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An investigation on the synthesis of nickel aluminate

Liliya Frolova (Department of Inorganic Materials Technology and Ecology, Ukrayins'kyj Derzhavnyj Ximiko-Texnolohichnyj Universytet, Dnipropetrovsk, Ukraine)

Pigment & Resin Technology

ISSN: 0369-9420

Article publication date: 30 August 2019

Issue publication date: 18 October 2019

124

Abstract

Purpose

The purpose of this paper is to study the process of coprecipitation of polyhydroxocomplexes of nickel and aluminum from solutions of nickel (Ni) (II) sulfate and aluminum (Al) (III) sulfate with caustic soda and to study the conversion process to nickel aluminate and to check its properties.

Design/methodology/approach

For the thermodynamic analysis of the precipitation process, the software package MEDUSA was used. The dependences of the electrical conductivity, pH and residual concentrations as functions of the OH/Me ratio were obtained. Using X-ray phase analysis, spectroscopic analysis and derivatographic analysis, the properties of the products obtained were studied. The effects of OH/Me ratio and molar ratio cation of reagents on the physicochemical properties of the products were analyzed.

Findings

The paper deals with the results of theoretical and experimental research on the synthesis pigments of blue and green colors based on Ni-Al spinel. The influence of the molar ratio cation content on optical and color characterise of pigments were studied.

Originality/value

The original complex method of studying the processes of co-precipitation of cations in the form of hydroxides is proposed. pH precipitation of aluminum hydroxide and nickel are different. It is interesting to study their co-precipitation. The resulting single-phase product is a precursor of nickel aluminate over a wide range of cation ratios. The dependences of the electrical conductivity, pH and residual concentrations as functions of the OH/Me ratio were obtained.

Keywords

Citation

Frolova, L. (2019), "An investigation on the synthesis of nickel aluminate", Pigment & Resin Technology, Vol. 48 No. 6, pp. 487-492. https://doi.org/10.1108/PRT-12-2018-0126

Publisher

:

Emerald Publishing Limited

Copyright © 2019, Emerald Publishing Limited

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