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Design of in-situ microbial filter for the remediation of naphthalene

机译:用于萘修复的原位微生物滤池设计。

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The in-situ microbial filter (ISMF) is a specific application of in-situ bioremediation (ISB) for the treatment of groundwater contaminated plumes. The ISMF filter consists of an in-situ reactor, composed of sand mixed with non-indigenous microorganisms, that is placed ahead of migrating contaminant plumes and removes contaminants by biological and abiological processes. This paper presents the results of an experimental study investigating the remediation of naphthalene contaminated water through a lab scale ISMF. Mathematical modeling was performed to determine the optimum dimensions and configuration of the ISMF, and to stimulate the migration of naphthalene through the ISMF. Soil column tests were carried out to determine the biomass con- centration and hydraulic conductivity to attain effective biodegradation within an ISMF. The optimum biomass concentration was determined to be l.4mg VSS/g sand and the optimum hydraulic conductivity was determined to be approximately 1 × 10~5m/s. FLOTRANS, a two-dimensional finite element hydrogeological model based on the advection-dispersion equation, was used to illustrate the effect of different filter and barrier configurations on the discharge through the filter and to stimulate naphthalene migration through an ISMF. Experimental results and the mean simulation values obtained through Crystal Ball~(r), a forecasting and risk analysis program, were used as the input parameters for the FLOTRANS model. Optimum dimensions and configurations of the filter were determined for effective remediation of naphthalene. Modeling results indicated that an ISMF, with the flow and transport properties determined in this study, has the capacity to substantial2ly attenuate naphthalene contaminated groundwater. A sensitivity analysis was performed using Crystal Ball@ to determine the relative influence of the basic parameters from the advec- tion-dispersion equation on the contaminant concentration.
机译:原位微生物过滤器(ISMF)是原位生物修复(ISB)在处理地下水污染的羽流中的一种特殊应用。 ISMF过滤器由原位反应器组成,该原位反应器由混有非本地微生物的沙子组成,放置在迁移污染物羽流之前,并通过生物和生物过程去除污染物。本文介绍了一项实验研究的结果,该实验研究了通过实验室规模的ISMF修复萘污染的水。进行数学建模,以确定ISMF的最佳尺寸和配置,并刺激萘通过ISMF迁移。进行了土壤柱测试,以确定生物质浓度和水力传导率,以在ISMF中实现有效的生物降解。确定最佳生物量浓度为1.4 mg VSS / g沙,确定最佳水力传导率约为1×10〜5m / s。 FLOTRANS是基于对流扩散方程的二维有限元水文地质模型,用于说明不同的过滤器和屏障构型对通过过滤器的排放的影响,并刺激萘通过ISMF迁移。通过预测和风险分析程序Crystal Ball〜(r)获得的实验结果和平均模拟值被用作FLOTRANS模型的输入参数。确定有效过滤萘的最佳尺寸和构造的过滤器。建模结果表明,具有本研究确定的流量和传输特性的ISMF具有显着减弱萘污染的地下水的能力。使用Crystal Ball @进行了灵敏度分析,以从平流-扩散方程确定基本参数对污染物浓度的相对影响。

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