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Silent discharge water treatment: Mass transfer and reaction rates.

机译:静水处理:传质和反应速率。

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Mass transfer and rate of de-colourization of a dye, methylene blue, were studied using both conventional ozonation and dielectric barrier discharge through oxygen in the same reactor. Experiments were done in the same apparatus to allow comparison of rates under the two modes of operation in order to determine the impact of discharge based mechanisms. Argon was also used in the discharge reactor to eliminate contributions to de-colourization from ozone formed in situ.; The dielectric barrier discharge system showed enhancements to ozone mass transfer and de-colourization rates when compared with conventional ozonation of 2 to 5 times. The rate of de-colourization was enhanced in excess of the rate of mass transfer, indicating that additional mechanisms are operative in the discharge system. The discharge based mechanisms were found to have a constant effect on de-colourization that can be added to the ozone contribution to achieve the overall rate of de-colourization. The best overall degradation rate was achieved in a single experiment with argon under vacuum, yielding nearly an order of magnitude improvement over conventional ozonation.; This technique shows great promise as a water treatment method, with a shorter required residence time and increased efficiency in transfer and use of ozone as compared with conventional ozonation systems.
机译:在同一个反应器中,使用常规的臭氧化和通过氧气的介电势垒放电,研究了染料亚甲基蓝的传质和脱色速率。为了确定基于放电的机制的影响,在同一设备中进行了实验,以允许比较两种操作模式下的速率。氩还用于放电反应器中,以消除原位形成的臭氧对脱色的影响。与传统的2-5倍臭氧氧化相比,电介质阻挡层放电系统显示出臭氧传质和脱色速率的增强。脱色速率超过了传质速率,这表明在排出系统中还有其他机制在起作用。发现基于放电的机制对脱色具有恒定的影响,可以将其添加到臭氧贡献中以实现总的脱色速率。在真空下氩气的单个实验中,达到了最佳的总降解率,与传统的臭氧化相比,提高了近一个数量级。与常规的臭氧化系统相比,该技术作为水处理方法具有广阔的前景,所需的停留时间更短,臭氧的转移和利用效率更高。

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