Keywords: غشای انتقال یون; Ion transport membrane; Oxygen permeation rate; Numerical analysis; Surface exchange; Bulk diffusion; System optimization;
مقالات ISI غشای انتقال یون (ترجمه نشده)
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Keywords: غشای انتقال یون; Ion transport membrane; Ceramic membrane; Mixed conductor; Oxygen production; Syngas production;
Keywords: غشای انتقال یون; Ion transport membrane; Oxygen separation; Surface oxygen vacancy; Oxygen flux; Oxygen flux model;
Keywords: غشای انتقال یون; AZEP; Zero and partial emissions cycles; Ion transport membrane; Multi-objective optimization;
The coupling effect of gas-phase chemistry and surface reactions on oxygen permeation and fuel conversion in ITM reactors
Keywords: غشای انتقال یون; Ion transport membrane; Perovskite; Catalytic reactor; CH4 conversion; Oxygen permeation;
Advances in ion transport membrane technology for Syngas production
Keywords: غشای انتقال یون; Ion transport membrane; Synthesis gas; Hydrogen; Ceramic membrane; ITM Syngas
Decreasing interfacial losses with catalysts in La0.9Ca0.1FeO3–δ membranes for syngas production
Keywords: غشای انتقال یون; Ion transport membrane; Ceramic membrane; ITM syngas; Synthesis gas; Ionic conductivity; Surface reactions; Lanthanum ferrate
Characterization and fabrication of LSCF tapes
Keywords: غشای انتقال یون; Rheological properties; Surface behavior in water; LSCF; Ion transport membrane; SOFC
Measuring the oxygen profile and permeation flux across an ion transport (La0.9Ca0.1FeO3âδ) membrane and the development and validation of a multistep surface exchange model
Keywords: غشای انتقال یون; Ion transport membrane; LCF; Oxygen permeation; Surface oxygen; Oxygen flux model;
CFD (computational fluid dynamics) analysis of a novel reactor design using ion transport membranes for oxy-fuel combustion
Keywords: غشای انتقال یون; Ion transport membrane; Reactors; Oxy-fuel combustion;
Techno-economic performance and challenges of applying CO2 capture in the industry: A case study of five industrial plants
Keywords: غشای انتقال یون; ASU; air separation unit; CCS; carbon capture and storage; CHP; combined heat and power; CT; combined technology case; DPC; drying purification cooling; FGD; flue gas desulphurization; GT; gas turbine; HP; high-pressure; LT; long term; MEA; monoethanolami
Modeling of oxygen permeation through a LSCF ion transport membrane
Keywords: غشای انتقال یون; Ion transport membrane; Membrane reactor modeling; Oxyfuel combustion; Permeation process
Investigations of oxy-fuel combustion and oxygen permeation in an ITM reactor using a two-step oxy-combustion reaction kinetics model
Keywords: غشای انتقال یون; Ion transport membrane; Membrane reactor; Oxy-combustion kinetics; Permeation process
Modeling of a combined ion transport and porous membrane reactor for oxy-combustion
Keywords: غشای انتقال یون; Ion transport membrane; Oxygen transport reactor; Oxy-combustion; Modeling;
Interactions between oxygen permeation and homogeneous-phase fuel conversion on the sweep side of an ion transport membrane
Keywords: غشای انتقال یون; Ion transport membrane; High temperature membrane reactor; Oxy-fuel combustion; Partial oxidation of methane; Syngas production; Fuel conversion; Oxygen permeation
An integrated power generation system combining solid oxide fuel cell and oxy-fuel combustion for high performance and CO2 capture
Keywords: غشای انتقال یون; Solid oxide fuel cell; Oxy-fuel combustion; Ion transport membrane; Gas turbine; CO2 capture