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基于逸度的多介质质量平衡模型的不确定性分析:更新的 EQM 模型在十甲基环五硅氧烷(D5)中的应用。

Uncertainty analysis using a fugacity-based multimedia mass-balance model: application of the updated EQC model to decamethylcyclopentasiloxane (D5).

机构信息

Health and Environmental Sciences, Dow Corning Corporation, Midland, MI, United States.

出版信息

Chemosphere. 2013 Oct;93(5):819-29. doi: 10.1016/j.chemosphere.2012.10.054. Epub 2012 Dec 4.

Abstract

The EQuilibrium Criterion (EQC) model developed and published in 1996 was recently revised to include improved treatment of input partitioning and reactivity data, temperature dependence and an easier sensitivity and uncertainty analysis. This New EQC model was used to evaluate the multimedia, fugacity-based fate of decamethylcyclopentasiloxane (D5; CAS No. 541-02-6) in the environment over a temperature range of 1-25°C. In addition, Monte Carlo uncertainty analysis was used to quantitatively determine the influence of temperature and input partitioning and reactivity data on the behavior of D5 under various emission scenarios. Results indicated that emission mode was the most influential factor determining the fate and distribution of D5 in the model environment. When emitted to air and soil, D5 partitioned to and remained in the air compartment where rates of removal from degradation and advection processes were relatively rapid. In contrast, D5 emitted to water resulted in a substantial mass fraction of D5 being accumulated in the sediment compartment, where rates of removal from degradation and advection processes were slow. The mass distributions and fate of D5 in the model environment were strongly influenced by multiple input parameters, including temperature, the mode of emission (especially emission rate to water), KOC and half-life in air. As temperature decreased from 25°C to 1°C, KOC and half-life in air became increasingly more influential such that the mass distribution of D5 increased in air and decreased in sediment, resulting in decreased overall persistence.

摘要

1996 年开发并发表的平衡标准(EQC)模型最近进行了修订,以纳入改进的输入分区和反应性数据处理、温度依赖性以及更简单的敏感性和不确定性分析。该新型 EQC 模型用于评估 1-25°C 温度范围内十甲基环五硅氧烷(D5;CAS 号 541-02-6)在环境中的基于逸度的多介质归宿。此外,还使用蒙特卡罗不确定性分析定量确定温度以及输入分区和反应性数据对各种排放情景下 D5 行为的影响。结果表明,排放模式是决定 D5 在模型环境中归宿和分布的最具影响力的因素。当排放到空气和土壤中时,D5 分配到并保留在空气隔室中,在那里降解和对流过程的去除率相对较快。相比之下,排放到水中的 D5 导致大量 D5 质量分数累积在沉积物隔室中,在那里降解和对流过程的去除率较慢。D5 在模型环境中的质量分布和归宿受到多种输入参数的强烈影响,包括温度、排放模式(特别是对水的排放速率)、KOC 和空气中的半衰期。随着温度从 25°C 降至 1°C,KOC 和空气中的半衰期变得越来越有影响力,导致 D5 的质量分布在空气中增加,在沉积物中减少,从而降低了整体持久性。

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