The Role of Fe(III) in Selective Adsorption of Pullulan on Calcite Surfaces: Experimental Investigation and Molecular Dynamics Simulation

Author:

Ding Kaiwei1,Qiu Tingsheng12,Qiu Xianhui12ORCID,Zhao Guanfei12ORCID,Jiao Qinghao1,Fang Jiangjie3,Lai Ruisen1,Yang Wenhui1

Affiliation:

1. College of Resource and Environmental Engineering, Jiangxi University of Science and Technology, Ganzhou 341000, China

2. Jiangxi Provincial Key Laboratory of Low-Carbon Processing and Utilization of Strategic Metal Mineral Resources, Ganzhou 341000, China

3. School of Civil and Resources Engineering, University of Science and Technology Beijing, Beijing 100083, China

Abstract

The floatability of fluorite and calcite exhibit similar properties, rendering their flotation separation challenging. Macromolecular polysaccharide reagents containing the polyhydroxyl group have shown broad promising application. The selectivity of polysaccharide is relatively low. In this study, the introduction of Fe3+ was employed to enhance the selective adsorption capacity of Pullulan polysaccharide towards fluorite and calcite minerals, thereby achieving effective flotation separation. Furthermore, the mechanism underlying intramolecular interactions was elucidated. The DFT calculation and XPS analysis revealed that the adsorption of Fe3+ on the calcite surface was more favorable, leading to the formation of a Ca-O-Fe structure. The MD simulation, XPS analysis, and Zeta potential analysis revealed that the Fe-OH groups on the surface of calcite reacted with the -OH groups in Pullulan and formed bonds, resulting in the formation of a Calcite-Fe-Pullulan structure. This facilitated the attachment of a significant number of Pullulan molecules to the calcite surface. The formation of a hydrophilic layer on the outer surface of calcite by Pullulan, in contrast to the absence of such layer on fluorite’s surface, results in an increased disparity in surface floatability between these two minerals, thereby enhancing the efficiency of flotation separation.

Funder

National Natural Science Foundation of China

Ganpo Talent Support Program: Young Leading Talents in University

Program of Qingjiang Excellent Young Talents

Publisher

MDPI AG

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