...
首页> 外文期刊>Environmental Toxicology and Chemistry >PROBABILISTIC UNCERTAINTY ANALYSIS OF THE EUROPEAN UNION SYSTEM FOR THE EVALUATION OF SUBSTANCES MULTIMEDIA REGIONAL DISTRIBUTION MODEL
【24h】

PROBABILISTIC UNCERTAINTY ANALYSIS OF THE EUROPEAN UNION SYSTEM FOR THE EVALUATION OF SUBSTANCES MULTIMEDIA REGIONAL DISTRIBUTION MODEL

机译:评估物质多媒体区域分布模型的欧盟系统的概率不确定性分析。

获取原文
获取原文并翻译 | 示例
           

摘要

The European Union System for the Evaluation of Substances (EUSES) is a computerized model system to facilitate and harmonize health and environmental risk assessment of previously notified and new substances. For calculation of regional background exposure, a multimedia distribution model is used. In the present study, the uncertainty of this regional model is analyzed. Environmental parameters were collected for North Rhine Westphalia (Germany), which resembles the standard region of EUSES. Probability distribution functions of various types (uniform, triangular, normal, log normal) depending on data availability were derived for environmental input parameters, including geometric parameters. Generic log-normal distribution functions with fixed standard deviations were chosen for solubility in air, water, and n-octanol as well as for degradation half-lives. Monte Carlo simulations were carried out for 10 reference substances having different properties. Contribution of environmental parameter uncertainty to total output uncertainties is higher than that of substance parameters. Range of output uncertainty, defined as the ratio of the logarithms of the 90th and 10th percentiles of the cumulative probability distribution function, shows an increase from air and water to soil. The highest-occurring range is 1.4 orders of magnitude, which means that total uncertainty of the regional model is relatively low and, usually, is lower than the range of measured values. The median of output probability distributions lies above the point estimate. Influence of input parameters was estimated as their rank correlation coefficients to output uncertainty. Substance and environmental parameters contribute differently to output variance depending on individual substance properties and environmental compartment. Hence, the present study underlines the need to perform uncertainty analyses instead of either using a set of simple rules or just looking at certain parameters.
机译:欧洲联盟物质评估系统(EUSES)是一个计算机化的模型系统,用于促进和协调先前通报和新物质的健康和环境风险评估。为了计算区域背景暴露,使用了多媒体分发模型。在本研究中,分析了该区域模型的不确定性。收集了北莱茵威斯特法伦州(德国)的环境参数,该环境参数类似于EUSES的标准区域。对于环境输入参数(包括几何参数),根据数据的可用性推导了各种类型(均匀,三角形,正态,对数正态)的概率分布函数。选择具有固定标准偏差的通用对数正态分布函数,以求出其在空气,水和正辛醇中的溶解度以及降解半衰期。对具有不同特性的10种参考物质进行了蒙特卡洛模拟。环境参数不确定性对总输出不确定性的贡献高于物质参数。输出不确定性的范围定义为累积概率分布函数的第90个百分位数和第10个百分位数的对数之比,显示了从空气和水到土壤的增加。最高出现范围是1.4个数量级,这意味着区域模型的总不确定性相对较低,通常低于测量值的范围。输出概率分布的中值位于点估计之上。估计输入参数的影响作为它们对输出不确定性的等级相关系数。物质和环境参数对输出差异的贡献不同,具体取决于各个物质的属性和环境区室。因此,本研究强调需要进行不确定性分析,而不是使用一组简单规则或仅查看某些参数。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号