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基于水力空化的混合技术降解活性橙4染料

Degradation of reactive orange 4 dye using hydrodynamic cavitation based hybrid techniques.

作者信息

Gore Mohan M, Saharan Virendra Kumar, Pinjari Dipak V, Chavan Prakash V, Pandit Aniruddha B

机构信息

Chemical Engineering Department, BVUCOE, Pune 411 043, India.

Chemical Engineering Department, MNIT, Jaipur 302 017, Rajasthan, India.

出版信息

Ultrason Sonochem. 2014 May;21(3):1075-82. doi: 10.1016/j.ultsonch.2013.11.015. Epub 2013 Dec 4.

DOI:10.1016/j.ultsonch.2013.11.015
PMID:24360991
Abstract

In the present work, degradation of reactive orange 4 dye (RO4) has been investigated using hydrodynamic cavitation (HC) and in combination with other AOP's. In the hybrid techniques, combination of hydrodynamic cavitation and other oxidizing agents such as H2O2 and ozone have been used to get the enhanced degradation efficiency through HC device. The hydrodynamic cavitation was first optimized in terms of different operating parameters such as operating inlet pressure, cavitation number and pH of the operating medium to get the maximum degradation of RO4. Following the optimization of HC parameters, the degradation of RO4 was carried out using the combination of HC with H2O2 and ozone. It has been found that the efficiency of the HC can be improved significantly by combining it with H2O2 and ozone. The mineralization rate of RO4 increases considerably with 14.67% mineralization taking place using HC alone increases to 31.90% by combining it with H2O2 and further increases to 76.25% through the combination of HC and ozone. The synergetic coefficient of greater than one for the hybrid processes of HC+H2O2 and HC+Ozone has suggested that the combination of HC with other oxidizing agents is better than the individual processes for the degradation of dye effluent containing RO4. The combination of HC with ozone proves to be the most energy efficient method for the degradation of RO4 as compared to HC alone and the hybrid process of HC and H2O2.

摘要

在本研究中,采用水力空化(HC)及其与其他高级氧化过程(AOP)相结合的方式,对活性橙4染料(RO4)的降解进行了研究。在这些复合技术中,水力空化与其他氧化剂(如H2O2和臭氧)相结合,通过HC装置提高降解效率。首先,针对不同的操作参数(如操作入口压力、空化数和操作介质的pH值)对水力空化进行优化,以实现RO4的最大降解。在优化HC参数之后,采用HC与H2O2和臭氧相结合的方式进行RO4的降解。研究发现,将HC与H2O2和臭氧相结合可显著提高其效率。RO4的矿化率大幅提高,仅使用HC时的矿化率为14.67%,与H2O2结合后提高到31.90%,通过HC与臭氧结合则进一步提高到76.25%。HC+H2O2和HC+臭氧复合过程的协同系数大于1,这表明HC与其他氧化剂结合对于含RO4染料废水的降解比单独的过程更有效。与单独的HC以及HC和H2O2的复合过程相比,HC与臭氧结合被证明是降解RO4最节能的方法。

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