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Titanium(IV) Oxide Modified with Activated Carbon and Ultrasounds for Caffeine Photodegradation: Adsorption Isotherm and Kinetics Study

机译:用活性炭和超声波改性的氧化钛(IV)氧化物,用于咖啡因光降解:吸附等温线和动力学研究

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摘要

In this paper the adsorption and photodegradation of caffeine (CAF) using modified photocatalysts were studied. The laboratory synthesis method of commercial titanium(IV) oxide, activated carbon and ultrasound was proposed. The adsorption effect of caffeine was described by the Langmuir and Freundlich isotherms. The effectiveness of CAF photocatalytic decomposition was evaluated as well as the parameters of the pseudo-first-order and pseudo-second-order reaction kinetics were estimated. It was determined that the caffeine adsorption fit both the Langmuir and Freundlich isotherms. The value of the experimental maximum adsorption capacity (qe) was the highest for TiO2 modified with activated carbon and ultrasounds (TiO2/AC/Us). The highest removal degree (over 99.0%) of CAF was observed for titanium(IV) oxide modified with activated carbon. Both photodegradation kinetics models show good or very good fit; however, the pseudo-first-order model shows better fit to the experimental data (R2 = 97-99%). After 20 minutes of the photodegradation process, the following efficiency order was determined: TiO2 < TiO2/AC < TiO2/AC/US. The results indicate that the combination of TiO2, activated carbon and ultrasound is an interesting alternative for the efficient degradation of caffeine, comparing to commercial TiO2.
机译:本文研究了使用改性光催化剂的咖啡因(CAF)的吸附和光降解。提出了商业钛(IV)氧化物,活性炭和超声的实验室合成方法。甘露桃蛋白的吸附效果由Langmuir和Freundlich等温线描述。评估了CAF光催化分解的有效性以及估计伪二阶和伪二阶反应动力学的参数。确定咖啡因吸附适合Langmuir和Freundlich等温。实验最大吸附能力(QE)的值是用活性炭和超声(TiO2 / AC / US)改性的TiO 2最高的。用活性炭改性的钛(IV)氧化钛观察到CAF的最高去除度(超过99.0%)。光降解动力学模型都显示出良好或非常合适;然而,伪第一阶模型显示出更好的拟合实验数据(R2 = 97-99%)。在光降解过程20分钟后,确定以下效率顺序:TiO2

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