An Assessment of Factors Affecting Reactive Transport of Biodegradable BTEX in an Unconfined Aquifer System, Tehran Oil Refinery, Iran

Q4 Earth and Planetary Sciences
A. Agah, F. D. Ardejani, H. Ghoreishi
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引用次数: 1

Abstract

Risk-based assessment methods are commonly used at the contaminated sites by hydrocarbon pollutants. This paper presents the results of a two-dimensional finite volume model of reactive transport of biodegradable BTEX which have been developed for the saturated zone of an unconfined aquifer in the Pump station area of Tehran oil refinery, Iran. The model governing equations were numerically solved by modification of a general commercial software called PHOENICS. To reduce costs in general, many input parameters of a model are often approximated based on the used values in the contaminated sites with same conditions. It was not fully recognised the effect of errors in these inputs on modelling outputs. Thus, a sensitivity analysis was carried out to determine the influence of parameters variability on the results of model. For this analysis, the sensitivity of the model to changes in the dispersivity, distribution coefficient, parameters of Monod, Michaelis-Menten, first- and zero- order kinetics modes on the BTEX contaminant plume were examined by performing several simulations. It was found that the model is sensitive to changes in dispersivity and parameters of Michaelis-Menten, first- and zero- order kinetics model. On the other hand, the predictions for plumes assuming Monod kinetics are similar, even if different values for parameterization are chosen. The reason for this insensibility is that degradation is not limited by microbial kinetics in the simulation, but by dispersive mixing. Quantifying the effect of changes in model input parameters on the modelling results is essential when it is desired to recognise which model parameters are more vital on the fate and transport of reactive pollutants. Furthermore, this process can provide an insight into understanding pollutant transportation mechanisms.
影响生物可降解BTEX在无承压含水层系统中反应性输运的因素评估,德黑兰炼油厂,伊朗
基于风险的评价方法是烃类污染物污染场地的常用评价方法。本文介绍了在伊朗德黑兰炼油厂泵站区无承压含水层饱和区建立的生物可降解BTEX反应输运二维有限体积模型的结果。通过对通用商业软件PHOENICS的修改,对模型控制方程进行了数值求解。一般来说,为了降低成本,模型的许多输入参数通常是根据相同条件下污染场地的使用值进行近似的。没有充分认识到这些输入误差对建模输出的影响。因此,进行敏感性分析以确定参数变异性对模型结果的影响。为了进行分析,该模型对BTEX污染物羽流的分散性、分布系数、Monod、Michaelis-Menten参数、一阶和零阶动力学模式变化的敏感性进行了若干模拟。结果表明,该模型对Michaelis-Menten一阶和零阶动力学模型的色散和参数变化较为敏感。另一方面,假设莫诺动力学的羽流预测是相似的,即使选择不同的参数化值。这种不敏感的原因是,在模拟中,降解不受微生物动力学的限制,而是受分散混合的限制。当需要识别哪些模型参数对活性污染物的命运和输送更为重要时,对模型输入参数变化对建模结果的影响进行量化是必不可少的。此外,这一过程可以深入了解污染物的运输机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Mining and Geo-Engineering
International Journal of Mining and Geo-Engineering Earth and Planetary Sciences-Geotechnical Engineering and Engineering Geology
CiteScore
0.80
自引率
0.00%
发文量
0
审稿时长
12 weeks
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