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dc.contributor.authorKhrystych O. V.-
dc.contributor.authorKorogodska A. N.-
dc.contributor.authorShabanova G. N.-
dc.contributor.authorMykhailova E. A.-
dc.date.accessioned2025-09-24T14:56:42Z-
dc.date.available2025-09-24T14:56:42Z-
dc.date.issued2025-
dc.identifier.citationKhrystych O.V. Оptimization of spinel-containing alumina cements based on the СaО–Аl2О3–СоО–NiO system composition / O.V. Khrystych, A.N. Korogodska, G.N. Shabanova and other // Voprosy khimii i khimicheskoi tekhnologii. – 2025. – No. 4. – P. 13-22.uk_UA
dc.identifier.urihttps://repository.hneu.edu.ua/handle/123456789/37319-
dc.description.abstractThis paper presents the optimization of alumina cement formulations and an experimental investigation of the physical, mechanical, and technical properties of high performance, heat resistant cements derived from the CaO–Al2O3–CoO–NiO system. Compositions were optimized using a simplex lattice experimental design and visualized with composition–property simplex diagrams. The studies were carried out based on the tetrahedron compounds CoAl2O4–NiAl2O4–CaAl4O7–CaAl2O4 to simultaneously enhance the heat resistance and strength of the developed combinations. All three-component cross-sections in the defined tetrahedron of the CaO–Al2O3–CoO–NiO system were evaluated and optimal formulations were identified within the following ranges (wt.%): CoAl2O4 5–30; NiAl2O4 5–30; CaAl4O7 20–40; and CaAl2O4 20–50. Physicomechanical testing determined the most promising composition to be (wt.%): CaAl2O4 50; CoAl2O4 20; and NiAl2O4 30. This cement exhibits a high strength at the age of 28 days of curing (62 MPa) and fire resistance up to 17200C. The refractory spinel containing alumina cement was synthesized using industrial chemical wastes as raw materials. The results demonstrate that these resource saving refractory cements meet all relevant standards and offer competitive performance. Employing recycled raw materials enables the development of novel refractory binders and contributes to improved environmental conditions in Ukraine’s industrial regions.uk_UA
dc.language.isoenuk_UA
dc.subjectoptimizationuk_UA
dc.subjectmulticomponent systemuk_UA
dc.subjectexperimental designuk_UA
dc.subjectsynthesisuk_UA
dc.subjectresource- efficient technologyuk_UA
dc.subjectrefractorinessuk_UA
dc.subjectstrengthuk_UA
dc.titleОptimization of spinel-containing alumina cements based on the СaО–Аl2О3–СоО–NiO system compositionuk_UA
dc.typeArticleuk_UA
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