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基于饮用水处理残渣制备的低成本高效非均相光芬顿催化剂用于活性蓝19降解:制备与表征

Low cost effective heterogeneous photo-Fenton catalyst from drinking water treatment residuals for reactive blue 19 degradation: Preparation and characterization.

作者信息

Laib Salima, Rezzaz-Yazid Hynda, Yatmaz Hüseyin Cengiz, Sadaoui Zahra

机构信息

Laboratory of Reaction Engineering, Faculty of Mechanical and Processes Engineering, University of Sciences and Technology Houari Boumediene, Algiers, Algeria.

Environmental Engineering Department, Gebze Technical University, Gebze, Turkey.

出版信息

Water Environ Res. 2021 Jul;93(7):1097-1106. doi: 10.1002/wer.1513. Epub 2021 Mar 9.

Abstract

Four different catalysts from drinking water treatment residuals (DWTR) were prepared via impregnation in the iron nitrate, calcined at different temperatures ranged from 200°C to 500°C, and tested for the reactive blue 19 oxidation using the heterogeneous photo-Fenton, under UVA light source. XRD and XPS results revealed that iron nature was found under a ferric oxide form (Fe ) similar to the magnetite. Calcination temperature results showed a significant effect on the activity of the catalysts. RB19 and TOC removals were 99% and 79%, respectively, with the best catalyst that calcined at 500°C in optimal conditions as follows: initial pH solution = 3, 10 mM of H O dosage, 0.5 g/L of catalyst loading, reaction temperature 35°C, and I  = 3.55 MW/cm for 50 mg/L of RB19. The reusability of the catalyst after three cycles showed complete removal of RB19 and 65% TOC removal. PRACTITIONER POINTS: Synthetized heterogeneous photo-Fenton catalyst from drinking water treatment residuals for the photo Fenton oxidation. The calcination temperatures plays a crucial role in catalyst photocatalytic activity. Degradation of reactive blue 19 with Fe/DWTR-500 in presence of H O . The Fe/DWTR-500 catalyst exhibited the best photocatalytic activity. Reusability studies of Fe/DWTR-500 and the kinetics of reactive blue 19 degradation were investigated.

摘要

通过在硝酸铁中浸渍制备了四种不同的来自饮用水处理残渣(DWTR)的催化剂,在200°C至500°C的不同温度下煅烧,并在紫外光光源下使用多相光芬顿法对活性蓝19氧化进行了测试。XRD和XPS结果表明,铁以类似于磁铁矿的氧化铁形式(Fe )存在。煅烧温度结果显示对催化剂活性有显著影响。在如下最佳条件下,用在500°C煅烧的最佳催化剂,RB19和TOC去除率分别为99%和79%:初始溶液pH = 3、H₂O₂用量10 mM、催化剂负载量0.5 g/L、反应温度35°C以及对于50 mg/L的RB19光强I = 3.55 mW/cm²。催化剂经过三个循环后的可重复使用性显示出对RB19的完全去除和65%的TOC去除率。从业者要点:由饮用水处理残渣合成多相光芬顿催化剂用于光芬顿氧化。煅烧温度在催化剂光催化活性中起关键作用。在H₂O₂存在下用Fe/DWTR - 500降解活性蓝19。Fe/DWTR - 500催化剂表现出最佳光催化活性。研究了Fe/DWTR - 500的可重复使用性及活性蓝19降解动力学。

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