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首页> 外文期刊>Chemical engineering journal >Degradation and biodegradability improvement of the reactive red 198 azo dye using catalytic ozonation with MgO nanocrystals
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Degradation and biodegradability improvement of the reactive red 198 azo dye using catalytic ozonation with MgO nanocrystals

机译:MgO纳米晶催化臭氧化反应性红198偶氮染料的降解及生物降解性的提高

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The catalytic ozonation of RR198 solution in the presence of MgO nanocrystal catalysts was investigated in a laboratory scale batch reactor. The effects of solution pH (2-12), reaction time, MgO dosage (1 -6 g/L), and initial dye concentration (100-500 mg/L) on color and COD removal were evaluated, and the findings were compared to those of ozonation without a catalyst. The results indicate that adding MgO nanocrystals into the ozonation reactor greatly accelerated the rate of RR198 degradation, thereby reducing the reaction time and improving the reduction of color and COD compared to conventional ozonation. The optimum pH and catalyst dosage values were determined to be 8 and 5 g/L, respectively. The complete removal of color was observed in COP at this optimum condition for an RR198 concentration of 200 mg/L at a reaction time as short as 9 min, while the time required to attain the same performance at single ozonation was 30 min. Furthermore, the COP could markedly increase the ratio of BOD5 to COD from below 0.1 in raw solution to 0.63 to 0.38 for dye solutions of 100 and 500 mg/L, respectively???thus, RR 198 was converted to biodegradable compounds. Therefore, the COP on MgO nanocrystals is considered as an effective and feasible process for pre-treating the azo dye-laden solutions, making possible a post-treatment of the effluent in a biological system.
机译:在实验室规模的间歇反应器中研究了在MgO纳米晶体催化剂存在下RR198溶液的催化臭氧氧化反应。评估了溶液的pH值(2-12),反应时间,MgO用量(1 -6 g / L)和初始染料浓度(100-500 mg / L)对颜色和COD去除的影响,并比较了发现那些没有催化剂的臭氧化反应。结果表明,与常规臭氧化相比,将MgO纳米晶体添加到臭氧化反应器中大大加快了RR198的降解速度,从而减少了反应时间并改善了颜色和COD的降低。确定的最佳pH和催化剂剂量分别为8 g / L和5 g / L。在此最佳条件下,当RR198浓度为200 mg / L时,反应时间最短为9分钟,在COP下观察到了完全脱色,而在一次臭氧氧化下达到相同性能所需的时间为30分钟。此外,COP可以显着增加BOD5与COD的比例,从原液中的0.1以下降至100和500 mg / L的染料溶液中的0.63至0.38,从而R​​R 198转化为可生物降解的化合物。因此,MgO纳米晶体上的COP被认为是一种预处理载有偶氮染料的溶液的有效可行的方法,从而可以对生物系统中的废水进行后处理。

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