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Solar photo-Fenton with simultaneous addition of ozone for the treatment of real industrial wastewaters

机译:太阳能光芬顿,同时添加臭氧用于治疗真正的工业废水

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Simultaneous application of solar photo-Fenton and ozonation (SPFO) for the efficient treatment of real wastewaters was studied. Four different industrial effluents were selected for the study: landfill leachate, pharmaceutical effluent and two textile wastewaters, in order to demonstrate the effectiveness and versatility of the proposed technology. SPFO performance was compared with individual processes (either solar photo-Fenton or ozonation), as well as the hybrid Fenton and ozonation treatment. In highly polluted wastewaters, combined strategies led to higher organic matter removal than O-3 and photo-Fenton processes applied individually. Solar light favoured catalyst regeneration, allowing removal efficiencies up to 67% of chemical oxygen demand (COD) and 62% of total organic carbon (TOC) (in the case of textile wastewaters) using an initial concentration of only 10 mg Fe2+ L-1. The reduction of catalyst consumption, along with the absence of sludge production (since Fe2+ removal from the effluent is not required), led to a significant decrease in operational costs (up to 1.22 (sic) kg(-1) COD removed) when combined Fenton and ozonation was applied under solar light. SPFO results in a versatile, effective and economically efficient technology, thus postulating as a promising alternative for reducing the organic load of highly polluted industrial effluents prior to biological treatment.
机译:研究了太阳能光源和臭氧(SPFO)的同时应用了实际废水的有效处理。选择四种不同的工业污水:垃圾渗滤液,药物流出物和两个纺织废水,以证明所提出的技术的有效性和多功能性。与个体过程(太阳能光芬顿或臭氧)以及杂交FENTON和臭氧处理进行比较SPFO性能。在高度污染的废水器中,组合策略导致了比O-3和单独应用的光芬工艺更高的有机物去除。太阳灯青睐催化剂再生,允许除去效率高达67%的化学需氧量(COD)和62%的总有机碳(TOC)(在纺织废水的情况下)使用初始浓度仅为10mg FE2 + L-1 。催化剂消耗的减少以及不需要污泥生产(由于不需要从废水中除去),因此在组合时显着降低了运营成本(最多1.22(SiC)Kg(-1)COD) Fenton和Ozonation在太阳灯下应用。 SPFO导致多功能,有效且经济上有效的技术,从而为在生物处理之前减少高度污染的工业流出物的有机载荷的有前途的替代方案。

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