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Article

Mineralogical-Analytical Characterization of Technogenic Fine-Dispersed Gold in Kazakhstan’s Coal Ash-Slag Waste and Its Gravity-Magnetic Preconcentration

1
Limited Liability Partnership, “KRITS-NTK”, Rudnik 7 District, Stepnogorsk 021500, Kazakhstan
2
Department of Metallurgy and Mineral Processing, Mining and Metallurgical Institute Named After O.A. Baikonurov, Satbayev University, Satpayev Street 22a, Almaty 050013, Kazakhstan
3
Department of Mining, Mining and Metallurgical Institute Named After O.A. Baikonurov, Satbayev University, Satpayev Street 22a, Almaty 050013, Kazakhstan
4
Competence Center and Admissions Campaign Department, Ulytau University, Gornyakov Street 1, Zhezkazgan 100600, Kazakhstan
*
Authors to whom correspondence should be addressed.
Mining 2026, 6(3), 53; https://doi.org/10.3390/mining6030053
Submission received: 2 June 2026 / Revised: 9 July 2026 / Accepted: 15 July 2026 / Published: 16 July 2026

Abstract

Coal ash-slag waste from coal-fired power plants is a high-volume technogenic material whose resource potential is controlled by particle-size heterogeneity, mineralogical composition, and the occurrence modes of valuable elements. This study investigated Au occurrence in ash-slag waste derived from Ekibastuz coal and evaluated gravity–magnetic preconcentration as a diagnostic first stage for separating Au- and Fe-bearing products. The material was characterized by particle-size analysis, X-ray diffraction, chemical analysis, optical and electron-probe microscopy, atomic absorption analysis (AAS), kinetic spectral analysis (KSA), gravity concentration, and magnetic separation. The feed was an aluminosilicate–ferruginous material dominated by mullite, magnetite, quartz, and hematite. In the coarse material, liberated native Au co-reported with heavy Fe-bearing phases: the vibratory spiral concentrate contained 0.99 g/t Au and 39.00% Fe, corresponding to 52.58% Au recovery and 66.49% Fe recovery. The combined spiral and centrifugal concentrates yielded 1.04 g/t Au at 63.22% recovery, representing an approximately eightfold upgrade relative to the 0.13 g/t feed. In contrast, gravity recovery from the finest fraction was approximately 1%, indicating ultrafine, poorly liberated, or matrix-associated Au. KSA gave higher Au values than AAS, reflecting matrix heterogeneity and method-dependent preparation and detection effects rather than analytical superiority. The results support a size-selective gravity–magnetic preconcentration route followed by targeted mineralogical verification and product-specific downstream extraction.
Keywords: coal combustion products; coal ash-slag waste; finely dispersed gold; native gold; gravity concentration; magnetic separation; ferrospheres; kinetic spectral analysis; secondary mineral resources coal combustion products; coal ash-slag waste; finely dispersed gold; native gold; gravity concentration; magnetic separation; ferrospheres; kinetic spectral analysis; secondary mineral resources

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MDPI and ACS Style

Peregudov, V.; Shautenov, M.; Almenov, T.; Shabaz, D.-M.; Bektur, B. Mineralogical-Analytical Characterization of Technogenic Fine-Dispersed Gold in Kazakhstan’s Coal Ash-Slag Waste and Its Gravity-Magnetic Preconcentration. Mining 2026, 6, 53. https://doi.org/10.3390/mining6030053

AMA Style

Peregudov V, Shautenov M, Almenov T, Shabaz D-M, Bektur B. Mineralogical-Analytical Characterization of Technogenic Fine-Dispersed Gold in Kazakhstan’s Coal Ash-Slag Waste and Its Gravity-Magnetic Preconcentration. Mining. 2026; 6(3):53. https://doi.org/10.3390/mining6030053

Chicago/Turabian Style

Peregudov, Valeriy, Mels Shautenov, Talgat Almenov, Din-Mukhammed Shabaz, and Bakytbek Bektur. 2026. "Mineralogical-Analytical Characterization of Technogenic Fine-Dispersed Gold in Kazakhstan’s Coal Ash-Slag Waste and Its Gravity-Magnetic Preconcentration" Mining 6, no. 3: 53. https://doi.org/10.3390/mining6030053

APA Style

Peregudov, V., Shautenov, M., Almenov, T., Shabaz, D.-M., & Bektur, B. (2026). Mineralogical-Analytical Characterization of Technogenic Fine-Dispersed Gold in Kazakhstan’s Coal Ash-Slag Waste and Its Gravity-Magnetic Preconcentration. Mining, 6(3), 53. https://doi.org/10.3390/mining6030053

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