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Decolorization of cationic red X-GRL by wet air oxidation: Performance optimization and degradation mechanism

机译:湿空气氧化使阳离子红X-GRL脱色:性能优化和降解机理

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摘要

The decolorization of a strong colored azo dye solution of cationic red X-GRL was investigated by wet air oxidation under relatively mild conditions (60-180℃, P_(O_2) = 0-1.2 MPa). Mono-factor experiments were carried out to investigate the effect of the operation factors and the relatively important parameters were selected for optimization using response surface methodology to explore the interactions of these relatively important parameters. Model regeneration analysis and the check experiments showed that the data of the general linear model agreed with the experiment results well. With multistage Monte-Carlo optimization, the best region of these variables could be predicted to dye color removal. At typical operational conditions, the intermediates of dye degradation were detected and confirmed by GC/MS system. Considering the intermediates and the structure analysis with the help of Gaussian 03W (version 6.0) and the theory of dye color, a possible degradation mechanism for the wet air oxidation of cationic red X-GRL was discussed and the probable degradation pathway was deduced.
机译:在相对温和的条件下(60-180℃,P_(O_2)= 0-1.2 MPa),通过湿空气氧化法研究了强阳离子红X-GRL偶氮染料溶液的脱色。进行了单因素实验以研究操作因素的影响,并使用响应面方法选择了相对重要的参数进行优化,以探索这些相对重要的参数之间的相互作用。模型再生分析和检验实验表明,一般线性模型的数据与实验结果吻合良好。通过多级蒙特卡洛优化,可以预测这些变量的最佳区域来去除染料的颜色。在典型的操作条件下,可以通过GC / MS系统检测并确认染料降解的中间体。在高斯03W(6.0版)的基础上,结合中间体和结构分析,结合染料颜色理论,探讨了阳离子红X-GRL在湿空气中氧化的可能的降解机理,并推导了可能的降解途径。

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