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Humic acid degradation by fenton-like process using Fe~(2+) and Mn~(4+)

机译:Fe〜(2+)和Mn〜(4+)的芬顿样过程降解腐殖酸

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This study investigates the Humic Acid (HA) degradation in aqueous solution by a Fenton-Like process using Fe~(2+)and Mn~(4+)as a catalyst. The effect of the independent factors: pH, [H_(2)O_(2)], [Fe~(2+)], [Mn~(4+)] and t (reaction time) at the efficiency of HA degradation were evaluated, aiming at obtaining the optimum conditions. The statistic arrangement adopted was the Central Composite Design, and the response variable was the HA relative concentration after the treatments. The inferences were made using variance analysis, the Pareto chart, the response surface method and the desirability function. The variables which were more significant at the HA degradation were: [Fe~(2+)] (linear and square effects), pH (square effect) and the interactions between [Fe~(2+)] vs [H_(2)O_(2)] and [Fe~(2+)] vs t. The addition of Mn~(4+)did not provide a significant improvement to the efficiency of HA degradation. Nevertheless, it was observed that the conventional Fenton process proved to be an efficient alternative for the HA degradation. The optimal and most economical condition is pH 5, [H_(2)O_(2)] of 6.17 mmol L~(−1), [Fe~(2+)] of 0.54 mmol L~(−1), reaction time of 120 min and no added Mn~(4+).
机译:本研究以Fe〜(2+)和Mn〜(4+)为催化剂,通过Fenton-Like工艺研究了水溶液中腐殖酸的降解。在HA降解效率下,pH,[H_(2)O_(2)],[Fe〜(2 +)],[Mn〜(4+)]和t(反应时间)等独立因素的影响分别为评估,旨在获得最佳条件。采用的统计安排是中央复合设计,响应变量是治疗后的HA相对浓度。使用方差分析,帕累托图,响应面方法和合意函数进行推论。在HA降解中最重要的变量是:[Fe〜(2 +)](线性和平方效应),pH(平方效应)以及[Fe〜(2+)]与[H_(2)之间的相互作用O_(2)]和[Fe〜(2+)]对t。 Mn〜(4+)的添加并不能显着提高HA的降解效率。然而,已观察到常规的Fenton工艺被证明是HA降解的有效替代方法。最佳,最经济的条件是pH 5,[H_(2)O_(2)]为6.17 mmol L〜(-1),[Fe〜(2+)]为0.54 mmol L〜(-1),反应时间120分钟后,未添加Mn〜(4+)。

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