Study of the recycling of solid barite wastes as main constituent in ceramic composition
Bouzidi, Nedjima
Djezairi, Omar
Bayoumi Hamuda, Prof. Dr. Hosam
2026-08-06T11:26:24Z
2026-08-06T11:26:24Z
2021
http://hdl.handle.net/20.500.14044/39999
Large amounts of Solid Barite Wastes (SBWs) materials are discarded in the Boucaïd’s mine located
in the North of Algeria ((Tissemsilt) producing an average of 50 wt% of barite rejects after the physico-chemical
treatment. This work investigates the incorporation of solid barite waste (SBWs) as a raw material into a clay
body, replacing feldspar material by up to 20 wt%. Ceramic pieces were produced at temperatures varying from
1200 to 1300°C. The technological properties of the ceramic pieces (e.g., linear shrinkage, apparent density, water
absorption, and compressive strength) have been determined. The leaching toxicity of the fired pieces has also
been determined. The results showed that SBWs could be used in ceramic materials (porcelain type), in the range
up to 10 wt%, as a partial replacement for feldspar. Mineralogical analysis of SBWs, shows that it is mainly
composed of calcite (22%), barite (25%), cerusite (13%) and hemimorphite (27%). After sintering, mullite,
anorthite and quartz are the main mineralogical phases appeared at 1200 °C; when the temperature roses at 1300
°C, celcian phase appears, beside anorthite and quartz phases. The obtained ceramic samples exhibit better
mechanical properties compared to the reference ceramic samples (0% SBWs). However, up to 10 wt% additions
of SBWs in the ceramic bodies, micro-hardness and the Young's modulus have higher values, reaching 480 kg/mm2
and 41.27 GPa respectively at 1300 °C. Besides, the evaluation of the release of various chemical species (Pb2+
,Zn2+, Ba2+and Cu2+) contained in the ceramic samples indicates successful inertization of the pollutants. The
results show that solid barite wastes can be used as substituent of feldspar to produce eco- friendly ceramic
materials.
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Study of the recycling of solid barite wastes as main constituent in ceramic composition
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Open access
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Óbudai Egyetem
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2021. November 18-19.
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Budapest
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Rejtő Sándor Könnyűipari és Környezetmérnöki Kar
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Óbudai Egyetem
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Természettudományok - környezettudományok
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barite wastes
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boucaid’s mine
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ceramic
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mechanical properties
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microstructure
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environment
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Konferenciaközlemény
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Proceedings Book (Part A) 12th ICEEE-2021 International Annual Conference
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local.tempfieldCollections
Könyvrészletek
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14.
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Kiadói változat
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8 p.
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Global Environmental Development & Sustainability: Research, Engineering & Management