The effect of mineralizing additives on synthesis of ceramic pigments based on natural wollastonite

M. B. Sedel'nikova, V. M. Pogrebenkov

Research output: Contribution to journalArticle

1 Citation (Scopus)

Abstract

The mineralizing effect of additives of natural fluorine-bearing mineral topaz and boric acid on the synthesis of ceramic pigments with the diopside and anorthite structures based on natural wollastonite is studied. The brightest color range is obtained at 1100°C. It is established that topaz has obvious advantages over the traditional mineralizer, i.e., boric acid. The obtained ceramic pigments have good chromophore properties, are resistant at high firing temperature, and can be extensively used in ceramic production.

Original languageEnglish
Pages (from-to)22-25
Number of pages4
JournalGlass and Ceramics (English translation of Steklo i Keramika)
Volume63
Issue number1-2
DOIs
Publication statusPublished - Jan 2006

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Topaz
Boric acid
Pigments
Bearings (structural)
Fluorine
Chromophores
Minerals
Color
Temperature
calcium silicate
boric acid

ASJC Scopus subject areas

  • Ceramics and Composites

Cite this

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abstract = "The mineralizing effect of additives of natural fluorine-bearing mineral topaz and boric acid on the synthesis of ceramic pigments with the diopside and anorthite structures based on natural wollastonite is studied. The brightest color range is obtained at 1100°C. It is established that topaz has obvious advantages over the traditional mineralizer, i.e., boric acid. The obtained ceramic pigments have good chromophore properties, are resistant at high firing temperature, and can be extensively used in ceramic production.",
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AB - The mineralizing effect of additives of natural fluorine-bearing mineral topaz and boric acid on the synthesis of ceramic pigments with the diopside and anorthite structures based on natural wollastonite is studied. The brightest color range is obtained at 1100°C. It is established that topaz has obvious advantages over the traditional mineralizer, i.e., boric acid. The obtained ceramic pigments have good chromophore properties, are resistant at high firing temperature, and can be extensively used in ceramic production.

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