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Optimization of acetaminophen degradation by fluidized-bed Fenton process

机译:流化床Fenton法优化对乙酰氨基酚的降解。

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Recalcitrant compounds in pharmaceutical wastewaters render biological treatment inadequate. Conventional Fenton technology, though a promising alternative, suffers from high sludge generation. In this study, fluidized-bed (FB) Fenton process, an improvement of traditional Fenton method, was used to decompose acetaminophen (ACT) from aqueous solutions. Optimization of important parameters: initial pH, ferrous ion and hydrogen peroxide dosages, was carried out using Box-Behnken Design (BBD). Effects of all factors and their interactions on ACT decomposition were significant. At optimum operating conditions, ACT degradation reached 97.8% while iron removal of 62.92% was achieved. In addition, the high hydrogen peroxide efficiencies of FB-Fenton process with respect to ACT degradation and COD removal make this technology a cost-effective option in treating acetaminophen-contaminated wastewaters.
机译:制药废水中的顽强化合物使生物处理不足。传统的Fenton技术虽然有希望替代,但会产生大量污泥。在这项研究中,流化床(FB)Fenton工艺是对传统Fenton方法的改进,用于从水溶液中分解对乙酰氨基酚(ACT)。重要参数的优化:使用Box-Behnken Design(BBD)进行初始pH,亚铁离子和过氧化氢的添加。所有因素及其相互作用对ACT分解的影响都很显着。在最佳操作条件下,ACT降解达到97.8%,而铁去除率为62.92%。此外,FB-Fenton工艺在ACT降解和COD去除方面具有很高的过氧化氢效率,使该技术成为处理对乙酰氨基酚污染的废水的经济有效选择。

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