Dehydrate Sewage Sludge as an Efficient Adsorbent for Malachite Green Removal in Textile Wastewater: Experimental and Theoretical Studies

被引:0
|
作者
Youssef Aoulad El hadj Ali
Abdoulaye Demba N’diaye
Mohammadi Ahrouch
El Hassan Sakar
Anas Raklami
Abdellatif Ait Lahcen
Mostafa Stitou
机构
[1] Université Abdelmalek Essaadi,Laboratoire de L’Eau, les Etudes et les Analyses Environnementales, Département de Chimie, Faculté des Sciences
[2] Institut National de Recherches en Santé Publique,Laboratoire de Chimie, Service de Toxicologie et de Contrôle de Qualité
[3] Université Abdelmalek Essaadi,Laboratoire Matériaux et Systèmes Interfaciaux LMSI, Faculté des Sciences
[4] Universidad de Cádiz,Departamento C.M., I.M. y Química Inorgánica
[5] Abdelmalek Essaâdi University,Department of Biology, Faculty of Sciences of Tetuan
[6] Cadi Ayyad University,Laboratory of Microbial Biotechnologies, Agrosciences and Environment, Faculty of Sciences Semlalia
[7] King Abdullah University of Science and Technology (KAUST),Advanced Membranes and Porous Materials Center
来源
Chemistry Africa | 2022年 / 5卷
关键词
Dehydrate sewage sludge; Adsorption; Malachite green; Isotherm; Kinetic; Modelling study;
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摘要
We present in this study a simple approach on the application of dried dewatered sewage sludge (D@DSS) generated from a local wastewater treatment plant (WWTP). The D@DSS can be considered as an alternative friendly and cost-effective adsorbent for malachite green (MG) dye removal from an aqueous solution using batch systems. This procedure did not require any modification of the adsorbent characteristics. D@DSS demonstrated an excellent retention capacity for MG at synthetic solutions, and in industrial wastewater. Moreover, the selectivity study of the adsorbent was performed against Methylene Blue and Red Congo shows better capability of this adsorbent towards cationic dyes. The D@DSS adsorbent characterization was carried-out using SEM, FTIR, Zeta potential, XRD and ICP. The results confirmed a rough and charged surface of the adsorbent with the presence of specific functional groups. The adsorption process fits well with the Jovanovic model isotherm and was adhered to the pseudo-second order kinetics. The process conditions were optimized using the response surface methodology, resulting in qe (78.10 mg g−1) for different values of the input variables, including pH (10), ionic strength (0.015 mg g−1), initial concentration (150 mg g−1), temperature (37.29 °C),contact time (58.25 min), adsorbent dose (0.05 g) and particle size (0.203 mm). Hence, the proposed D@DSS can be effectively applied as a low-cost adsorbent for MG elimination from different contaminated water samples and can be easily extended to remove other cationic dyes.
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页码:359 / 373
页数:14
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