High extent mass recovery of alginate hydrogel beads network based on immobilized bio-sourced porous carbon@Fe3O4-NPs for organic pollutants uptake

被引:40
作者
Anfar, Zakaria [1 ,2 ,3 ]
Amedlous, Abdallah [4 ]
El Fakir, Abdellah Ait [1 ,2 ]
Zbair, Mohamed [5 ]
Ahsaine, Hassan Ait [1 ]
Jada, Amane [2 ,3 ]
El Alem, Noureddine [1 ]
机构
[1] Ibn Zohr Univ, Mat & Environm Lab, Agadir 8000, Morocco
[2] Univ Haute Alsace, Mulhouse Mat Sci Inst, CNRS, F-68100 Mulhouse, France
[3] Univ Strasbourg, F-67081 Strasbourg, France
[4] Univ Hassan 2, Lab Mat Catalyse & Valorisat Ressources Nat, URAC 24, Fac Sci & Tech, BP 146, Casablanca 20650, Morocco
[5] Chouaib Doukkali Univ, Lab Catalysis & Corros Mat, El Jadida 24000, Morocco
关键词
Magnetic particles; Beads; Dyes; Carbon; Fe3O4-NPs; RSM; LOW-COST ADSORBENT; HIGH-SURFACE-AREA; ACTIVATED CARBON; METHYLENE-BLUE; ADSORPTION PROPERTIES; FE3O4; NANOPARTICLES; AQUEOUS-SOLUTION; DYE ADSORPTION; HEAVY-METALS; ALMOND SHELL;
D O I
10.1016/j.chemosphere.2019.124351
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This work goes inside the understanding of organic pollutants adsorption mechanism over network alginate hydrogel beads based on immobilized bio-sourced PC@Fe3O4-NPs (PC@Fe3O4-NPs@Alginate) and highlights its high extent mass recovery in aqueous media. The samples were successfully synthesized, we previously developed porous carbon (PC), which, was used to elaborate PC@Fe3O4-NPs via simple in situ coprecipitation (PC@ Fe3O4-NPs), which was encapsulated by alginate-Ca2+ via the blend crosslinking method. The structural, textural, chemical and morphological proprieties of as prepared materials were studied by XRD, FTIR, Raman spectroscopy, nitrogen adsorption-desorption, XPS, SEM and TEM. The adsorption kinetic and isotherm data were well fitted to the pseudo-second-order and Langmuir models. Magnetic particles exhibited an excellent ability to adsorb methylene blue (MB) from aqueous solutions with maximum MB adsorption capacity of 180.42 mg g(-1) (PC@Fe3O4 NPs powder) and 49.66 mg g(-1) (beads based PC@Fe3O4-NPs@Alginate). Response surface methodology was used to optimize the removal efficiency of MB from aqueous solution and optimum parameters were determined. Magnetic beads based PC showed good magnetic propriety, long-term stability, regeneration capabilities and high extent mass recovery. (C) 2019 Elsevier Ltd. All rights reserved.
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页数:10
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