Fluoride and Arsenite Removal by Adsorption on La2O3-CeO2/Laterite

氟化物 吸附 亚砷酸盐 红土 水溶液 朗缪尔吸附模型 材料科学 解吸 无机化学 吸热过程 吉布斯自由能 朗缪尔 化学 热力学 冶金 物理化学 物理
作者
Duong Thi Lim,Trinh Ngoc Tuyen,Đào Ngọc Nhiệm,Dao Hong Duc,Phạm Ngọc Chức,Nguyễn Quang Bắc,Dang Xuan Tung,Ngo Nghia Pham,Lưu Thị Việt Hà,Nguyen Thi Thanh Tu,Vo Thang Nguyen,Đinh Quang Khiếu
出处
期刊:Journal of Nanomaterials [Hindawi Publishing Corporation]
卷期号:2021: 1-13 被引量:7
标识
DOI:10.1155/2021/9991050
摘要

In the present article, the adsorbent prepared from laterite with lanthanum and cerium oxides (La2O3-CeO2/laterite (LCL)) was efficiently employed for the removal of arsenite and fluoride from an aqueous environment. The obtained materials were characterized by XRD, SEM, and nitrogen adsorption/desorption. The synthesized LCL exhibited a high adsorption capacity towards arsenite (As(III)) and fluoride. The adsorption of both analytes on LCL, which was well-fitted to a pseudo-second-order equation, was found to be kinetically fast in the first 20 minutes and reached equilibrium at around 180 minutes. Weber’s intraparticle diffusion model in multilinearity using the piecewise linear regression combined with Akaike’s criteria was addressed. The adsorption capacities of LCL calculated from Langmuir’s isotherm model were found to be 67.08 mg·g-1 for arsenite and 58.02 mg·g-1 for fluoride. Thermodynamic parameters presented an endothermic nature of arsenite adsorption but an exothermic nature for fluoride and a negative Gibbs free energy for the spontaneous process of arsenite or fluoride adsorption at the studied temperature range. The excellent adsorption performance and stability make the composite of laterite and La-Ce binary oxides an alternative efficient and cheap adsorbent for the removal of arsenite and fluoride in an aqueous solution.
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