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Influence of aluminum oxides surface properties on catalyzed ozonation of 2,4,6-trichloroanisole

机译:氧化铝表面性能对2,4,6-三氯苯甲醚催化臭氧氧化的影响

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摘要

This paper aimed to reveal the removal effectiveness and the mechanism of catalytic ozonation in the presence of aluminum oxides (gamma-AIOOH,gamma-Al2O3, and alpha-Al2O3) for the degradation of a taste and odor compound. Results showed that catalytic ozonation in the presence of aluminum oxides can substantially enhance 2,4,6-trichloroanisole (TCA) removal compared with the sole ozonation. However, three kinds of aluminum oxides exhibited different catalytic activity in catalytic ozonation for the degradation of TCA remarkably. Scavenging experiments of hydroxyl radicals revealed that the improving removal effectiveness of TCA was due to the enhancing generation of hydroxyl radicals. The catalytic activity of the aluminum oxides was related to highly hydroxylated surface. The surface hydroxyl groups on the aluminum oxides were active sites in catalytic ozonation. The density of surface hydroxyl groups and the surface Bronsted acidity determined the difference of the catalytic activity of aluminum oxides. The higher density of surface hydroxyl groups and the stronger Bransted acidity of the surface can remarkably enhance the catalytic activity.
机译:本文旨在揭示在氧化铝(γ-AlOOH,γ-Al2O3和α-Al2O3)存在下降解臭味和气味化合物的去除效果和催化臭氧氧化的机理。结果表明,与单独的臭氧化相比,在氧化铝存在下的催化臭氧化可以显着提高2,4,6-三氯茴香醚(TCA)的去除率。然而,三种氧化铝在催化臭氧氧化中对三氯乙酸的降解表现出不同的催化活性。羟基自由基的清除实验表明,TCA去除效果的提高是由于羟基自由基产生的增加。氧化铝的催化活性与高度羟基化的表面有关。氧化铝上的表面羟基是催化臭氧化反应中的活性中心。表面羟基的密度和表面布朗斯台德酸度决定了氧化铝催化活性的差异。表面羟基的密度越高,表面的布朗斯台德酸性越强,可以显着提高催化活性。

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