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Integrated Fenton Oxidation Process for Advanced Treatment of Biologically Treated Coking Plant Effluent

机译:Fenton集成氧化工艺对生物处理焦化厂废水的深度处理

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Experiments of Fenton oxidation, carbon adsorption, and Fenton oxidation plus carbon adsorption were conducted to develop a cost effective advanced treatment process for treating a biotreated coking plant effluent. Fenton oxidation (Fe2+=56 mg/L and H2O2=27.2 mg/L) was effective for removing >50% organic pollutants, measured as UV254 (aromatic organics), VIS380 (color ingredients) and COD and most total cyanide present in the effluent. Fenton oxidation enhanced adsorptive capacities of activated carbon for the residual contaminants and made them more biodegradable. The Fenton oxidation followed by adsorption and biodegradation in a biological activated carbon (BAC) adsorber is an attractive advanced treatment process to recycle the final effluent for many reuses while meeting the anticipated much more stringent discharge limits of the future.
机译:进行了Fenton氧化,碳吸附和Fenton氧化加碳吸附的实验,以开发一种经济有效的高级处理工艺,用于处理经生物处理的焦化厂废水。 Fenton氧化(Fe2 + = 56 mg / L和H2O2 = 27.2 mg / L)可有效去除> 50%的有机污染物,以UV254(芳香族有机物),VIS380(有色成分)和COD以及废水中总氰化物的含量进行测量。 Fenton氧化增强了活性炭对残留污染物的吸附能力,并使它们更易于生物降解。 Fenton氧化,然后在生物活性炭(BAC)吸附器中进行吸附和生物降解,是一种有吸引力的先进处理工艺,可将最终废水再循环用于许多再利用,同时满足未来预期的更为严格的排放限值。

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