Search Results - "Oregui, Mikel"

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  1. 1

    Gas reactions under intrapore condensation regime within tailored metal–organic framework catalysts by Agirrezabal-Telleria, Iker, Luz, Ignacio, Ortuño, Manuel A., Oregui-Bengoechea, Mikel, Gandarias, Iñaki, López, Núria, Lail, Marty A., Soukri, Mustapha

    Published in Nature communications (06-05-2019)
    “…Production of 1-butene, a major monomer in polymer industry, is dominated by homogeneous protocols via ethylene dimerization. Homogeneous catalysts can achieve…”
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    Journal Article
  2. 2

    Insights into the Nature of the Active Sites of Pt-WOx/Al2O3 Catalysts for Glycerol Hydrogenolysis into 1,3-Propanediol by Clara Jarauta-Córdoba, Mikel Oregui Bengoechea, Iker Agirrezabal-Telleria, Pedro-Luis Arias, Iñaki Gandarias

    Published in Catalysts (01-10-2021)
    “…The chemo-selective hydrogenolysis of secondary hydroxyls is an important reaction for the production of biomass-derived α,ω-diols. This is the case for…”
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  3. 3

    Simultaneous catalytic de-polymerization and hydrodeoxygenation of lignin in water/formic acid media with Rh/Al2O3, Ru/Al2O3 and Pd/Al2O3 as bifunctional catalysts by Oregui Bengoechea, Mikel, Hertzberg, Agnethe, Miletić, Nemanja, Arias, Pedro L., Barth, Tanja

    “…•The catalysts increases the oil yield and decreases the solid yield through kinetic control of the reaction mechanism.•The alumina catalyzes the…”
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  4. 4

    Analysis of the effect of temperature and reaction time on yields, compositions and oil quality in catalytic and non-catalytic lignin solvolysis in a formic acid/water media using experimental design by Oregui Bengoechea, Mikel, Miletíc, Nemanja, Vogt, Mari H., Arias, Pedro L., Barth, Tanja

    Published in Bioresource technology (01-06-2017)
    “…[Display omitted] •The Pd, Rh and Ru catalysts give similar oil yields and oil qualities.•The alumina (AL) catalyzes de-polymerization and re-polymerization…”
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  5. 5

    High-Performance Magnetic Activated Carbon from Solid Waste from Lignin Conversion Processes. 1. Their Use As Adsorbents for CO2 by Hao, Wenming, Björnerbäck, Fredrik, Trushkina, Yulia, Oregui Bengoechea, Mikel, Salazar-Alvarez, Germán, Barth, Tanja, Hedin, Niklas

    Published in ACS sustainable chemistry & engineering (03-04-2017)
    “…Lignin is naturally abundant and a renewable precursor with the potential to be used in the production of both chemicals and materials. As many lignin…”
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  6. 6

    Unraveling the Role of Formic Acid and the Type of Solvent in the Catalytic Conversion of Lignin: A Holistic Approach by Oregui‐Bengoechea, Mikel, Gandarias, Inaki, Arias, Pedro L., Barth, Tanja

    Published in ChemSusChem (22-02-2017)
    “…The role of formic acid together with the effect of the solvent type and their synergic interactions with a NiMo catalyst were studied for the conversion of…”
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  7. 7

    Effect of the physicochemical properties of bimetallic Ni-Cu catalysts for hydrogenation/hydrogenolysis of HMF varying the synthesis method by Viar, Nerea, Requies, Jesus M., Tabanelli, Tommaso, Cavani, Fabrizio, Bueno, Ane, Oregui Bengoechea, Mikel

    Published in Sustainable Chemistry for the Environment (01-12-2023)
    “…The evident necessity to transition away from a reliance on fossil resources implies the need to produce high-value-added chemicals from non-conventional…”
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    Journal Article
  8. 8

    New insights into Mn2O3 based metal oxide granulation technique with enhanced chemical and mechanical stability for thermochemical energy storage in packed bed reactors by Bielsa, Daniel, Oregui, Mikel, Arias, Pedro L.

    Published in Solar energy (15-07-2022)
    “…•Granulation synthesis route of (Mn0.99Si0.01)2O3 thermochemical material.•Analysis of chemical and mechanical stability of the granules.•Doubling the energy…”
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    Journal Article
  9. 9

    Sodium Manganese Ferrite Water Splitting Cycle: Unravelling the Effect of Solid–Liquid Interfaces in Molten Alkali Carbonates by Udaeta, Joseba, Bengoechea, Mikel Oregui, Torre, Francesco, Uranga, Nerea, Hernaiz, Marta, Lucio, Beatriz, Arias, Pedro Luis, del Barrio, Elena Palomo, Doppiu, Stefania

    Published in ACS applied materials & interfaces (03-07-2024)
    “…In this work, the Na2CO3 of the sodium manganese ferrite thermochemical cycle was substituted by different eutectic or eutectoid alkali carbonate mixtures…”
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  10. 10

    Effect of atomic substitution on the sodium manganese ferrite thermochemical cycle for hydrogen production by Torre, Francesco, Sanchez, Teresa Aguilar, Doppiu, Stefania, Bengoechea, Mikel Oregui, Arias Ergueta, Pedro Luis, Palomo del Barrio, Elena

    Published in Materials today energy (01-10-2022)
    “…This work presents the effect of atomic substitution on the MnFe2O4–Na2CO3 thermochemical cycle for H2 production. The non-oxidative decarbonation/carbonation…”
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    Journal Article
  11. 11

    Thermocatalytic conversion of lignin in an ethanol/formic acid medium with NiMo catalysts: Role of the metal and acid sites by Oregui-Bengoechea, Mikel, Gandarias, Inaki, Miletić, Nemanja, Simonsen, Sveinung F., Kronstad, Audun, Arias, Pedro L., Barth, Tanja

    Published in Applied catalysis. B, Environmental (15-11-2017)
    “…[Display omitted] •Lignin de-polymerization contributes more to the oil yield than monomer stabilization.•Ni0, Mo and strong Lewis acid sites catalyzed the…”
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  12. 12

    Solvent and catalyst effect in the formic acid aided lignin-to-liquids by Oregui-Bengoechea, Mikel, Gandarias, Inaki, Arias, Pedro L., Barth, Tanja

    Published in Bioresource technology (01-12-2018)
    “…[Display omitted] •The ruthenium catalyst increases the oil yield and improves the oil quality.•Ruthenium is more active than nickel catalysts, especially at…”
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  13. 13
  14. 14

    Heterogeneous Catalyzed Thermochemical Conversion of Lignin Model Compounds: An Overview by Oregui-Bengoechea, Mikel, Agirre, Ion, Iriondo, Aitziber, Lopez-Urionabarrenechea, Alexander, Requies, Jesus M., Agirrezabal-Telleria, Iker, Bizkarra, Kepa, Barrio, V. Laura, Cambra, Jose F.

    Published in Topics in current chemistry (2016) (01-12-2019)
    “…Thermochemical lignin conversion processes can be described as complex reaction networks involving not only de-polymerization and re-polymerization reactions,…”
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