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Transport and biotransformation of organic carbon and nitrate compounds in unsaturated soil conditions

机译:有机碳和硝酸盐化合物在非饱和土壤条件下的运输和生物转化

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摘要

The lack of drinking water was one of the hot environmental issues that focused on the contaminants released from the failure of sanitary systems. Organic carbon and nitrate compounds were concerned since they represented a potential risk to human health and environment. Mathematical modelling was an effective tool for understanding and estimating the fate and transport of contaminants. An organic carbon and nitrate compounds transport model was developed using the mass balance concept. Richards and multiplicative Monod equations supported the estimating of advection-dispersion transport and biodegradation processes, respectively. The numerical solutions were obtained using the MATLAB programme. The model capability was evaluated using pilot scale experimental data. The depth-averaged time series of pressure head and contaminants concentration profiles were measured several times a week during 91 days. Simulations were found to provide reasonable agreement with the observed data. The aerobic biodegradation zone was observed within 15 cm depth of soil column. Even though the column was operated for 91 days, soil microbes were enough to retard these contaminants. This confirmed that the developed model could be applied to simulate the transport of the contaminants under real time boundary conditions.
机译:缺乏饮用水是关注因卫生系统故障而释放的污染物的热门环境问题之一。人们关注有机碳和硝酸盐化合物,因为它们代表着对人类健康和环境的潜在风险。数学建模是了解和评估污染物的归宿和迁移的有效工具。使用质量平衡概念开发了有机碳和硝酸盐化合物的运输模型。 Richards和乘法Monod方程分别支持对流扩散输运和生物降解过程的估算。数值解是使用MATLAB程序获得的。使用中试规模的实验数据评估了模型的能力。在91天中,每周几次测量压头和污染物浓度分布的深度平均时间序列。发现模拟可以与观察到的数据提供合理的一致性。在土壤柱深度15 cm内观察到好氧生物降解区。即使色谱柱运行了91天,土壤微生物也足以阻滞这些污染物。这证实了所开发的模型可以用于模拟实时边界条件下污染物的传输。

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