吸附
磷酸盐
膨润土
化学
水溶液
双金属片
化学吸附
化学工程
无机化学
有机化学
催化作用
工程类
作者
Bin Wang,Heng Zhang,Xiao Hu,Rongfan Chen,Wenbin Guo,Hongyu Wang,Chunyan Wang,Jian‐Ping Yuan,Ling Chen,Shang Xia
出处
期刊:Chemosphere
[Elsevier BV]
日期:2022-11-06
卷期号:312: 137149-137149
被引量:38
标识
DOI:10.1016/j.chemosphere.2022.137149
摘要
Nowadays, eutrophication problem in surface waterbodies has attracted specific attention. Herein, we reported facile synthesis and application of La/Fe engineered bentonite (LFB) for efficient phosphate elimination. Results indicated that bimetallic modified LFB composite could achieve efficient phosphate removal at pH 2-6, and satisfactory selectivity was implied by stable phosphate capturing within the interference of competing species (Cl-, NO3-, HCO3-, SO42-, F- and HA). Pseudo-second-order model could satisfactorily depict the kinetic behavior at different initial concentrations, indicating chemisorption of phosphate on LFB surface. Isotherm study suggested that phosphate adsorption behavior could be fitted well with Sips isotherm equation, indicating that both homogeneous monolayer adsorption and heterogeneous multilayer coverage of phosphate on LFB surface occurred within the investigated conditions. Adsorption thermodynamics implied the spontaneous and endothermic feature of phosphate loading on LFB composite. Characterization analysis confirmed successful La and Fe loading on bentonite, and electrostatic attraction and ligand exchange were the main adsorption mechanism. The high adsorption capacity, cost-effective feature and strong affinity towards phosphate demonstrated certain potential of as-prepared LFB composite for phosphate separation from eutrophic water.
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