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Olive mill effluent depuration by ozonation and Fenton processes enhanced by iron wastes

机译:臭氧处理对橄榄厂废水进行净化,铁废物强化了芬顿工艺

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The aim of the present work was to compare the potential of iron industry wastes to enhance ozone and hydrogen peroxide action on the degradation of olive mill wastewaters (OMWs). The results attained show a higher efficiency for ozonation using a lower catalyst load. Nevertheless, Fenton's process led to a larger amount of chemical oxidation demand (COD) removed per mole of oxidant applied. It was concluded that hydroxyl radicals are responsible for the pollutant abatement. High eco-toxicity decay was observed after the treatments. Furthermore, a preliminary analysis of the iron shavings' stability was made by reusing it in two feed-batch trials. It was concluded that while activity was maintained for Fenton's, a decrease of about 20% was verified for catalytic ozonation. Comparing these results with the ones obtained for the same processes applied to an actual OMW, a lower percentage of COD abatement was achieved. However, when reporting the amount of COD removed per mole of oxidant used, the difference between effluents are not so high. This should be taken into account when deciding which process should be implemented at an industrial scale. With the outcomes of this research it was possible to conclude that integrating waste management with wastewater treatment was feasible.
机译:本工作的目的是比较钢铁行业废物增强臭氧和过氧化氢对橄榄工厂废水(OMW)降解的作用的潜力。所获得的结果表明使用较低的催化剂负载可以实现较高的臭氧氧化效率。然而,芬顿的工艺导致每摩尔所用氧化剂去除了大量的化学氧化需求(COD)。结论是,羟基自由基负责减少污染物。处理后观察到高的生态毒性衰减。此外,通过在两次进料批试验中重复使用铁屑,对铁屑的稳定性进行了初步分析。可以得出结论,尽管Fenton的活性得以维持,但催化臭氧化作用却降低了约20%。将这些结果与实际OMW的相同过程获得的结果进行比较,可以降低COD减少的百分比。但是,当报告每摩尔所用氧化剂去除的COD量时,流出物之间的差异并不是很高。在决定应在工业规模上实施哪个过程时,应考虑到这一点。根据这项研究的结果,可以得出结论,将废物管理与废水处理相结合是可行的。

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