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Photochemical Oscillation of Fe(Ⅱ)/Fe(Ⅲ) Ratio Induced by Periodic Flux of Dissolved Organic Matter

机译:溶解有机物周期性通量引起的Fe(Ⅱ)/ Fe(Ⅲ)比的光化学振荡

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Variation of iron species in the UV-irradiated aqueous solution was examined in the presence of various dissolved organic matter (DOM). Under the irradiation at constant light intensity, a regular oscillation in the ratio of Fe(Ⅱ) to total iron, Fe(Ⅱ)/Fe(t), was observed when DOM was periodically added into the solution. In each cycle, the Fe(Ⅱ)/Fe(t) ratio increased initially and then decreased with concomitant degradation of DOM. The Fe(Ⅱ)/Fe(t) ratio approached a constant value after the DOM was completely mineralized. The period and amplitude of the oscillation were dependent on DOM structure and its initial concentration, but the ultimate photosteady state was not affected by DOM. It was revealed that both DOM and photoreactive Fe(Ⅲ) species were indispensable for the fluctuation in Fe(Ⅱ)/Fe(t) ratio. The ultimate photosteady state originated from the equilibrium between Fe(Ⅲ) photoreduction and aerobic Fe(Ⅱ) photooxidation induced simultaneously by UV irradiation. It was the DOM that disturbed these two opposite processes, leading to the oscillation in Fe(Ⅱ)/ Fe(t) ratio under UV irradiation.
机译:在存在各种溶解的有机物(DOM)的情况下,检查了UV辐射水溶液中铁种类的变化。在恒定的光强度照射下,当定期向溶液中添加DOM时,观察到Fe(Ⅱ)与总铁之比Fe(Ⅱ)/ Fe(t)的规则振荡。在每个循环中,Fe(Ⅱ)/ Fe(t)的比率先增加,然后随着DOM的降解而减少。 DOM完全矿化后,Fe(Ⅱ)/ Fe(t)比接近恒定值。振荡的周期和幅度取决于DOM结构及其初始浓度,但是最终的光稳态不受DOM影响。结果表明,DOM和光反应性Fe(Ⅲ)种类对于Fe(Ⅱ)/ Fe(t)比的波动都是必不可少的。最终的光稳态来自于紫外线辐射同时引起的Fe(Ⅲ)光还原与好氧Fe(Ⅱ)光氧化之间的平衡。正是DOM干扰了这两个相反的过程,导致UV辐射下Fe(Ⅱ)/ Fe(t)比的振荡。

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