Department of Environmental Engineering, Kyungpook National University, 80 Daehak-ro, Buk-Gu, Daegu 41566, Republic of Korea.
Department of Environmental Engineering, Kyungpook National University, 80 Daehak-ro, Buk-Gu, Daegu 41566, Republic of Korea.
Bioresour Technol. 2016 Sep;216:391-8. doi: 10.1016/j.biortech.2016.05.103. Epub 2016 May 26.
This work focused on the development of pectin-stabilized magnetic graphene oxide Prussian blue (PSMGPB) nanocomposites for removal of cesium from wastewater. The PSMGPB nanocomposite showed an improved adsorption capacity of 1.609mmol/g for cesium, compared with magnetic graphene oxide Prussian blue, magnetic pectin Prussian blue, and magnetic Prussian blue nanocomposites, which exhibited adsorption capacities of 1.230, 0.901, and 0.330mmol/g, respectively. Increased adsorption capacity of PSMGPB nanocomposites was attributed to the pectin-stabilized separation of graphene oxide sheets and enhanced distribution of magnetites on the graphene oxide surface. Scanning electron microscopy images showed the effective separation of graphene oxide sheets due to the incorporation of pectin. The optimum temperature and pH for adsorption were 30°C and 7.0, respectively. A thermodynamic study indicated the spontaneous and the exothermic nature of cesium adsorption. Based on non-linear regression, the Langmuir isotherm fitted the experimental data better than the Freundlich and Tempkin models.
本工作致力于开发果胶稳定化磁性氧化石墨烯普鲁士蓝(PSMGPB)纳米复合材料,用于从废水中去除铯。与磁性氧化石墨烯普鲁士蓝、磁性果胶普鲁士蓝和磁性普鲁士蓝纳米复合材料相比,PSMGPB 纳米复合材料对铯的吸附容量提高到 1.609mmol/g,分别为 1.230mmol/g、0.901mmol/g 和 0.330mmol/g。PSMGPB 纳米复合材料吸附容量的增加归因于果胶稳定化的氧化石墨烯片的分离和磁铁矿在氧化石墨烯表面的分布增强。扫描电子显微镜图像显示由于果胶的掺入,氧化石墨烯片有效地分离。吸附的最佳温度和 pH 值分别为 30°C 和 7.0。热力学研究表明,铯吸附是自发的和放热的。基于非线性回归,Langmuir 等温线比 Freundlich 和 Tempkin 模型更能拟合实验数据。
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