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Sustainable approach to alternative raw materials in the inorganic coating industry: Chromite mining process waste as MgO and SiO2 source

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10.1016/j.inoche.2025.114630

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The evaluation of waste's economic value and increased reusability in industry offers environmental and economic benefits. This study investigates using chromite ore processing residue (COPR) in sodium borosilicate glass-ceramic coatings (GCC) to mitigate potentially hazardous components like Cr6+. Precursor glass (PG) production, a crucial step in GCC production, involves high temperatures. TG-DTA analysis and subsequent calcination of COPR at critical temperature points were conducted. Analysis of calcined samples examined composition, phases, microstructures, and surface areas, guided by TG-DTA results. The study identified reaction points and phase transformations correlated with temperature changes. Low-temperature calcination yielded Chrysotile and Lizardite phases, transitioning to Forsterite and enstatite at higher temperatures. PGs melted at 1300 degrees C revealed chemical composition changes and amorphous structures. GCCs applied to steel surfaces exhibited favorable microstructural evaluations, with fluoro-tremolite and quartz as main phases. XPS analysis confirmed the immobilization and transformation of Cr6+ to Cr3+ in the glass structure. This research demonstrates COPR's successful utilization as a raw material, ensuring environmental safety and economic viability in industrial processes.

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INORGANIC CHEMISTRY COMMUNICATIONS

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1387-7003

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