Effect of mixed cation acetate electrolyte on synthesis of α‐hemihydrate gypsum from phosphogypsum

Author:

Min Junjie1,Huang Jian2ORCID,Hu Hailong2,Manuka Mesfin2,Yin Yunchao1,Zhou Fengyang1,Deng Hua3,Yang Rong4,Tang Pei2,Ma Baoguo1

Affiliation:

1. School of Materials Science and Engineering Wuhan University of Technology Wuhan China

2. State Key Laboratory of Silicate Materials for Architectures Wuhan University of Technology Wuhan China

3. Hubei Three Gorges Laboratory Yichang China

4. Wuhan University of Technology Advanced Engineering Technology Research Institute of Zhongshan City Zhongshan Guangdong Province China

Abstract

AbstractThe preparation of α‐hemihydrate gypsum (α‐HH) from phosphogypsum (PG) by atmospheric hydrothermal synthesis is a green and efficient method for the treatment of PG. The commonly used electrolyte solution today is mostly chlorine‐based. The prepared α‐HH based on chlorine salt solution is needlelike with a large aspect ratio, low strength, and high impurity. In this study, sodium‐ and calcium‐mixed cation acetate solution is designed and used as an organic multifunctional electrolyte to the synthesis of α‐HH for the first time. The effects of the mixed cation acetate electrolyte on crystal transformation, product morphology, and product purity of the prepared α‐HH were compared with those prepared with chloride solutions with the same mixed cations. Result showed that the morphology of α‐HH crystals prepared in acetate solutions is a stubby hexagonal prism. The aspect ratio of the prepared α‐HH crystals is close to 1, with 3‐day compressive strength four times higher than that of α‐HH prepared in chloride solutions. In addition, in comparison with chloride electrolyte, acetate electrolyte showed a complexation effect with impurity metal ions, which realized the efficient removal of impurities from PG and increased the purity of the synthesized α‐HH.

Funder

Hubei Three Gorges Laboratory

National Natural Science Foundation of China

Publisher

Wiley

Subject

Materials Chemistry,Ceramics and Composites

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