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Optimization of continuous reactor at pilot scale for olive-oil mill wastewater treatment by Fenton-like process

机译:类Fenton法处理橄榄油厂废水中试规模连续反应器的优化

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Reclamation of olive-oil mill wastewater (OMW) from two-phase extraction procedure was carried out in a continuous stirred tank reactor (CSTR) at a pilot plant scale by Fenton-like process. The effect of operating conditions such as pH, space-time, H2O2 and Fe(III) doses, as well as [FeCl3]/H2O2] ratio on the efficacy of Fenton's process was investigated. It is demonstrated that Fenton's process can effectively degrade organic matter in OMW. In the start-up stage, Fenton reaction reached steady state within 3 h. Oxidation of organic materials in OMW was pH dependent and the optimal pH was found to be 3. The optimum [FeCl3]/[H2O2] ratio was in the range 0.026-0.058 w/w, with Fe(III) concentration between 0.35 and 0.40 g dm-3. The final values of COD and total phenols at the outlet of the pilot plant were close to 129mg O2 L~(-1) ([COD]_(initial) = 4017 mg O2 dm~(-3)), and 0.5 mg dm~(-3) ([total phenols]_(initial)) - 66.2 -mg dm~(-3)), respectively. Finally, the produced water can be used for irrigation or discharged directly into the municipal wastewater system for ulterior tertiary treatment.
机译:通过Fenton样工艺在中试工厂规模的连续搅拌釜反应器(CSTR)中进行两阶段萃取过程中的橄榄油厂废水(OMW)的回收。研究了诸如pH,时空,H2O2和Fe(III)剂量以及[FeCl3] / H2O2]之类的操作条件对芬顿法效率的影响。事实证明,芬顿的工艺可以有效地降解OMW中的有机物。在启动阶段,芬顿反应在3小时内达到稳定状态。 OMW中有机材料的氧化取决于pH值,并且最佳pH值为3。最佳[FeCl3] / [H2O2]比在0.026-0.058 w / w的范围内,Fe(III)的浓度在0.35至0.40之间g dm-3。试验工厂出口处的COD和总酚的最终值接近129mg O2 L〜(-1)([COD] _(初始)= 4017 mg O2 dm〜(-3))和0.5 mg dm 〜(-3)([总酚] _(初始))-66.2 -mg dm〜(-3))。最后,所产生的水可用于灌溉或直接排入市政废水系统,以作进一步的第三级处理。

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