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Carbon dioxide emissions, capture, storage and utilization: Review of materials, processes and technologies
TM Gür - Progress in Energy and Combustion Science, 2022 - Elsevier
Carbon capture and storage (CCS) is an essential component of mitigating climate change,
which arguably presents an existential challenge to our planet. Although CO 2 emissions …
which arguably presents an existential challenge to our planet. Although CO 2 emissions …
Comprehensive review of methane conversion in solid oxide fuel cells: Prospects for efficient electricity generation from natural gas
TM Gür - Progress in Energy and Combustion Science, 2016 - Elsevier
Natural gas is an important energy resource for electric power generation and other energy
needs. Recent discoveries of vast reserves of shale gas greatly increased its abundance …
needs. Recent discoveries of vast reserves of shale gas greatly increased its abundance …
Chemical structures and performance of perovskite oxides
MA Peña, JLG Fierro - Chemical reviews, 2001 - ACS Publications
The vast majority of catalysts used in modern chemical industry are based on mixed metal
oxides. The preparation of specific tailor-made mixed oxides able to perform complex …
oxides. The preparation of specific tailor-made mixed oxides able to perform complex …
Lanthanum–Strontium–Manganese Perovskites as Redox Materials for Solar Thermochemical Splitting of H2O and CO2
A thermodynamic and experimental investigation of a new class of solar thermochemical
redox intermediates, namely, lanthanum–strontium–manganese perovskites, is presented. A …
redox intermediates, namely, lanthanum–strontium–manganese perovskites, is presented. A …
Development of lanthanum strontium manganite perovskite cathode materials of solid oxide fuel cells: a review
SP Jiang - Journal of Materials Science, 2008 - Springer
The high-temperature solid oxide fuel cell (SOFC) is the most efficient and environmentally
friendly energy conversion technology to generate electricity from fuels such as hydrogen …
friendly energy conversion technology to generate electricity from fuels such as hydrogen …
Oxygen ion migration in perovskite-type oxides
Computer simulation techniques have been applied to perovskite-structured LaBO3 (where
B= Cr, Mn, Fe, Co) in order to elucidate the mechanistic features and energetics of oxygen …
B= Cr, Mn, Fe, Co) in order to elucidate the mechanistic features and energetics of oxygen …
Ionic transport in ABO3 perovskite oxides: a computer modelling tour
MS Islam - Journal of Materials chemistry, 2000 - pubs.rsc.org
This article presents a survey of recent applications of advanced computer modelling
techniques in the study of ion transport and defect properties of ABO3 perovskite-structured …
techniques in the study of ion transport and defect properties of ABO3 perovskite-structured …
Solar thermochemical splitting of water to generate hydrogen
Solar photochemical means of splitting water (artificial photosynthesis) to generate
hydrogen is emerging as a viable process. The solar thermochemical route also promises to …
hydrogen is emerging as a viable process. The solar thermochemical route also promises to …
Oxygen transport in La1− xSrxMn1− yCoyO3±δ perovskites: Part I. Oxygen tracer diffusion
RA De Souza, JA Kilner - Solid State Ionics, 1998 - Elsevier
Oxygen tracer diffusion coefficients of selected compositions in the La1− xSrxMn1−
yCoyO3±δ perovskite oxide system have been measured by means of the Isotopic …
yCoyO3±δ perovskite oxide system have been measured by means of the Isotopic …
Thermodynamic and kinetic assessments of strontium-doped lanthanum manganite perovskites for two-step thermochemical water splitting
Solar-driven thermochemical water splitting using non-stoichiometric oxides has emerged
as an attractive technology for solar fuel production. The most widely considered oxide for …
as an attractive technology for solar fuel production. The most widely considered oxide for …