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Silica supported binary metal organic framework for removing organic dye involving combined effect of adsorption followed by photocatalytic degradation

机译:二氧化硅支持二元金属有机框架,用于去除有机染料,涉及吸附的组合效果,然后进行光催化降解

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摘要

A novel MIL 53 (Al-Fe)@SiO2 was formulated and employed to treat organic dye containing effluent by an integrated method of adsorption followed by photocatalytic degradation. The MIL 53 (Al-Fe)@SiO2 was synthesized using coal fly ash. The in-depth characterizations of the newly synthesized material enlighten the phenomenal changes in the physical and chemical properties of MIL 53 (Al-Fe)@SiO2 than that of raw fly ash, which enhances its adsorption capacity in three folds. Moreover, the PL spectroscopy analysis depicts that the newly produced MIL 53 (Al-Fe)@SiO2 has slower electron-hole recombination than that of MIL 53 (Al) and MIL 53 (Al)@SiO2. The MIL 53 (Al-Fe)@SiO2 offered a maximum adsorption capacity of 681.782 mg g(-1) and maximum 89.34 and 99.95 % degradation in the presence of visible and UV light radiations, respectively. This study shows that the proposed MIL 53 (Al-Fe)@SiO2, outperforms the conventional materials in treating the industrial effluents for harmful pollutants.
机译:制定了一种新型MIL 53(Al-Fe)@ SiO 2并用于通过综合吸附方法治疗含有流出物的有机染料,然后进行光催化降解。 使用煤粉煤灰合成MIL 53(Al-Fe)@ SiO 2。 新合成材料的深度表征启发了MIL 53(Al-Fe)@ SiO2的物理和化学性质的现象变化,而不是生粉煤灰,这提高了三倍的吸附容量。 此外,PL光谱分析分析描绘了新制造的MIL 53(AL-FE)@ SiO2具有比MIL 53(Al)和MIL 53(Al)@ SiO 2的较慢的电子孔重组。 MIL 53(AL-FE)@ SiO2在存在可见和UV光辐射的情况下,最大吸附容量为681.782mg g(-1)和最大89.34和99.95%的降解。 本研究表明,所提出的MIL 53(AL-FE)@ SiO2,优于治疗工业污染物的工业污染物中的常规材料。

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