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Agnieszka M. Kierzkowska
Researcher at ETH Zurich
Publications - 46
Citations - 2112
Agnieszka M. Kierzkowska is an academic researcher from ETH Zurich. The author has contributed to research in topics: Sorbent & Chemical looping combustion. The author has an hindex of 20, co-authored 39 publications receiving 1508 citations.
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Journal ArticleDOI
Oxidative dehydrogenation of propane on silica-supported vanadyl sites promoted with sodium metavanadate
Manouchehr Nadjafi,Agnieszka M. Kierzkowska,Paula M. Abdala,René Verel,Olga V. Safonova,Alexey Fedorov,Christoph R. Müller +6 more
TL;DR: In this paper, the specific rate of the propene formation in ODP was increased by 30 and 125% at 450 °C and ca. 1 V nm−2 nominal coverage.
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Yolk–shell-type CaO-based sorbents for CO2 capture: assessing the role of nanostructuring for the stabilization of the cyclic CO2 uptake
Maximilian Krödel,Alexander Oing,Jan Negele,Annelies Landuyt,Agnieszka M. Kierzkowska,Alexander H. Bork,Felix Donat,Christoph R. Müller +7 more
TL;DR: In this article , a nanostructured yolk-shell (CaO)-shell (ZrO2) sorbents with a high cyclic CO2 uptake stability was developed, which outperformed benchmark CaO nanoparticles after 20 cycles.
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From ethene to propene (ETP) on tailored silica–alumina supports with isolated Ni(ii) sites: uncovering the importance of surface nickel aluminate sites and the carbon-pool mechanism
Zixuan Chen,Scott R. Docherty,Pierre Florian,Agnieszka M. Kierzkowska,Ilia B. Moroz,Paula M. Abdala,Christophe Copéret,Christoph R. Müller,Alexey Fedorov +8 more
TL;DR: In this paper , Ni catalysts with a high density of strong Brønsted acid sites (BAS) were used for ethene-to-propene conversion on three silica-based supports.
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Structure of Na Species in Promoted CaO‐Based Sorbents and Their Effect on the Rate and Extent of the CO2 Uptake
Maximilian Krödel,Lorenz Abduly,Manouchehr Nadjafi,Agnieszka M. Kierzkowska,Alexander C. Yakimov,Alexander H. Bork,Felix Donat,Christophe Copéret,Paula M. Abdala,Christoph R. Müller +9 more
TL;DR: In this article , CaO-based CO 2 sorbents were synthesized via mechanochemical activation of a mixture of Na 2 CO 3 and CaCO 3 to investigate the effect of sodium species on the structure, morphology, carbonation rate and cyclic CO 2 uptake of the CO 2 Sorbents.
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Altering oxygen binding by redox-inactive metal substitution to control catalytic activity: oxygen reduction on manganese oxide nanoparticles as a model system.
Yi-Hsuan Wu,Harshit S Mehta,Elena Willinger,Jodie A. Yuwono,Priyanka Kumari,Paula M. Abdala,Anna Wach,Agnieszka M. Kierzkowska,Felix Donat,Denis Kuznetsov,Christoph R. Müller +10 more
TL;DR: In this article , the authors rationalize the dependence of the activity of Mn3O4:M for the electrocatalytic oxygen reduction reaction (ORR) on the enthalpy of formation of the binary MO oxide, ΔfH°(MO), and the Lewis acidity of the M2+ substituent.