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активация

Geotechnical Engineering and Engineering Geology
  • Date submitted
    2024-05-08
  • Date accepted
    2024-11-07
  • Date published
    2025-04-25

The effect of mechanical and thermal treatment on the characteristics of saponite-containing material

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Solving the problems of modern building materials science is reduced to obtaining high-quality materials, expanding and searching for a rational raw material base, which can be carried out through the use of various industrial wastes. In this paper, the possibility of using waste from the mining industry – saponite-containing material (SCM) obtained during the enrichment of kimberlite ores from the Lomonosov diamond deposit, as an active mineral additive for cement binders and concretes is considered. The influence of mechanical and thermal treatment on a number of properties of the material selected from the tailings dump and in its initial state was studied. The study of the surface activity of SCM samples consisted in determining the sorption capacity, acid-base centers and their distribution. An increase in the activity of the surface of the material particles as a result of mechanical activation and its decrease during temperature treatment were determined. These effects are associated with phase rearrangements and structural changes in the sandy-clay rock, which was confirmed during thermal analysis. The temperature effect has no pronounced effect on the microstructure, the “smoothness” of the particles and the formation of a consolidated surface of the structural elements of the saponite-containing material are noted.

How to cite: Orekhova T.N., Sivalneva M.N., Frolova M.A., Strokova V.V., Bondarenko D.O. The effect of mechanical and thermal treatment on the characteristics of saponite-containing material // Journal of Mining Institute. 2025. Vol. 272 . p. 91-99. EDN VZGFOR
Metallurgy and concentration
  • Date submitted
    2022-04-14
  • Date accepted
    2022-07-21
  • Date published
    2022-11-03

In-situ leaching of molybdenum and uranium by percarbonate and chloride-hypochlorite solutions

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In-situ leaching of molybdenum and uranium is becoming an increasingly common process. The features of the material composition of ores, leading to a decrease in their filtration properties, were considered. Activation leaching with leaching solutions that have undergone electrophotochemical activation before contact with the ore mass were studied. Activation preparation of leaching solutions promotes the synthesis of clustered water molecules with collectivized protons and hydroxyl ions, as well as active forms of oxygen and hydrogen. Cell leaching of molybdenum from mature tailings of the Shakhtaminsk deposit was studied experimentally. After pre-oxidation with an active carbonate solution, a model borehole leaching was carried out with a chloride-hypochlorite solution. Molybdenum extraction on resin a was 85 % in 30 days. Experiments on the percolation leaching of uranium from the ores of the Uchkuduk and Sugraly deposits confirmed the potential possibility of a significant increase in the extraction of uranium by electrophotoactivated percarbonate solutions relative to aqueous solutions of sodium and ammonium carbonate. When leaching with carbonate solutions without an additional oxidizing agent, the extraction of uranium from the Sugraly deposit ore sample was 52 and 59 % (sodium carbonate and ammonium carbonate). The use of hydrogen peroxide as an oxidizing agent made it possible to achieve 87-88 % extraction into pregnant solutions in 21 days without pre-oxidation. The performed studies confirm the processing capability of extracting uranium and molybdenum by percolation leaching in columns and borehole leaching.

How to cite: Rasskazov I.Y., Sekisov A.G., Rasskazova A.V. In-situ leaching of molybdenum and uranium by percarbonate and chloride-hypochlorite solutions // Journal of Mining Institute. 2022. Vol. 256 . p. 623-631. DOI: 10.31897/PMI.2022.60
Electromechanics and mechanical engineering
  • Date submitted
    2018-01-19
  • Date accepted
    2018-03-23
  • Date published
    2018-06-22

Topochemical kinetics of external friction during mechanical and thermal activation of the friction contact

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The article deals with the process of contact interaction (relative displacement) of surfaces as a chemical reaction, the regularity of which is described by the Arrhenius equation. The kinetic characteristics of Gersi-Striebeck are obtained taking into account the mechanical and temperature conditions of the frictional contact. The process of interaction of materials in friction in the form of regularities of topochemical kinetics, realized due to the processes of formation and growth of adhesion adhesion nuclei, makes it possible to present the experimental characteristics in the form of theoretical dependences. These dependences reflect the entire range of variation of the coefficient of friction from the speed of mutual movement of materials, including at ultra-low sliding speeds. In the framework of this approach, the lubricating action of the medium prevents and blocks the reactions of the transition of nuclei to actively growing nuclei.

How to cite: Albagachiev A.Y., Sidorov M.I., Stavrovskii M.E. Topochemical kinetics of external friction during mechanical and thermal activation of the friction contact // Journal of Mining Institute. 2018. Vol. 231 . p. 312-316. DOI: 10.25515/PMI.2018.3.312
Metallurgy and concentration
  • Date submitted
    2015-07-25
  • Date accepted
    2015-09-01
  • Date published
    2016-02-24

The phenomenon of isothermal transition of metastable aluminate solutions into the labile area and prospects of its industrial use

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The paper presents theoretically based requirements for the activation of synthetic gibbsite for maximum solubility of the activated product. The article describes the methodological foundations of gibbsite thermal activation and its effectiveness evaluation in terms of aluminate solutions decomposition. It is shown that to obtain high-saturation aluminate solutions, activation should provide generation of the reagent with highly-developed surface area, which is not identical to the structure of the deposited gibbsite. As a result of high-gradient thermal activation of synthetic gibbsite, it has been found that the targeted product develops predominantly an amorphous structure with a specific surface area up to 256 m2/ g, preserving its primary particle size. Activation products were investigated using modern methods of physical and chemical analysis. The experimental results confirmed the possibility of the activated product dissolution in the aluminate solution with a metastable compound and their spontaneous decomposition with aluminum hydroxide formation, characterized by high dispersion ability. It is shown, that a significant difference in kinetics and decomposition rates of solutions is connected with the use of a seed material with different particle size composition, which leads to the development of competing mechanisms, resulting in seed recrystallization, homogeneous and heterogeneous nucleation.

How to cite: Brichkin V.N., Kraslawski A. The phenomenon of isothermal transition of metastable aluminate solutions into the labile area and prospects of its industrial use // Journal of Mining Institute. 2016. Vol. 217 . p. 80-87.