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Evaluation of the effectiveness of red mud-supported catalysts in combination with ozone and TiO_2 in the treatment of solution containing benzene, toluene, and xylene

机译:赤泥负载型催化剂与臭氧和TiO_2结合处理含苯,甲苯和二甲苯溶液的效果评估

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Ozone and a Fe2+/TiO2-based catalyst were examined in the degradation of a synthetic solution of benzene toluene and xylene (BTX) in an advanced oxidation process (AOP). The catalyst beads were made from the slurry waste of aluminum production process, by inserting the TiO2 content and subsequent calcination. The reduction of the BTX concentration load was monitored by the reduction of chemical oxygen demand (COD) and BTX concentration. Different levels were used on factors: pH, time of treatment, initial concentration of BTX, and percentage of TiO2. The process was conducted in a bubble column reactor with the insertion of catalyst beads. A response surface methodology technique (CCD) was used to build a model based on COD reduction results. The model was optimized using the normal-boundary intersection (NBI) algorithm to maximize COD reduction and minimize the variance attributed to the process. Optimization led to COD reductions of 80% in 2 h of experiment. Correlation analysis of coefficient models from experimental data R-adj(2) was 0.9966, showing a good fit of model data. In the optimized conditions, the possible increase of the biodegradability ratio of the BTX solution, through the biochemical oxygen demand (BOD) and COD, was also analyzed. Under pre-treatment conditions, the BOD/COD ratio was 0.13. After the treatment, it increased to 0.56.
机译:在先进氧化工艺(AOP)中降解苯甲苯和二甲苯的合成溶液(BTX)中,检查了臭氧和Fe2 + / TiO2基催化剂。通过插入TiO2含量并随后煅烧,由铝生产过程中的废浆制成催化剂珠。 BTX浓度负荷的降低通过化学需氧量(COD)和BTX浓度的降低进行监测。在以下因素上使用了不同的水平:pH,处理时间,BTX的初始浓度和TiO2的百分比。该方法在鼓泡塔反应器中进行,其中插入了催化剂珠。响应面方法技术(CCD)用于基于COD减少结果建立模型。使用法向边界交点(NBI)算法对模型进行了优化,以最大程度地减少COD并最大程度地减少归因于过程的方差。优化使实验2小时内的COD减少了80%。来自实验数据R-adj(2)的系数模型的相关分析为0.9966,显示出模型数据的良好拟合。在最佳条件下,还分析了BTX溶液通过生化需氧量(BOD)和COD可能增加的生物降解率。在预处理条件下,BOD / COD比为0.13。治疗后,它增加到0.56。

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