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Degradation of Blue KN-R Dye in Batik Effluent by an Advanced Oxidation Process Using a Combination of Ozonation and Hydrodynamic Cavitation

机译:使用臭氧化合物和流体动力空化的先进氧化过程降解Batik流出物的蜡染流出物

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摘要

The popularity of batik has been increasing since it was declared as a world cultural heritage by UNESCO in 2009. Correspondingly, the content of textile dyes in textile industry wastewater is also increased. These dyes contain functional groups which make them quite stable in the environment and causes pollution. In this work, degradation of 100 ppm Blue KN-R has been investigated using ozonation, hydrodynamic cavitation, and a combination of the two for 60 min. The three configuration methods were optimized in terms of different operating parameters, namely flowrate, initial pH and dosage of ozone, to obtain the maximum degradation of Blue KN-R. It was found that the highest decolorization level for a single method was 70.16% for the single ozonation process at pH 11 and 156.48 mg/h of ozone and 1.79% for the single hydrodynamic cavitation process at pH 4. The highest decolorization level was 79.39%, achieved by the combination at pH 11 and 156.48 mg/h of ozone. The mineralization level in the form of a percentage of Total Organic Carbon (TOC) removal by ozonation, hydrodynamic cavitation, and their combination was 14.81, 1.85, and 19.9%, respectively. Due to its better performance, degradation of Blue KN-R was conducted by the hybrid method for 120 min, resulting in 92.63% of decolorization and 24.54% of TOC removal. The degree of synergetic decolorization and mineralization was due to the mechanical and chemical effect of hydrodynamic cavitation in increasing ozone solubility and production of hydroxyl radicals. Degradation of batik effluent has been investigated in optimum conditions for 120 min. The color, COD, BOD, and TSS removal were 67.96, 68.72, 66.54, and 79.84%, respectively.
机译:蜡染的普及是在2009年被教科文组织宣布为世界文化遗产的普及。相应地,纺织工业废水中纺织染料的含量也增加了。这些染料含有官能团,使它们在环境中非常稳定并导致污染。在这项工作中,使用臭氧化,流体动力空化和两种60分钟的组合研究了100ppm蓝色KN-R的降解。根据不同的操作参数,即流量,初始pH和臭氧剂量的术语进行了优化了三种配置方法,以获得蓝色KN-R的最大劣化。发现单一方法的最高脱色水平为PH11和156.48mg / h的单一臭氧过程的70.16%,在pH4的单个流体动力空化过程中为1.79%。最高脱色水平为79.39% ,通过在pH11和156.48mg / h的臭氧组合实现。通过臭氧化,流体动力空化和它们的组合除去总有机碳(TOC)的百分比形式的矿化水平分别为14.81,1.85和19.9%。由于其性能更好,通过杂化方法进行了120分钟的蓝色KN-R的降解,导致脱色的92.63%和24.54%的TOC去除。协同脱色和矿化程度是由于流体动力空化在增加臭氧溶解度和羟基的生产中的机械和化学效果。已经在最佳条件下研究了蜡染流出物的降解120分钟。去除的颜色,鳕鱼,BOD和TSS分别为67.96,68.72,66.54和79.84%。

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