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Zn-EDTA degradation by catechol-driven fenton reaction

机译:儿茶酚驱动的芬顿反应降解锌-EDTA

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摘要

Zn-EDTA degradabilty by catechol-driven Fenton reaction was studied. Response surface methodology central composite design was employed to maximize this complex degradation. Theoretical speciation calculations were in good agreement with the experimental results. Fenton and Fenton type treatments are typically thought to be applicable only in the highly acidic range, representing a major operational constraint. Interestingly, at optimized concentrations, this CAT-driven Fenton reaction at pH 5.5 achieved 100% Zn-EDTA degradation; 60% COD and 17% TOC removals, using tiny amounts of CAT (50 μM), Fe(III) (445 μM) and H _2O _2 (20 mM) with no evident ferric sludge.
机译:研究了邻苯二酚驱动的Fenton反应降解Zn-EDTA的能力。响应面方法中央复合设计被用来最大化这种复杂的降解。理论形态计算与实验结果吻合良好。通常认为Fenton和Fenton型处理仅在高酸性范围内适用,这代表了主要的操作限制。有趣的是,在最适浓度下,此CAT驱动的Fenton反应在pH 5.5时可实现100%Zn-EDTA降解。使用少量的CAT(50μM),Fe(III)(445μM)和H _2O _2(20 mM)去除60%的COD和17%的TOC,没有明显的铁渣。

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