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Dive into the research topics where Golnar Azimi is active.

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Featured researches published by Golnar Azimi.


CrystEngComm | 2016

In situ neutron powder diffraction study of the reaction M2O3 ↔ M3O4 ↔ MO, M = (Fe0.2Mn0.8): implications for chemical looping with oxygen uncoupling

Stefan T. Norberg; Golnar Azimi; S. Hull; Henrik Leion

The structural properties of (Fe0.2Mn0.8)xOy as a function of temperature under differing oxidizing and reducing atmospheres have been investigated using Thermal Gravimetric Analysis and neutron powder diffraction techniques. The principal observation is a reversible transition between the (low temperature) bixbyite and (high temperature) cubic spinel structured phases, which occurs over a significant temperature range and is dependent on the surrounding gas atmosphere. In addition to detailed information concerning the temperature dependence of the positional parameters, analysis of the powder neutron diffraction data shows that the two metal species are not completely randomly distributed over the two symmetry independent cation sites within the bixbyite and cubic spinel phases. More significantly, the two phases appear to be completely stoichiometric, with compositions (Fe0.2Mn0.8)2O3 and (Fe0.2Mn0.8)3O4, respectively. Under severely reducing conditions, the sample transforms to a rocksalt structured phase of stoichiometry (Fe0.2Mn0.8)O, but reverts to the spinel and bixbyite phases on re-oxidation. The implications of these findings for the use of (Fe1−xMnx)Oy as oxygen carriers in chemical looping combustion (CLC) and chemical looping with oxygen uncoupling (CLOU) techniques to capture CO2 during combustion of hydrocarbon fuels is briefly discussed.


Energy & Fuels | 2013

Investigation of Different Mn–Fe Oxides as Oxygen Carrier for Chemical-Looping with Oxygen Uncoupling (CLOU)

Golnar Azimi; Henrik Leion; Magnus Rydén; Tobias Mattisson; Anders Lyngfelt


Energy Procedia | 2011

Chemical-looping with oxygen uncoupling using combined Mn-Fe oxides, testing in batch fluidized bed

Golnar Azimi; Henrik Leion; Tobias Mattisson; Anders Lyngfelt


Aiche Journal | 2013

(MnzFe1—z)yOx combined oxides as oxygen carrier for chemical‐looping with oxygen uncoupling

Golnar Azimi; Magnus Rydén; Henrik Leion; Tobias Mattisson; Anders Lyngfelt


International Journal of Greenhouse Gas Control | 2015

Comprehensive study of Mn–Fe–Al oxygen-carriers for chemical-looping with oxygen uncoupling (CLOU)

Golnar Azimi; Tobias Mattisson; Henrik Leion; Magnus Rydén; Anders Lyngfelt


Industrial & Engineering Chemistry Research | 2014

Mn–Fe Oxides with Support of MgAl2O4, CeO2, ZrO2 and Y2O3–ZrO2 for Chemical-Looping Combustion and Chemical-Looping with Oxygen Uncoupling

Golnar Azimi; Henrik Leion; Tobias Mattisson; Magnus Rydén; Frans Snijkers; Anders Lyngfelt


Aiche Journal | 2014

Production and examination of oxygen-carrier materials based on manganese ores and Ca(OH)2 in chemical looping with oxygen uncoupling

Nasim Mohammad Pour; Golnar Azimi; Henrik Leion; Magnus Rydén; Anders Lyngfelt


Applied Energy | 2016

Enhancing properties of iron and manganese ores as oxygen carriers for chemical looping processes by dry impregnation

Syed Kumail Haider; Golnar Azimi; Lunbo Duan; Edward J. Anthony; Kumar Patchigolla; John E. Oakey; Henrik Leion; Tobias Mattisson; Anders Lyngfelt


Aiche Journal | 2013

On the high‐gasification rate of Brazilian manganese ore in chemical‐looping combustion (CLC) for solid fuels

Peter Frohn; Mehdi Arjmand; Golnar Azimi; Henrik Leion; Tobias Mattisson; Anders Lyngfelt


International Journal of Greenhouse Gas Control | 2012

Experimental evaluation and modeling of steam gasification and hydrogen inhibition in Chemical-Looping Combustion with solid fuel

Golnar Azimi; Martin Keller; Amin Mehdipoor; Henrik Leion

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Henrik Leion

Chalmers University of Technology

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Anders Lyngfelt

Chalmers University of Technology

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Tobias Mattisson

Chalmers University of Technology

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Magnus Rydén

Chalmers University of Technology

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Nasim Mohammad Pour

Chalmers University of Technology

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Amin Mehdipoor

Chalmers University of Technology

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Dazheng Jing

Chalmers University of Technology

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Martin Keller

Chalmers University of Technology

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Mehdi Arjmand

Chalmers University of Technology

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Stefan T. Norberg

Chalmers University of Technology

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