Materials and Environment Laboratory, Ibn Zohr University, Agadir, 8000, Morocco; Mulhouse Materials Science Institute, CNRS, University Haute Alsace, F-68100, Mulhouse, France; University of Strasbourg, Strasbourg, F-67081, France.
Université Hassan II, Laboratoire de Matériaux, Catalyse & Valorisation des Ressources Naturelles, URAC 24, Faculté des Sciences et Techniques, Casablanca, B.P. 146, 20650, Morocco.
Chemosphere. 2019 Dec;236:124351. doi: 10.1016/j.chemosphere.2019.124351. Epub 2019 Jul 18.
This work goes inside the understanding of organic pollutants adsorption mechanism over network alginate hydrogel beads based on immobilized bio-sourced PC@FeO-NPs (PC@FeO-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@FeO-NPs via simple in situ coprecipitation (PC@ FeO-NPs), which was encapsulated by alginate-Ca 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 (PC@FeO NPs powder) and 49.66 mg g (beads based PC@FeO-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.
这项工作深入研究了基于固定化生物源 PC@FeO-NPs(PC@FeO-NPs@Alginate)的网络海藻酸钠水凝胶珠对有机污染物吸附机制,并强调了其在水介质中高程度的质量回收率。我们之前成功合成了多孔碳(PC),然后通过简单的原位共沉淀法(PC@FeO-NPs)将其用于制备 PC@FeO-NPs,然后通过共混交联法将其封装在海藻酸钠-Ca 中。通过 XRD、FTIR、拉曼光谱、氮气吸附-解吸、XPS、SEM 和 TEM 研究了所制备材料的结构、织构、化学和形态特性。吸附动力学和等温线数据很好地拟合了伪二阶和朗缪尔模型。磁性颗粒表现出从水溶液中吸附亚甲基蓝(MB)的优异能力,最大 MB 吸附容量为 180.42mg/g(PC@FeO NPs 粉末)和 49.66mg/g(基于 PC@FeO-NPs@Alginate 的珠体)。响应面法用于优化从水溶液中去除 MB 的效率,并确定了最佳参数。基于 PC 的磁性珠体具有良好的磁性能、长期稳定性、再生能力和高程度的质量回收率。