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Numerical simulation of seasonality in the distribution and fate of pyrene in multimedia aquatic environments with Markov chains

机译:马尔可夫链的多媒体水环境中of的分布和归宿季节性的数值模拟

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摘要

This case study investigated the distribution and fate of organic pollutants in aquatic environments based on laboratory experiments and modeling. Pyrene (Pyr) is a hydrocarbon pollutant with adverse effects on aquatic ecosystems and human health, and was thus selected for this case study. The movement of Pyr was primarily influenced by its sorption from water onto sediment, and its desorption from sediment into water. Its elimination was mainly via biodegradation by microorganisms in sediment and by volatilization from water into air. The transport and elimination rates for Pyr were considerably influenced by temperature and moisture. Results of modeling with Markov chains revealed that the elimination of Pyr from water/sediment systems was the most rapid under wet conditions. Under average conditions, a Pyr concentration of 100 μg/L of in water in such a system declined to a negligible level over 250 h. Under wet conditions, this decrease occurred over 120 h. Finally, under dry conditions, it took 550 h to achieve the same degree of elimination.
机译:本案例研究基于实验室实验和模型研究了水生环境中有机污染物的分布和结局。 (Pyr)是一种烃类污染物,对水生生态系统和人类健康具有不利影响,因此被选为本案例研究。吡咯的运动主要受其从水到沉积物的吸附以及从沉积物到水的解吸的影响。它的消除主要是通过沉积物中微生物的生物降解以及从水到空气中的挥发物进行的。 Pyr的迁移率和消除率受温度和湿度的影响很大。用马尔可夫链建模的结果表明,在潮湿条件下,从水/泥沙系统中消除Pyr最快。在一般条件下,在这样的系统中,水中Pyr的浓度为100μg/ L,超过250μh可以忽略不计。在潮湿条件下,这种下降发生在120 h以上。最后,在干燥条件下,花费550µh才能达到相同程度的消除效果。

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