首页> 外文期刊>Proceedings of the National Academy of Sciences, India, Section A. Physical Sciences >Degradation of Reactive Dye in Aqueous Solution by Fenton, Photo-Fenton Process and Combination Process with Activated Charcoal and TiO2
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Degradation of Reactive Dye in Aqueous Solution by Fenton, Photo-Fenton Process and Combination Process with Activated Charcoal and TiO2

机译:降解活性染料的水溶液芬顿,Photo-Fenton过程和组合过程与活性炭和二氧化钛

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In the present work, a comparative efficiency of photo-Fenton (PF) treatment process and its combined process with activated carbon (AC) and titanium dioxide (TiO2) have been investigated using reactive yellow 145 as a model compound. These processes are based on in situ production of hydroxyl radical, a highly strong oxidant, which allows the degradation of organic dye until their mineralization into CO(2)and H2O. The effect of different process parameters, such as initial dye concentration, pH of the solution, Fe(2+)concentration, catalyst and adsorbent loadings, and effect of various systems and irradiation times have been studied. The degradation of the dye was monitored by decolorization and COD analysis and then analyzed by high-performance liquid chromatography and IR analysis. Obtained results showed that PF combined with titanium dioxide (PF-TiO2) for removal of TOC was more efficient than PF or combination with AC. About 73.7% of TOC removal was obtained after 240 min of UV-F-TiO(2)process, whereas the PF and UV-F-AC process yielded TOC reduction of 61.5% and 54.8% after 240 min. Mineralization studied reveals that effectiveness of treatment processes for RY145 is UV-F-TiO2 > PF > UV-F-AC > F-AC > F-TiO2.
机译:在目前的工作,比较效率photo-Fenton (PF)和它的治疗过程结合活性炭(AC)和过程二氧化钛进行了研究使用活性黄145作为模型化合物。这些过程都是基于原位生产氢氧自由基,一种高度强烈的氧化剂,它允许有机染料的降解,直到他们的矿化有限公司(2)和水。不同的工艺参数的影响,如染料初始浓度、pH值的解决方案,铁(2 +)浓度、催化剂和吸附剂各种系统和加载和影响研究了辐照倍。降解染料的监控脱色和鳕鱼分析,然后分析通过高效液相色谱和红外光谱分析。与二氧化钛(PF-TiO2)相结合去除TOC比PF或更有效率结合AC。大约73.7%的TOC移除240分钟后得到UV-F-TiO(2)的过程,而PF和UV-F-AC过程产生了TOC240分钟后减少61.5%和54.8%。矿化研究表明,有效性治疗的过程对于RY145 UV-F-TiO2 >PF > UV-F-AC > F-AC > F-TiO2。

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