准晶修饰光- fenton法光催化罗丹明B脱色的初步研究

IF 0.5 Q4 ENGINEERING, CIVIL
S. Łoński, W. Łoński, R. Babilas, K. Barbusiński
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引用次数: 0

摘要

摘要:采用过碳酸钠(SP)作为H2O2的替代源,Al65Cu20Fe15合金(含准晶Al65Cu20Fe15)作为铁离子的来源,对光- fenton反应进行了改进,有效地脱色了罗丹明B (RB;溶液(5mg /l)。紫外线辐射源是一盏功率为36w的灯。实验在pH = 7,反应时间为5 ~ 60 min的条件下进行。SP浓度的增加(8.3 ~ 33.3 g/l)显著提高了RB的降解程度和反应速率。然而,准晶体的使用,在8.3到33.3 g/l的范围内,在改性光催化- fenton工艺中也很重要。当SP浓度最高为33.3 g/l,准晶浓度最低为8.3 g/l时,RB的降解效果最佳(95%)。另一方面,当SP和准晶浓度分别为16.7 g/l和16.7 g/l时,45分钟后,当SP和准晶浓度分别为33.3 g/l和8.3 g/l时,20分钟后,RB的目视脱色效率为70%。对比方法(UV/Na2CO3·1.5H2O2,不添加准晶)对RB的最佳降解效果仅为52.7%。所得结果鼓励进一步研究,以优化所提出的方法的条件,并研究其对其他类型的染料和污染物的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photocatalytic Decolourization of Rhodamine B by Modified Photo-Fenton Process with Quasicrystals – Preliminary Research
Abstract A novel photocatalytic process using a modification of photo-Fenton reaction, with sodium percarbonate (SP), as an alternative source of H2O2, and alloy Al65Cu20Fe15 containing, among others, quasicrystals (of the percentage composition Al65Cu20Fe15), being a source of iron ions, effectively decolourizes the aqueous solution of rhodamine B (RB; solution of 5 mg/l). The source of UV radiation was a lamp with a power of 36 W. The experiments were carried out at pH = 7 and reaction time (from 5 to 60 min). The increase in SP concentration (in the range of 8.3 to 33.3 g/l) significantly increased the degree of degradation of RB and the reaction rate. However, the use of quasicrystals, in the range of 8.3 to 33.3 g/l, was also important in the modified photocatalytic photo-Fenton process. The best degradation effects of RB (95%) were obtained for the highest SP concentration of 33.3 g/l and the lowest quasicrystal concentration of 8.3 g/l. On the other hand, visual decolourization of RB was obtained with an efficiency of 70% for SP and quasicrystal concentrations of 16.7 g/l and 16.7 g/l, respectively, after 45 minutes, and for SP and quasicrystal concentrations of 33.3 g/l and 8.3 g/l, respectively, after the time of 20 minutes. The best RB degradation effects in the comparative method (UV/Na2CO3·1.5H2O2 without the addition of quasicrystals) were only 52.7%. The obtained results encourage further research to optimize the conditions of the proposed method and to investigate its applicability to other types of dyes and pollutants.
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