首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Fe-exchanged Y zeolite as catalyst for wet peroxide oxidation of reactive azo dye Procion Marine H-EXL
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Fe-exchanged Y zeolite as catalyst for wet peroxide oxidation of reactive azo dye Procion Marine H-EXL

机译:铁交换Y沸石作为活性偶氮染料的湿过氧化物氧化的催化剂Procion Marine H-EXL

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摘要

This paper evaluates the degradation of a reactive azo dye, Procion Marine H-EXL, by catalytic wet hydrogen peroxide oxidation (CWHPO). The catalyst was prepared by ion-exchange, starting from a commercially available ultrastable Y zeolite. All experiments were performed on a laboratory scale set-up. The effects of different reaction parameters such as initial pH, catalyst and hydrogen peroxide concentrations on the oxidation of the dye aqueous solution were assessed. Apart from the conventional parameters, the toxic potential of the dye's degradation products was investigated using the bioluminescence test. HPICE analysis was also performed to obtain detailed information on the resulting oxidation products (organic and inorganic anions). The results indicate that after only l0min at 50degC, 20mmol/l H_2O_2 and lg/1 FeY_(11.5) the color removal was as high as of 97% at pH = 3 and 53% at pH = 5. More than 96% removal of the dye could be attained in 30 min at pH = 5, t = 50degC, 20mmol/l H_2O_2 and 1 g/1 FeYn_(11.5) which corresponds to about 76% reduction of the initial COD and 37% removal of the initial TOC. A preliminary study of catalytic oxidation with hydrogen peroxide of the synthetic textile wastewater containing the specific dye is also presented. Leaching tests indicate that the activity of the catalyst is not due to leached iron ions, although an amount of 0. l-4.0ppm of iron ions was found in aqueous solution. The catalyst allows almost total elimination of the dye and a significant removal of COD and TOC without the significant leaching of Fe ions. It was also observed that by using this catalyst, it is possible to extend the range of pH values for which Fenton-type oxidation can occur and no iron hydroxide sludge is formed.
机译:本文评估了催化偶氮染料Procion Marine H-EXL通过湿式催化过氧化氢(CWHPO)的降解。通过离子交换从可商购的超稳定Y型沸石开始制备催化剂。所有实验均在实验室规模上进行。评估了不同反应参数(例如初始pH,催化剂和过氧化氢浓度)对染料水溶液氧化的影响。除常规参数外,还使用生物发光试验研究了染料降解产物的潜在毒性。还进行了HPICE分析,以获得有关所得氧化产物(有机和无机阴离子)的详细信息。结果表明,在50℃,20mmol / l H_2O_2和lg / 1 FeY_(11.5)下仅运行10分钟后,在pH = 3时脱色率高达97%,在pH = 5时脱色率高达53%。可以在30分钟内在pH = 5,t = 50℃,20mmol / l H_2O_2和1 g / 1 FeYn_(11.5)的条件下获得染料,这相当于初始COD降低了约76%,初始TOC去除了37%。还提出了用过氧化氢对含有特定染料的合成纺织废水进行催化氧化的初步研究。浸出试验表明,尽管在水溶液中发现了0-1.4ppm的铁离子,但是催化剂的活性不是由于浸出的铁离子。该催化剂几乎可以完全消除染料,并可以大量除去COD和TOC,而不会大量浸出Fe离子。还观察到,通过使用该催化剂,可以扩大可能发生芬顿型氧化并且不形成氢氧化铁淤渣的pH值的范围。

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