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Removal of 1,4-dioxane from water using sonication: Effect of adding oxidants on the degradation kinetics

机译:超声去除水中的1,4-二恶烷:添加氧化剂对降解动力学的影响

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This research investigates the effect of adding oxidants such as Fe~0, Fe~(2+) and S_2O_8~(2-) in the sonication of 1,4-dioxane (1,4-D). The results indicate that the degradation pattern of 1,4-D kinetically could be divided into three steps (initiation, acceleration, and stabilization), with the first two steps predominating. The initiation step agreed with zero order rate model, while the acceleration step was the pseudo-first order. In the presence of HCO_3~- as a radical scavenger, the degradations of 1,4-D and TOC were suppressed, indicating that OH radical is an important factor in the sonolysis, especially at the acceleration step. The overall degradation efficiency of 79.0% in the sonolysis of 1,4-D was achieved within 200 min. While Fe~0, Fe~(2+) and S_2O_8~(2-) were individually combined with sonication, the total degradation efficiency of 1,4-D increased 18.6%, 19.1% and 16.5% after 200 min, respectively. The addition of oxidants not only increased the rate constant in the acceleration step, but also changed the kinetic model from zero to pseudo-first order at the initiation step. The addition of oxidants such as Fe~(2+), Fe~0 and S_2O_8~(2-) in the sonication of 1,4-D also improved the mineralization of 1,4-D. However, the degradation efficiencies of 1,4-D and TOC were not statistically different (p = 0.709, ANOVA) with different oxidants such as Fe~(2+), Fe~0 and S_2O_8~(2-).
机译:本研究研究了添加氧化剂Fe〜0,Fe〜(2+)和S_2O_8〜(2-)在1,4-二恶烷(1,4-D)的超声处理中的作用。结果表明,动力学上的1,4-D降解模式可分为三个步骤(起始,加速和稳定),其中前两个步骤占主导。初始步骤与零阶速率模型相符,而加速步骤为伪一阶。在存在HCO_3-作为自由基清除剂的情况下,抑制了1,4-D和TOC的降解,这表明OH自由基是声分解的重要因素,尤其是在加速步骤中。在1分钟内对1,4-D进行声处理的总降解效率为79.0%,在200分钟内即可实现。当Fe〜0,Fe〜(2+)和S_2O_8〜(2-)分别与超声处理结合时,在200分钟后1,4-D的总降解效率分别提高了18.6%,19.1%和16.5%。氧化剂的添加不仅在加速步骤中增加了速率常数,而且还在引发步骤中将动力学模型从零阶更改为伪一级。 1,4-D超声处理中加入Fe〜(2 +),Fe〜0和S_2O_8〜(2-)等氧化剂也改善了1,4-D的矿化作用。然而,在不同的氧化剂如Fe〜(2 +),Fe〜0和S_2O_8〜(2-)的作用下,1,4-D和TOC的降解效率没有统计学差异(p = 0.709,ANOVA)。

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