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Ferrous ions (Fe2+) assisted air-bubble cavitation degradation of organic pollutants

机译:亚铁离子(Fe2 +)辅助气泡空化降解有机污染物

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The ferrous ions (Fe2+) assistant air-bubble cavitation degradation of some organic dyes (Congo Red, Rhodamine B, Methyl Orange, and Methyl Violet) induced by air bubbles passing small glass balls was systematically investigated. Meanwhile, the influence of five operating factors, including air-bubbling time, FeSO4 center dot 7H(2)O amount, dye initial concentration, glass ball diameter, and gas flow rate, on the degradation of Congo Red dye were reviewed. Moreover, the degradation process of Congo Red is inspected by using UV-Vis, TOC, and HPLC techniques. It was found that the highest TOC removal ratio (81.42 %) was achieved under optimal conditions. On the other hand, the production and existence of center dot OH radicals was testified through the oxidation of 1,5-diphenylcarbohydrazide (DPCI) forming diphenylcarbazone (DPCO). It can be inferred that the air-bubble cavitation induces ferrous ions to provide additional hydroxyl (center dot OH) radicals, which results in a rapid oxidation of organic dyes. Furthermore, the possible degradation process and mechanism were also discussed. All results demonstrate that this new degradation method has many advantages, such as high efficiency, energy savings, producing no secondary pollution, and being a simple device. Thus, it is expected to be feasible and promising as an advisable choice for the treatment of organic wastewater in the future.
机译:系统地研究了气泡通过小玻璃球引起的某些有机染料(刚果红,若丹明B,甲基橙和甲基紫)的亚铁离子(Fe2 +)辅助气泡的空化降解。同时,考察了鼓泡时间,FeSO4中心点7H(2)O量,染料初始浓度,玻璃球直径和气体流速等五个操作因素对刚果红染料降解的影响。此外,通过使用UV-Vis,TOC和HPLC技术检查了刚果红的降解过程。结果发现,在最佳条件下,TOC去除率最高(81.42%)。另一方面,通过将1,5-二苯碳酰肼(DPCI)氧化形成二苯卡巴zone(DPCO)证实了中心点OH自由基的产生和存在。可以推断,气泡的空化会诱导亚铁离子提供额外的羟基(中心点OH)自由基,从而导致有机染料快速氧化。此外,还讨论了可能的降解过程和机理。所有结果表明,这种新的降解方法具有许多优点,例如效率高,节省能源,不产生二次污染以及装置简单。因此,预期作为将来处理有机废水的明智选择是可行和有希望的。

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