Search Results - "Kan, S N"

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  1. 1

    Preparation of Finely Crystalline Yttrium-Aluminum Garnet in Solar Furnaces by Salikhov, T. P., Kan, V. V., Urazaeva, É. M., Savatyugina, T. V., Arushanov, G. M., Kan, S. N.

    Published in Refractories and industrial ceramics (01-07-2017)
    “…The possibility is considered of preparing finely crystalline yttrium-aluminum garnet using high-temperature processes in solar furnaces. The effect of…”
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    Journal Article
  2. 2

    Synthesis of aluminum nitride and oxynitride during combustion of powder-like metallic aluminum in the field of concentrated solar radiation by Salikhov, T. P., Kan, V. V., Urazaeva, E. M., Savatyugina, T. V., Arushanov, G. M., Kan, S. N.

    Published in Applied solar energy (01-07-2013)
    “…We investigated characteristics of synthesis of nitrides and oxynitrides during combustion of disperse powders of aluminum in air in radiant heating furnaces…”
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  3. 3

    The vapor-phase method of nanopowder production in solar furnaces with a vertical optical axis by Salikhov, T. P., Kan, V. V., Kan, S. N.

    Published in Applied solar energy (01-11-2010)
    “…A vertical diagram of a pilot solar power plant is suggested for manufacturing aluminum oxide nanopowder by evaporating metallic aluminum in oxidizing medium…”
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  4. 4

    Use of concentrated solar radiation to obtain porous ceramics with NZP-structure in Na-Zr-Si-P-O system by Salikhov, T. P., Kan, V. V., Urazaeva, E. M., Savatyugina, T. V., Arushanov, G. M., Kan, S. N.

    Published in Applied solar energy (01-12-2009)
    “…Single-phase crystalline powders of Na 1.25 Zr 2 P 2.75 Si 0.25 O 12 composition with dispersion less than 5 fum have been synthesized in an optical furnace…”
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  5. 5

    Gas-phase method for obtaining nanopowders in solar furnaces by Salikhov, T P, Kan, V V, Kan, S N

    Published in Applied solar energy (01-03-2007)
    “…The scheme of an experimental solar facility for obtaining aluminum oxide nanopowders by vaporizing metallic aluminum in an oxidizing medium is proposed. Some…”
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  6. 6

    Alumina filtering ceramic based on aluminum oxide melted in solar furnace and phosphate binding agents by Salikhov, T. P., Kan, V. V., Urazaeva, E. M., Savatyugina, T. V., Arushanov, G. M., Kan, S. N.

    Published in Applied solar energy (01-06-2009)
    “…The effect of different cellulating agents in the form of reprocessed Claus catalyst, gypsum, and coke on the physical and technical characteristics and…”
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  7. 7

    Ceramic membranes based on zirconium phosphate (Ca, Sr, Ba) Zr4(PO4)6, synthesized in solar furnaces by Salikhov, T. P., Kan, V. V., Urazaeva, E. M., Savatyugina, T. V., Kan, S. N., Arushanov, G. M.

    Published in Applied solar energy (01-09-2008)
    “…The production technology of ceramic membranes based on mixed alkali-earth zirconium orthophosphates with NZP structure, synthesized in solar furnaces, is…”
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  8. 8

    Corundum filtering ceramic with phosphate binders by Salikhov, T. P., Kan, V. V., Urazaeva, É. M., Savatyugina, T. V., Arushanov, G. M., Kan, S. N.

    Published in Glass and ceramics (01-07-2008)
    “…The influence of different pore-forming additives in the form of regenerated Claus catalyst and coke on the physical-technical characteristics and permeability…”
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  9. 9

    Ceramics based on mixed zirconium phosphate prepared by solar-furnace melting by Salikhov, T P, Kan, V V, Urzaeva, E M, Savatyugina, T V, Kan, S N, Arushanov, G M

    Published in Applied solar energy (01-09-2007)
    “…A solar technology to synthesize an NZP structure using the example of Zr(PO^sub 4^) was developed. The method is based on high-temperature chemical reactions…”
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  10. 10

    Studying the physical properties of entangled electron spin states in a solid body by Petrov, V. N., Ustinov, A. B., Kan, N. S., Petrova, D. V., Grib, A. A.

    “…A concept for the experimental study of the physical properties of entangled electron spin states in a solid body is proposed. The construction of the…”
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  11. 11

    Asymmetric Oxide-Ceramic Membranes Based on Aluminosilicates by Salikhov, T. P., Kan, V. V., Urazaeva, É. M., Savatyugina, T. V., Arushanov, G. M., Kan, S. N.

    Published in Glass and ceramics (01-11-2014)
    “…The precipitation of a heterogeneous polydisperse suspension of low hydrophylicity onto an aluminosilicate substrate is used to obtain ceramic membranes with…”
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  12. 12

    Ceramic membranes based on zirconium phosphate (Ca, Sr, Ba) Zr(4)(PO(4))(6), synthesized in solar furnaces by Salikhov, T P, Kan, V V, Urazaeva, E M, Savatyugina, T V, Kan, S N, Arushanov, G M

    Published in Applied solar energy (01-09-2008)
    “…The production technology of ceramic membranes based on mixed alkali-earth zirconium orthophosphates with NZP structure, synthesized in solar furnaces, is…”
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    Journal Article
  13. 13

    Ceramic microfilters based on the solar-furnace-synthesized CaZr4(PO4)6 by Salikhov, T P, Kan, V V, Urazaeva, E M, Savatyugina, T V, Kan, S N, Arushanov, G M

    Published in Applied solar energy (01-10-2007)
    “…Ceramic microfilter samples (d ^sub max^ = 18.3 μm) were prepared based on mixed calcium orthophosphate with an NZP structure melted in a solar furnace; the…”
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  14. 14
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    Ceramic microfilters based on the solar-furnace-synthesized CaZr sub(4)(PO sub(4)) sub( 6) by Salikhov, T P, Kan, V V, Urazaeva, E M, Savatyugina, T V, Kan, S N, Arushanov, G M

    Published in Applied solar energy (01-10-2007)
    “…Ceramic microfilter samples (d sub(max) = 18.3 mu m) were prepared based on mixed calcium orthophosphate with an NZP structure melted in a solar furnace; the…”
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    Journal Article
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