沸石
磁铁矿
吸附
尖晶石
材料科学
化学工程
硅酸铝
Zeta电位
微观结构
煅烧
复合数
水溶液中的金属离子
金属
表面电荷
多孔性
比表面积
无机化学
打赌理论
冶金
离子
矿物学
废水
作者
Belinda B. Faustino,Reynaldo M. Vequizo,Rolando T. Candidato
出处
期刊:Open ceramics
[Elsevier BV]
日期:2025-09-09
卷期号:24: 100845-100845
标识
DOI:10.1016/j.oceram.2025.100845
摘要
This study reports the microstructural characteristics and adsorption properties for heavy metal ions of the surface-modified Philippine natural zeolite (MPNZ) and magnetically functionalized Philippine natural zeolite (PNZM) composite. SEM analysis confirmed the presence of magnetite particles dispersed on PNZM, making its surface rougher and irregular while retaining its porous structure. X-ray diffractogram revealed distinct peaks corresponding to the spinel crystalline structure of magnetite and the aluminosilicate structure of the zeolite framework, suggesting a well-integrated composite material. BET analysis showed an increase in the surface area of MPNZ from 33.876 m 2 /g to 45.052 m 2 /g after adding magnetite. EDS characterization verified the strong presence of Fe + ions in the PNZM structure, enhancing its cation-exchange capacity (CEC). The Si/Al ratio of MPNZ decreased from 3.75 to 3.37, indicating a more negative charge, supported by zeta potential results that showed surface charges of (-)12.200 for MPNZ to (-) 20.854 mV for PNZM. In single ion solutions, PNZM obtained a removal uptake of 98.85 %, 99.99 % and 99.48 % for Ni 2+ , Cu 2+ and Zn 2+ respectively, which are higher than MPNZ. In mixed-ion solutions, PNZM also showed improved adsorption with removal rates of 91.17 % for Ni 2+ and 97.90 % for Cu 2+ , although Zn 2+ uptake decreased to 97.98 % compared to the 99.99 % of MPNZ. Overall, incorporating magnetite has functionalized the ability of PNZM for sustainable water treatment by removing heavy metal ions through the synergistic mechanism of ion-exchange and Coulombic electrostatic interactions.
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