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首页> 外文期刊>Ultrasonics sonochemistry >Improvement of sonochemical degradation of Brilliant blue R in water using periodate ions: Implication of iodine radicals in the oxidation process
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Improvement of sonochemical degradation of Brilliant blue R in water using periodate ions: Implication of iodine radicals in the oxidation process

机译:用周期离子改善辉煌蓝氢化的辉煌劣化:碘基团在氧化过程中的含义

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摘要

In this paper, the effect of periodate (IO4-) on the ultrasonic degradation at 300 kHz of Brilliant Blue R (BBR), an organic dye pollutant, was investigated. The experiments were realized in the absence and presence of periodate for various operating conditions including initial solution pH (2-8) and delivered ultrasonic power (20-80 W). It was found that periodate greatly enhanced the sonochemical degradation of BBR. The degradation rate increased significantly with increasing IO4- concentration up to 10 mM and decreased afterward. With 10 mM of periodate, the degradation rate was 2.4-fold higher than that with ultrasound alone. The chemical probes experiments showed that periodate activation into free radicals (IO3 center dot, IO4 center dot and (OH)-O-center dot) takes place by sonolysis and iodine radicals contribute significantly in the oxidation process. It was found that the periodate-enhanced effect was strongly experimental parameters dependent. The advantageous effect of periodate increased significantly with decreasing power and the best enhancing effect was obtained for the lowest power. Correspondingly, the periodate-enhanced effect increased with pH increase in the range 2-8 and it was more remarkable at near alkaline condition (pH 8). A reaction scheme for periodate sonolysis was proposed, for the first time, discussed and then used for interpreting the obtained results. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文研究了期间(IO4-)对300kHz亮蓝r(BBR),有机染料污染物的超声降解的影响。在包括初始溶液pH(2-8)的各种操作条件的情况下,在不存在和存在的情况下实现了实验,并提供超声波功率(20-80W)。发现周期大大提高了BBR的乖乖降解。降解速率随着IO4浓度的增加而显着增加,高达10毫米并且之后降低。对于10毫米的周期,降解速率比单独的超声波高2.4倍。化学探针实验表明,通过Sonolysis和碘基团在氧化过程中产生显着贡献的氧化过程中的自由基(IO3中心点,IO4中心点和(OH)-O-中心点)。结果发现,术语增强的效果是强烈的实验参数依赖性。随着功率降低的最低功率和最佳增强效果的最佳效果显着增加了最低的功率。相应地,术语增强的效果随着2-8的第2-8的pH增加而增加,并且在接近碱性条件(pH8)时更加显着。第一次讨论,提出了一种后谐波分解的反应方案,然后用于解释所获得的结果。 (c)2017 Elsevier B.v.保留所有权利。

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