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A multi-criteria weight of evidence approach for deriving ecological benchmarks for radioactive substances

机译:用于导出放射性物质生态基准的多标准证据权重方法

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摘要

Dose rate benchmarks are required in the tiered approaches used to screen out benign exposure scenarios in radiological ecological risk assessment. Such screening benchmarks, namely the predicted no-effect dose rates (PNEDR), have been derived by applying, as far as possible, the European guidance developed for chemicals. To derive the ecosystem level (or generic) PNEDR, radiotoxicity EDR_(10) data (dose rates giving a 10% effect in comparison with the control) were used to fit a species sensitivity distribution (SSD) and estimate the HDR_5 (the hazardous dose rate affecting 5% of species with a 10% effect). Then, a multi-criteria approach was developed to justify using an assessment factor (AF) to apply to the HDR_5 for estimating a PNEDR value. Several different statistical data treatments were considered which all gave reasonably similar results. The suggested generic screening value of 10 μGyh~(-1) (incremental dose rate) was derived using the lowest available EDR_(10) value per species, an unweighted SSD, and an AF of 2 applied to the estimated HDR_5. Consideration was also given to deriving screening benchmark values for organism groups but this was not thought to be currently appropriate due to few relevant data being currently available.
机译:在放射生态风险评估中用于筛选良性暴露情景的分层方法中需要剂量率基准。此类筛选基准,即预测的无效剂量率(PNEDR),是通过尽可能采用针对化学药品制定的欧洲指南得出的。为了得出生态系统水平(或通用)PNEDR,使用放射毒性EDR_(10)数据(与对照相比,剂量率产生10%的影响)拟合物种敏感度分布(SSD),并估算HDR_5(危险剂量)。会影响5%的物种并产生10%的影响)。然后,开发了一种多准则方法来证明使用评估因子(AF)应用于HDR_5来估计PNEDR值是合理的。考虑了几种不同的统计数据处理,它们均给出了合理相似的结果。建议的通用筛选值为10μGyh〜(-1)(递增剂量率),是使用每种物种的最低可用EDR_(10)值,未加权的SSD和将AF 2应用于估算的HDR_5得出的。还考虑了得出生物体组的筛选基准值,但由于目前尚无相关数据,因此目前认为这是不合适的。

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