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TiO2-photocatalyzed degradation of tetracycline: kinetic study, adsorption isotherms, mineralization and toxicity reduction

机译:TiO2-光催化降解四环素:动力学研究,吸附等温线,矿化和毒性降低

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The photocatalytic degradation of tetracycline has been investigated in aqueous solutions using TiO2 as photocatalyst. The experiments were carried out to investigate the factors influencing the photocatalytic degradation, such as the previous adsorption in the dark, initial concentration of TC solution, TiO2 amount, and the system toxicity during TC photodegradation. The experimental results show that adsorption is an important parameter controlling the apparent kinetic constant of the degradation. The photocatalytic degradation rate was favored by a high concentration of solution with respect to Langmuir-Hinshelwood model. The chemical oxygen demand values at the end of the treatment indicated that the percentage mineralization is a function of the initial TC concentration. The acute toxicity increased at the beginning of TC photo-oxidation, and treatment times of around 6h are generally required for the toxicity to be lower than in the original solution.
机译:已经在使用TiO 2作为光催化剂的水溶液中研究了四环素的光催化降解。进行实验以研究影响光催化降解的因素,例如先前在黑暗中的吸附,TC溶液的初始浓度,TiO2的量以及TC光降解过程中的系统毒性。实验结果表明,吸附是控制降解表观动力学常数的重要参数。相对于Langmuir-Hinshelwood模型,高浓度溶液有利于光催化降解速率。处理结束时的化学需氧量值表明矿化百分比是初始TC浓度的函数。在TC光氧化开始时,急性毒性增加,通常需要大约6h的处理时间才能使毒性低于原始溶液。

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