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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Degradation of rosolic acid by advanced oxidation processes:ozonation vs. solar photocatalysis
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Degradation of rosolic acid by advanced oxidation processes:ozonation vs. solar photocatalysis

机译:先进氧化工艺降解油酸:臭氧化与太阳光催化

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摘要

Rosolic acid has been used as model compound to check the efficiency of different advanced oxidation processes in the abatement of dyestuffs having triphenylmethane structure. Ozone is very effective; even at low flows (17 x 10~(-3) min~(-1) for an ozone flow of 0.2 g h~(-1)) important degradation rates have been obtained. This effect is not enhanced by UV irradiation. On the other hand, different solar photocatalysts have been employed, namely Fe(III), Cr(HI), Cr(VI) and TiO2. The best results are obtained using Fe(III), as under this experimental conditions, nearly complete elimination of the dye could be accomplished; however, TiO2 has also shown a good performance. The reaction has been scaled-up using a solar plant for water detoxification with rather promising results.
机译:在减少具有三苯甲烷结构的染料中,使用了酚酸作为模型化合物,以检验不同的高级氧化过程的效率。臭氧非常有效;即使在低流量下(对于0.2 g h〜(-1)的臭氧流量,为17 x 10〜(-3)min〜(-1)),也获得了重要的降解速率。紫外线照射不会增强此效果。另一方面,已经使用了不同的太阳能光催化剂,即Fe(III),Cr(HI),Cr(VI)和TiO2。使用Fe(III)可获得最佳结果,因为在此实验条件下,几乎可以完全消除染料;但是,TiO2也表现出良好的性能。使用太阳能装置对水进行排毒可以扩大反应规模,并获得相当可观的结果。

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