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Modeling of decolorization of synthetic reactive dyestuff solutions with response surface methodology by a rapid and efficient process of ultrasound-assisted ozone oxidation

机译:通过响应面方法通过快速有效的超声辅助臭氧氧化过程对合成活性染料溶液的脱色建模

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摘要

The present study investigates the results of decolorization of Malachite Green (MG), Reactive Black 5 (RB5), and Reactive Yellow 145 (RY145) in aqueous solutions based on a rapid and novel process of ultrasound-assisted ozonation. A Placket-Burman design (PBD) as a factorial design was used to quantify and screen the significant effects of the seven factors on decolorization efficiency: temperature (C-o), initial pH, probe position (height from bottom of reactor, mm), reaction time (min), ozone concentration (g/L), mixing speed (rpm), and ultrasonic power (W). Probe position and mixing speed were not found as significant after considering the regression and ANOVA results of PBD. A Box-Behnken design (BBD) as a kind of response surface methodology, with remaining five factors at three levels was set to demonsrate the interactions. The best-fit multi non-linear regression (MNLR) models were derived by using the results of BBD. According to BBD, the maximum decolorization efficiency of 99.31, 99.86, and 99.52% were obtained consistently at the lowest initial pH of 2, the highest reaction time of 30min, and ozone concentration of 0.15g/L for MG, RB5, and RY145, respectively. The best-fit MNLR models were cross-validated (R-pred(2)) accounting for 81.02-88.25% and were expressed (R-adj(2)) accounting for 93.01-95.70% of variation in decolorization efficiency.
机译:本研究基于超声波辅助臭氧化的快速和新颖过程,研究了水溶液中孔雀石绿(MG),活性黑5(RB5)和活性黄145(RY145)的脱色结果。使用Placket-Burman设计(PBD)作为析因设计,用于量化和筛选七个因素对脱色效率的显着影响:温度(Co),初始pH,探针位置(离反应器底部的高度,mm),反应时间(min),臭氧浓度(g / L),混合速度(rpm)和超声功率(W)。考虑到PBD的回归和方差分析结果,发现探针位置和混合速度不显着。 Box-Behnken设计(BBD)作为一种响应面方法,设置了三个层次中的其余五个因素来简化交互。通过使用BBD的结果,得出了最适合的多元非线性回归(MNLR)模型。根据BBD,在最低的初始pH值为2,最高的反应时间为30分钟,臭氧浓度为MG,RB5和RY145的臭氧浓度为0.15g / L的情况下,始终能获得最高脱色效率99.31、99.86和99.52%分别。最佳拟合的MNLR模型经过交叉验证(R-pred(2))占81.02-88.25%,被表示为(R-adj(2))占脱色效率变化的93.01-95.70%。

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