Search Results - "Éva Makó"

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  1. 1

    Optimization of Grinding Parameters for the Mechanochemical Activation of Kaolin with the Addition of Trass by Csilla Őze, Éva Makó

    Published in Minerals (Basel) (01-07-2023)
    “…At present, to achieve further reductions in CO2 emissions in the cement industry, it is essential to improve the efficiency of grinding processes and reduce…”
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    Journal Article
  2. 2

    Crystal Structure and Properties of Zinc Phosphate Layers on Aluminum and Steel Alloy Surfaces by Herbáth, Beáta, Kovács, Kristóf, Jakab, Miklós, Makó, Éva

    Published in Crystals (Basel) (01-03-2023)
    “…Many studies have been carried out on the phosphating of steel and aluminum alloys used in automotive engineering, but characterization of the properties of…”
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    Journal Article
  3. 3

    Effects of Preparation Conditions on the Efficiency of Visible-Light-Driven Hydrogen Generation Based on Ni(II)-Modified Cd0.25Zn0.75S Photocatalysts by Mersel, Maali-Amel, Fodor, Lajos, Pekker, Péter, Makó, Éva, Horváth, Ottó

    Published in Molecules (Basel, Switzerland) (04-07-2022)
    “…Hydrogen as an environmentally friendly fuel can be produced by photocatalytic procedures from aqueous systems, utilizing H2S, an industrial side-product, by…”
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    Journal Article
  4. 4

    Investigation of the Usability of Reduced Alkalinity Red Mud in the Building Material Industry by Jakab, Miklós, Patthy, Gergely Balázs, Korim, Tamás, Makó, Éva

    Published in Resources (Basel) (01-07-2023)
    “…Untreated and pH-reduced red mud is used as a potential raw material in ceramic technology. During the alkalinity reduction process, CO2 is bubbled through the…”
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  5. 5

    Photocatalytic H2 Production by Visible Light on Cd0.5Zn0.5S Photocatalysts Modified with Ni(OH)2 by Impregnation Method by Páll, Bence, Mersel, Maali-Amel, Pekker, Péter, Makó, Éva, Vágvölgyi, Veronika, Németh, Miklós, Pap, József Sándor, Fodor, Lajos, Horváth, Ottó

    “…Nowadays, the study of environmentally friendly ways of producing hydrogen as a green energy source is an increasingly important challenge. One of these…”
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    Journal Article
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  7. 7

    Mechanochemical Treatment of Kaolinite by Frost, Ray L., Makó, Éva, Kristóf, János, Horváth, Erzsébet, Kloprogge, J.Theo

    Published in Journal of colloid and interface science (15-07-2001)
    “…Kaolinite surfaces were modified by mechanochemical treatment for periods of time up to 10 h. X-ray diffraction shows a steady decrease in intensity of the…”
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  8. 8

    Thermal treatment of mechanochemically activated kaolinite by Horváth, Erzsébet, Frost, Ray L., Makó, Éva, Kristóf, János, Cseh, Tamás

    Published in Thermochimica acta (04-09-2003)
    “…The mechanochemical activation of a high defect kaolinite has been studied using a combination of high-resolution thermogravimetry and DRIFT spectroscopy. The…”
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  9. 9

    The Effect of Quartz Content on the Mechanochemical Activation of Kaolinite by Makó, Éva, Frost, Ray L., Kristóf, János, Horváth, Erzsébet

    Published in Journal of colloid and interface science (15-12-2001)
    “…The mechanochemical activation (dry grinding) causes destruction in the crystal structure of kaolinite by the rupture of the O–H, Al–OH, Al–O–Si, and Si–O…”
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  10. 10

    Modification of Kaolinite Surfaces by Mechanochemical Treatment by Frost, Ray L, Makó, Éva, Kristóf, János, Horváth, Erzsébet, Kloprogge, J. Theo

    Published in Langmuir (07-08-2001)
    “…Kaolinite surfaces were modified by grinding kaolinite/quartz mixtures with mole fractions of 0.25 kaolinite and 0.75 quartz for periods of time up to 4 h…”
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    Journal Article
  11. 11

    Slow transformation of mechanically dehydroxylated kaolinite to kaolinite—an aged mechanochemically activated formamide-intercalated kaolinite study by Frost, Ray L., Horváth, Erzsébet, Makó, Éva, Kristóf, János, Rédey, Ákos

    Published in Thermochimica acta (17-12-2003)
    “…Formamide-intercalated high defect kaolinite which was mechanochemically activated for periods of time up to 6 h has been aged for up to 1 year. These modified…”
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    Journal Article
  12. 12

    Modification of low- and high-defect kaolinite surfaces: implications for kaolinite mineral processing by Frost, Ray L., Horváth, Erzsébet, Makó, Éva, Kristóf, János

    Published in Journal of colloid and interface science (15-02-2004)
    “…A comparison is made of the mechanochemical activation of three low- and one high-defect kaolinite using a combination of X-ray diffraction, thermal analysis,…”
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  13. 13

    Bio-inspired synthesis of Ag-g-C3N4 nanocomposites and their application for photocatalytic degradation of para-nitrophenol by Mukhtar, Shoaib, Szabó-Bárdos, Erzsébet, Horváth, Ottó, Makó, Éva, Juzsakova, Tatjána, Molnár, Zsombor

    “…Nanocomposites are promising in advanced materials for environmental applications due to their ability to boost functionality through synergistic effects…”
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  14. 14

    Surface modification of mechanochemically activated kaolinites by selective leaching by Makó, Éva, Senkár, Zsuzsa, Kristóf, János, Vágvölgyi, Veronika

    Published in Journal of colloid and interface science (15-02-2006)
    “…Low- and high-defect kaolinites mechanochemically activated for different periods of time have been treated with sulfuric acid solution. These modified…”
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  15. 15

    Photocatalytic H[sub.2] Production by Visible Light on Cd[sub.0.5]Zn[sub.0.5]S Photocatalysts Modified with Ni[sub.2] by Impregnation Method by Páll, Bence, Mersel, Maali-Amel, Pekker, Péter, Makó, Éva, Vágvölgyi, Veronika, Németh, Miklós, Pap, József Sándor, Fodor, Lajos, Horváth, Ottó

    “…Nowadays, the study of environmentally friendly ways of producing hydrogen as a green energy source is an increasingly important challenge. One of these…”
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    Journal Article
  16. 16

    The effects of silica fume and diatomaceous earth on the mechanochemical activation and pozzolanic activity of kaolin by Makó, Éva, Őze, Csilla

    Published in Applied clay science (01-10-2022)
    “…In this study, the mechanochemical activation of kaolin was combined with the addition of two different pozzolanic substances (silica fume or diatomaceous…”
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  17. 17

    The effect of mechanochemical activation upon the intercalation of a high-defect kaolinite with formamide by Frost, Ray L., Horváth, Erzsébet, Makó, Éva, Kristóf, János, Cseh, Tamás

    Published in Journal of colloid and interface science (15-09-2003)
    “…The effect of mechanochemical activation upon the intercalation of formamide into a high-defect kaolinite has been studied using a combination of X-ray…”
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    Journal Article
  18. 18

    Diprotin, an inhibitor of dipeptidyl aminopeptidase IV(EC 3.4.14.5) produces naloxone — reversible analgesia in rats by Rónai, András Z., Timár, Julianna, Makó, Éva, Erdóo, Franciska, Gyarmati, Zsuzsanna, Tóth, Géza, Orosz, György, Fürst, Susanne, Székely, József I.

    Published in Life sciences (1973) (04-12-1998)
    “…The dipeptidyl aminopeptidase IV (DP IV) inhibitor Diprotin A produces a full, dose-dependent, short-lasting and naloxone-reversible analgesia in the rat…”
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  19. 19

    Identification of superactive centers in thermally treated formamide-intercalated kaolinite by Horváth, Erzsébet, Kristóf, János, Frost, Ray L., Jakab, Emma, Makó, Éva, Vágvölgyi, Veronika

    Published in Journal of colloid and interface science (01-09-2005)
    “…The thermal behavior of a formamide-intercalated mechanochemically activated (dry-ground) kaolinite was investigated by thermogravimetry–mass spectrometry…”
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