首页> 外文期刊>Computational Water, Energy, and Environmental Engineering >Reuse of Ferric Sludge by Ferrous Sulfide in the Fenton Process for Nonylphenol Ethoxylates Wastewater Treatment
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Reuse of Ferric Sludge by Ferrous Sulfide in the Fenton Process for Nonylphenol Ethoxylates Wastewater Treatment

机译:Fenton工艺中硫化亚铁对三价铁污泥的再利用

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In this paper, Fenton process was determined to be an effective technique to treat the refractory Nonylphenol ethoxylates (NPEOs) wastewater. The COD removal efficien-cies above 89% were obtained when the initial COD concentration was 12000mg/L. However, A large number of ferric sludge (SS=8.724g/L) would be produced after the Fenton oxidation of the wastewater and must be disposed appropriately. A novel process for Fenton sludge reused by low-cost ferrous sulfide (FeS) was also investi-gated. Experimental results show that the Fenton sludge could be reduced to produce a certain amount of Fe2+ in the acidic mixed liquor by ferrous sulfide. This mixed liquor from Fenton sludge could be used as the new catalyst in the Fenton process and was also highly effective for the NPEOs wastewater treatment. The residual ferrous sulfide from the mixed liquor could be used for the next batch of the reaction
机译:本文认为芬顿法是处理难处理的壬基酚乙氧基化物(NPEOs)废水的有效技术。当初始COD浓度为12000mg / L时,COD去除效率达到89%以上。但是,废水的Fenton氧化后会产生大量的铁污泥(SS = 8.724g / L),必须进行适当的处​​理。还研究了一种通过低成本硫化亚铁(FeS)再利用的Fenton污泥的新方法。实验结果表明,硫化亚铁可以还原酸性混合液中的Fenton污泥,产生一定量的Fe2 +。来自芬顿污泥的这种混合液可以用作芬顿工艺中的新催化剂,并且对于NPEOs废水处理也非常有效。混合液中残留的硫化亚铁可用于下一批反应

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