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Degradation of lincomycin in aqueous medium: Coupling of solar photocatalysis and membrane separation

机译:水介质中林可霉素的降解:太阳光催化与膜分离的耦合

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The photocatalytic oxidation of a common antibiotic, the lincomycin was carried out in aqueous suspensions of polycrystalline TiO_2 Degussa P25 irradiated by sunlight. In order to improve the performance of the lincomycin degradation a hybrid system consisting of a solar photoreactor with the photocatalyst in suspension coupled with a membrane module, used to confine both photocatalyst and pollutants in the reaction environment, was tested. A preliminary study was carried out in order to determine some kinetics parameters of the drug photodegradation. The influence of initial substrate concentration on the lincomycin photooxidation rate was investigated. The photoox-idation rate follows a pseudo-first order kinetics with respect to the lincomycin concentration under the used experimental conditions. The presence of the membrane reactor allows the catalyst separation and to operate in continuous mode as the membranes rejection for lincomycin and its oxidation products was quite high.
机译:普通抗生素林可霉素的光催化氧化是在阳光照射下的多晶TiO_2 Degussa P25的水悬浮液中进行的。为了改善林可霉素降解的性能,测试了由太阳能光反应器和悬浮的光催化剂与膜组件组成的混合系统,该混合系统用于将光催化剂和污染物限制在反应环境中。为了确定药物光降解的一些动力学参数,进行了初步研究。研究了初始底物浓度对林可霉素光氧化速率的影响。在所使用的实验条件下,光氧化速率相对于林可霉素浓度遵循伪一级动力学。膜反应器的存在允许催化剂分离并以连续模式操作,因为林可霉素及其氧化产物的膜截留率很高。

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