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Intensification of degradation of Rhodamine B using hydrodynamic cavitation in the presence of additives

机译:在添加剂存在下使用水力空化作用增强罗丹明B的降解

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摘要

In the present work, degradation of Rhodamine B, a waste dye effluent, has been studied using a hydro-dynamic cavitational reactor with intensification studies in the presence of hydrogen peroxide, carbon tetrachloride and Fenton's reagent as the possibly intensifying additives. In hydrodynamic cavitation reactor, the effect of two different cavitating devices viz. orifice plate and venturi has been investigated. The effect of operational conditions such as the inlet pressure (over a range 2.9-5.8 atm), operating temperature (30 and 40 °C) and pH (over a range 2.5-11) on the extent of degradation has also been investigated. In the intensification studies, the H2O2 loading was optimized over a range of 10-200 mg/I whereas for study related to Fenton's reagent, FeSO4:H202 was used in the optimum ratio of 1:5. In all the systems investigated, 99.9% of Rhodamine B (10 ppm initial concentration) was obtained using a combination of cavitation and H2O2 as well as a combination of cavitation with Fenton chemistry. Combination of cavitation with CCI4 resulted in 82% degradation. TOC analysis at various optimum conditions was also performed to quantify the extent of mineralization and it has been observed that the degradation of parent compound is faster as compared to the extent of mineralization. Some insights into possible mechanistic details for degradation of Rhodamine B have also been established using a spectra scan.
机译:在目前的工作中,已经使用流体动力学空化反应器研究了废染料废水若丹明B的降解,并在过氧化氢,四氯化碳和芬顿试剂作为可能的增强添加剂的情况下进行了增强研究。在水力空化反应器中,两个不同的空化装置的作用即是。孔板和文丘里管已经过研究。还研究了操作条件,例如入口压力(在2.9-5.8 atm的范围内),操作温度(30和40°C)和pH(在2.5-11的范围内)对降解程度的影响。在强化研究中,H2O2的装载量在10-200 mg / I的范围内进行了优化,而与Fenton试剂有关的研究中,FeSO4:H2O2的最佳比例为1:5。在所有研究的系统中,使用空化和H2O2的组合以及空化与Fenton化学的组合,可获得99.9%的若丹明B(初始浓度为10 ppm)。空化与CCI4的结合导致82%的降解。还进行了各种最佳条件下的TOC分析以定量矿化程度,并且已经观察到母体化合物的降解比矿化程度更快。还已经使用光谱扫描建立了对若丹明B降解的可能机理细节的一些见解。

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