The Constructing of the Oxide Phase Diagram for Fluoride Adsorption on La-Fe-Al: A Collaborative Study of Density Functional Calculation and Experimentation

Author:

Xie Shaojian1,Xiao Yao1,Huang Lei1ORCID,Li Jiaxin1,Yan Jia1,Li Qian1,Li Meng1,Zhang Hongguo12

Affiliation:

1. School of Environmental Science and Engineering, Guangzhou University, Guangzhou Higher Education Mega Center, Guangzhou 510006, China

2. Guangzhou University-Linköping University Research Center on Urban Sustainable Development, Guangzhou University, Guangzhou 510006, China

Abstract

In recent years, fluoride pollution in water is a problem that has attracted much attention from researchers. The removal of fluoride-containing wastewater by adsorption with metal oxide as an adsorbent is the most common treatment method. Based on this, the effect of the doping ratio of La2O3, Fe2O3, and Al2O3 on the fluoride-removal performance was discussed by constructing a phase diagram. In this study, the adsorption mechanism of nanocrystalline lanthanum oxide terpolymer was investigated by density functional theory calculation and experiment. The optimal pH condition selected in the experiment was three, and the adsorption kinetics of fluoride ions were more consistent with the quasi-second-order kinetic model. The adsorption thermodynamics was more consistent with the Langmuir model. When the La-Fe-Al ternary composite oxides achieved the optimal adsorption efficiency for fluoride ions, the mass synthesis ratio was Al2O3:(Fe2O3:La2O3 = 1:2) = 1:100, resulting in a fluoride ion removal rate of up to 99.78%. Density functional calculations revealed that the La-Fe-Al ternary composite oxides had three important adsorption sites for La, Fe, and Al. Among them, the adsorption capacity for HF was Fe2O3 > La2O3 > Al2O3, and for F− was La2O3 > Al2O3 > Fe2O3. This provided good guidance for designing adsorbents to remove fluoride.

Funder

Guangdong Regional Joint Fund—Youth Fund Project

Guangdong Basic and Applied Basic Research Foundation

Youth Innovative Talents Project of Guangdong Province

Basic and Applied Basic Research Projects of Guangzhou

Municipal School (College) Joint Funding of Guangzhou

Talent Cultivation Program of Guangzhou University

Guangzhou University–Hong Kong University of Science and Technology Joint Research Cooperation Fund

Guangdong and Macao in Guangdong Province, National Natural Science Foundation of China

Pearl River S&T Nova Program of Guangzhou

Guangzhou University-College Students’ innovation and entrepreneurship training program

Publisher

MDPI AG

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