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Ozonation of pentachlorophenol in unsaturated soils

机译:五氯苯酚在非饱和土壤中的臭氧化

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A heterogeneous model was developed to describe interactions between ozone and hydrophobic organic compounds, exemplified by pentachlorophenol, in highly gas-saturated vadose zones where water moisture was limited to a thin film on soil particle surfaces. The soil was assumed to be free of soil organic matter. The model included a set of transient equations considering diffusion with simultaneous chemical reaction and hydrophobic partitioning. From dimensionless analysis, it was found that the film concentrations of ozone and the hydrophobic organic component were dependent on the Damkohler numbers. Effects of Damkohler numbers on the film profiles of components were examined. With the interfacial flux of ozone calculated from film profiles, dimensionless governing equations of ozone transport and contaminant removal across an experimental column were established. These equations were dependent on the Stanton number. One-dimensional column experiments were conducted to test the model. The optimal time for flow rate adjustment during the process was approximated. Finally, effects of ozone velocity and ozone gas concentration on the Stanton number were evaluated.
机译:建立了一个非均质模型来描述臭氧和疏水性有机化合物之间的相互作用,例如五氯苯酚在高度气体饱和的渗流区中,在该区中水汽被限制在土壤颗粒表面的薄膜上。假定土壤不含土壤有机质。该模型包括一组瞬态方程,其中考虑了扩散以及同时的化学反应和疏水性分配。通过无量纲分析,发现臭氧和疏水性有机组分的膜浓度取决于Damkohler数。检查了Damkohler数对组件薄膜轮廓的影响。利用由薄膜轮廓计算出的臭氧界面通量,建立了无量纲的臭氧迁移和跨实验塔污染物去除的控制方程。这些方程式取决于Stanton数。进行一维柱实验以测试模型。估算了过程中调节流量的最佳时间。最后,评估了臭氧速度和臭氧气体浓度对斯坦顿数的影响。

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