may be used to supplement RAGS/SSG human health risk calculations. This would allow risk assessors to retrofit existing results or otherwise modify standard RAGS/SSG equations for use in site closeout planning under the Multi-Agency Radiation Survey and Site Investigation Manual (MARSSIM), given a key component of the MARSSIM method is the consideration of small areas of elevated activity or "hot spots" through the use of area factors.
机译:残留放射性(RESRAD)计算机代码已使用多年,用于计算由于暴露于放射性核素而致癌的风险和放射剂量。 RESRAD,超级基金风险评估指南(RAGS)和放射性核素土壤筛选指南(SSG)使用的基本摄入,吸入和直接伽马摄入方程式相似,并且可以产生相似的结果,但是有一些显着差异。特别令人感兴趣的是,RESRAD包含了复杂的环境运输模型。相关的环境参数使风险评估人员可以在受污染区域的大小(即表面积)等变量之外,考虑通常在RAGS / SSG范式下无法定量解决的变量。考虑到基本RESRAD,RAGS和SSG摄入方程之间的相似性,并得到RESRAD的广泛认可,因此可以推断出可以将RESRAD派生的面积因子用于RAGS / SSG人类健康风险计算的补充。鉴于MARSSIM方法的一个关键组成部分是考虑到以下因素,这将使风险评估者可以改进现有结果或修改标准RAGS / SSG公式,以便在《多机构辐射调查和场地调查手册》(MARSSIM)下进行场地封闭计划中使用。通过使用面积因子提高活动的小面积或“热点”。

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