- ORCID iD
- 0000-0003-0792-054X
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- Journal Article
- A1
- open access
High temperature H2S removal via CO2-assisted chemical looping over ZrO2-modified Fe2O3
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- Journal Article
- A1
- open access
Coupling CO2 utilization and NO reduction in chemical looping manner by surface carbon
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Bifunctional Ni-Ca based material for integrated CO2 capture and conversion via calcium-looping dry reforming
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FeO controls the sintering of iron-based oxygen carriers in chemical looping CO2 conversion
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What makes Fe-modified MgAl2O4 an active catalyst support? : Insight from X-ray Raman scattering
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Pressure-induced deactivation of core-shell nanomaterials for catalyst assisted chemical looping
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Catalyst-Assisted Chemical Looping Auto-Thermal Dry Reforming: The Effect of Operating Pressure (Invited Lecture)
(2018) -
- PhD Thesis
- open access
Auto-thermal CO2 utilization by chemical looping : from nano to reactor scale
(2018) -
A core-shell structured Ni-Fe bifunctional nanomaterial for catalyst-assisted chemical looping
(2018) -
- Journal Article
- A1
- open access
Advanced chemical looping materials for CO2 utilization : a review
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Catalyst-assisted chemical looping auto-thermal dry reforming : spatial structuring effects on process efficiency
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- Conference Paper
- C3
- open access
CO2 Utilization via Auto-thermal Catalyst-assisted Chemical Looping (Invited Lecture)
(2017) p.117-118 -
A core-shell structured Fe2O3/ZrO2@ZrO2 nanomaterial with enhanced redox activity and stability for CO2 conversion
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- Conference Paper
- C3
- open access
Coating of Fe2O3 nanoparticles for enhanced redox activity and stability
(2016) -
CO2 conversion to CO by auto-thermal catalyst-assisted chemical looping
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Design a novel material for catalyst-assisted chemical looping process