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Feasibility of an electrochemically assisted Fenton method using Fe~(2+)/HOCl system as an advanced oxidation process

机译:使用Fe〜(2 +)/ HOCl体系作为高级氧化工艺的电化学辅助Fenton方法的可行性

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The feasibility of an electrochemically assisted Fenton treatment using a Fenton-type reaction of ferrous iron (Fe~(2+)) and hypochlorous acid (HOCl) is discussed in this research. The reactor used was composed of an undivided single cell with a ruthenium dioxide-coated titanium anode and a stainless steel cathode, in which Fe~(2+) and HOCl were catalytically regenerated from ferric iron at the cathode and chloride ion at the anode, respectively. Although the reactor functioned well, the degradation rate of 1,4-dioxane as a hydroxyl radical probe decreased at the current density more than 6.92mAcm~(-2). The decrease in degradation rate was inferred to be caused by the vain consumption of hydroxyl radicals by excess HOCl and the deposition of ferric hydroxide on the cathode at relatively high current density. The current efficiency of 1,4-dioxane removal remained more than 90% at the current density less than 6.92mAcm~(-2) and the iron concentration not less than 1.0 mmolL~(-1). Consequently, this technique is thought to be applicable to the treatment of wastewater containing high concentration of chloride ion such as landfill leachate, scrubber wastewater from incineration plants, etc.
机译:本研究讨论了使用亚铁(Fe〜(2+))和次氯酸(HOCl)的芬顿型反应进行电化学辅助芬顿处理的可行性。所用的反应器由一个不分隔的单电池组成,该电池具有二氧化钌涂层的钛阳极和一个不锈钢阴极,其中Fe〜(2+)和HOCl在阴极处由三价铁离子催化再生,在阳极处由氯离子催化再生,分别。尽管反应器功能良好,但当电流密度大于6.92mAcm〜(-2)时,作为羟基自由基探针的1,4-二恶烷的降解率降低。可以认为,降解速率的降低是由于过量的HOCl浪费了羟基自由基,以及在较高电流密度下氢氧化铁在阴极上的沉积所致。在电流密度小于6.92mAcm〜(-2),铁浓度不小于1.0 mmolL〜(-1)的条件下,去除1,4-二恶烷的电流效率保持在90%以上。因此,该技术被认为可用于处理含高浓度氯离子的废水,例如垃圾渗滤液,焚烧厂的洗涤塔废水等。

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