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Cyclic exchanges and level of coupling hetween environmental media: Intermedia feedback in multimedia fate models

机译:环境媒体之间的循环交换和耦合程度:多媒体命运模型中的媒体反馈

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The importance of cyclic transport of chemicals between media in the environment can be expressed in terms of the Feedback correction factor - a multiplier that accounts for the fraction of an emission that returns to the medium of release after transfer to other media. This factor is calculated analytically by explicitly solving the appropriate system of mass balance equations or using matrix techniques. It generalizes the concept of stickiness, the ratio between the net and the overall deposition rate constants, to multipathway feedback, while providing a clearer view of the level of coupling between media and analyzing the importance of coupling. This paper first shows the usefulness of the total removal rate coefficient in each media (sum of degradation rate and all intermedia transfer rates) as a baseline to determine the chemical mass in different media, the characteristic travel distance and to understand the cyclic behavior, rather than starting from the degradation lifetimes or the overall persistence in the environment. Starting from this baseline, the importance of feedback is limited for most organic chemicals. The predicted media concentrations are influenced by less than 10% due to the cyclic nature of the intermedia transport for more than 90% of the 317 tested chemicals in a 4-compartment, steady-state, closed-system multimedia model. The Feedback correction factor is always less than a factor of 5 with the greatest values when transfer fractions are important in both directions for adjacent media. This corresponds to a restricted range in the K-AW and K-OA space with long chemical lifetimes in both adjacent media. This analysis of the importance of the Feedback correction factor, in conjunction with resultant criteria for when cyclic exchanges between media are likely to be significant, facilitates a more transparent understanding of how substance masses are distributed in the modeled system. It is one of the important criteria to determine to what extent media can be independently modeled.
机译:化学品在环境中的介质之间循环运输的重要性可以用“反馈校正因子”来表示。该系数是一个乘数,用于说明转移到其他介质后返回释放介质的排放量的比例。通过显式求解质量平衡方程式的适当系统或使用矩阵技术,可以解析地计算该因子。它概括了粘性的概念,净值与总沉积速率常数之间的比率以及多径路反馈,同时提供了介质之间耦合程度的更清晰视图并分析了耦合的重要性。本文首先展示了每种介质的总去除率系数(降解率和所有中间介质转移率之和)作为确定不同介质中化学物质质量,特征行程和了解循环行为的基线的有用性,而不是而不是从退化寿命或整个环境的持久性开始。从此基线开始,对于大多数有机化学品来说,反馈的重要性是有限的。在4隔间,稳态,封闭系统的多媒体模型中,由于317种受测试化学品中90%以上的介质运输具有周期性,因此预测的介质浓度受不到10%的影响。当传输分数在相邻介质的两个方向上都很重要时,反馈校正因子始终小于最大值的5倍。这对应于K-AW和K-OA空间中的受限范围,并且在两种相邻介质中化学寿命均较长。对反馈校正因子的重要性的这种分析,以及有关何时媒体之间的循环交换可能很重要的最终标准,有助于对物质质量在建模系统中的分布方式更加透明的理解。确定媒体可以在多大程度上独立建模的重要标准之一。

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