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Complexation Modulated Iron Redox Systems for Waste Water Treatment: A Natural Attenuation Model

机译:用于废水处理的络合调制铁氧化还原系统:自然衰减模型

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Natural attenuation mimics nature’s own cleansing mechanism and offers an effective solution for contaminant treatment under prevalent environmental conditions without generating secondary toxins. Despite obvious advantages, these processes are restricted by a narrow range of reduction potential available within natural water systems. Complexation reaction offers to modulate the redox potential range of transition metals allowing detoxification of persistent contaminants. Consequently, present work describes complexation modulated redox potential of iron systems with environmentally available ligands for degradation of contaminants (textile dyes, anti-biotics and toxic metal ions) for a possible application in water treatment under natural attenuation concept. The observed spectrophotometric results are indicative of a significant ligand effect on degradation kinetics of studied contaminants by iron (II) complexes. The kinetic efficacies of iron(II) complexes for contaminant degradation were in the order: aqua
机译:自然的衰减模仿自然界自己的清洁机制,并为在普遍的环境条件下提供有效的解决方案,而无需产生次级毒素。尽管有明显的优势,但这些过程仍受到天然水系统中可用的减少潜力范围狭窄的限制。络合反应可调节过渡金属的氧化还原电势范围,从而使持续污染物排毒。因此,目前的工作描述了铁系统与环境可用的配体的络合氧化还原潜力,以降解污染物(纺织染料,抗生素和有毒金属离子),以在自然衰减概念下进行水处理。观察到的分光光度法结果表明了铁(II)配合物对所研究污染物的降解动力学的显着配体影响。铁(II)复合物对污染物降解的动力学效率按以下顺序:aqua <乙酸<醋酸盐

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