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Sequential photo-Fenton and sono-photo-Fenton degradation studies of Reactive Black 5 (RB5)

机译:活性黑5(RB5)的顺序光芬顿和声光芬顿降解研究

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摘要

Sequential treatment studies have been done using photo-Fenton and sono-photo-Fenton, and compared with individual processes to analyze possible favorable effects of combined systems for the degradation of Reactive Black 5 (RB5). The coupled system enhances the degradation as compared to the ultrasound or UV-light irradiation processes along with the reduction in treatment time. Batch runs were carried out to investigate the process operational conditions: pH, H2O2 dosage, Fe2+ dosage, and RB5 concentration; to obtain the results at best possible operating conditions render advanced oxidation processe (AOP) competitive with other processes; and to ensure the rapid and complete transformation of the toxic organic compounds to benign chemicals. Degradation observed was 69% under Fenton and 93% under photo-Fenton with experimentally optimized conditions i.e. pH 4, Fe2+ concentration 0.050gL(-1) and H2O2 0.150gL(-1) after 20min. Sono-photo-Fenton treatment enhances the degradation up to 98% with experimentally optimized parameters within 12min of reaction.
机译:已经使用光芬顿和声光芬顿进行了顺序处理研究,并将其与单个过程进行比较,以分析组合系统对活性黑5(RB5)降解的可能有利影响。与超声或紫外光辐照过程相比,耦合系统可增强降解效果,并减少治疗时间。分批运行以研究工艺操作条件:pH,H2O2剂量,Fe2 +剂量和RB5浓度;在最佳操作条件下获得结果,使先进的氧化工艺(AOP)与其他工​​艺竞争;并确保有毒有机化合物快速,完全转化为良性化学物质。在实验优化的条件下,即pH 4,Fe2 +浓度为0.050gL(-1)和H2O2为0.150gL(-1),在实验条件下,Fenton的降解率为69%,在光Fenton的条件下为93%。声光Fenton处理可在12分钟内通过实验优化的参数将降解率提高至98%。

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