Matches in SemOpenAlex for { <https://semopenalex.org/work/W2080883400> ?p ?o ?g. }
Showing items 1 to 85 of
85
with 100 items per page.
- W2080883400 endingPage "504" @default.
- W2080883400 startingPage "487" @default.
- W2080883400 abstract "Abstract In recent years, there has been increased interest in developing inorganic and composite membranes for in-situ separation of hydrogen to achieve an equilibrium shift in catalytic membrane reactors. The productivity of these membrane reactors, however, is severely limited by the poor permeability and selectivity of available membranes. To develop a new class of permselective inorganic membranes, electroless plating has been used to deposit palladium thin-films on a microporous ceramic substrate. A palladium thin-film coating was deposited on a microporous ceramic disk (α-alumina, φ 39 mm × 2 mm thickness, nominal pore size 150 nm and open porosity ≈ 42%) by electroless deposition. The film was evaluated by SEM and EDX analysis. A steady-state counter-diffusion method, using gas chromatographic analysis, was used to evaluate the permeability and selectivity of the composite palladium membrane for hydrogen separation at temperatures from 373 to 573 K. The pressure on the high pressure side of the membrane ranged from 170 to 240 kPa and the low pressure side was maintained at 136 kPa. The measured hydrogen permeabilities at 573 K were found to be 1.462×10−9 mol·m/m2·s·Pa0.778, and 3.87×10−8 mol · m/m2 · s · Pa0.501 for palladium film thicknesses of 8.5 and 12 μm, respectively. The results indicate that the membrane has both high permeability and selectivity for hydrogen and may find applications in high temperature hydrogen separation and membrane reactors." @default.
- W2080883400 created "2016-06-24" @default.
- W2080883400 creator A5015244496 @default.
- W2080883400 creator A5015431840 @default.
- W2080883400 creator A5040176041 @default.
- W2080883400 creator A5058708270 @default.
- W2080883400 date "1997-01-01" @default.
- W2080883400 modified "2023-10-14" @default.
- W2080883400 title "Application of Electroless Deposited Thin-Film Palladium Composite Membrane in Hydrogen Separation" @default.
- W2080883400 cites W1973465518 @default.
- W2080883400 cites W1978974426 @default.
- W2080883400 cites W1995354399 @default.
- W2080883400 cites W2000763828 @default.
- W2080883400 cites W2016344709 @default.
- W2080883400 cites W2016517772 @default.
- W2080883400 cites W2017678404 @default.
- W2080883400 cites W2053636492 @default.
- W2080883400 cites W2069841208 @default.
- W2080883400 cites W2071351132 @default.
- W2080883400 cites W2612275853 @default.
- W2080883400 cites W3016230527 @default.
- W2080883400 doi "https://doi.org/10.1080/01496399708003211" @default.
- W2080883400 hasPublicationYear "1997" @default.
- W2080883400 type Work @default.
- W2080883400 sameAs 2080883400 @default.
- W2080883400 citedByCount "28" @default.
- W2080883400 countsByYear W20808834002012 @default.
- W2080883400 countsByYear W20808834002013 @default.
- W2080883400 countsByYear W20808834002014 @default.
- W2080883400 countsByYear W20808834002015 @default.
- W2080883400 countsByYear W20808834002016 @default.
- W2080883400 countsByYear W20808834002022 @default.
- W2080883400 countsByYear W20808834002023 @default.
- W2080883400 crossrefType "journal-article" @default.
- W2080883400 hasAuthorship W2080883400A5015244496 @default.
- W2080883400 hasAuthorship W2080883400A5015431840 @default.
- W2080883400 hasAuthorship W2080883400A5040176041 @default.
- W2080883400 hasAuthorship W2080883400A5058708270 @default.
- W2080883400 hasConcept C118792377 @default.
- W2080883400 hasConcept C127413603 @default.
- W2080883400 hasConcept C161790260 @default.
- W2080883400 hasConcept C178790620 @default.
- W2080883400 hasConcept C185592680 @default.
- W2080883400 hasConcept C202189072 @default.
- W2080883400 hasConcept C41625074 @default.
- W2080883400 hasConcept C42360764 @default.
- W2080883400 hasConcept C502130503 @default.
- W2080883400 hasConcept C512968161 @default.
- W2080883400 hasConcept C55493867 @default.
- W2080883400 hasConcept C68170385 @default.
- W2080883400 hasConcept C86381522 @default.
- W2080883400 hasConceptScore W2080883400C118792377 @default.
- W2080883400 hasConceptScore W2080883400C127413603 @default.
- W2080883400 hasConceptScore W2080883400C161790260 @default.
- W2080883400 hasConceptScore W2080883400C178790620 @default.
- W2080883400 hasConceptScore W2080883400C185592680 @default.
- W2080883400 hasConceptScore W2080883400C202189072 @default.
- W2080883400 hasConceptScore W2080883400C41625074 @default.
- W2080883400 hasConceptScore W2080883400C42360764 @default.
- W2080883400 hasConceptScore W2080883400C502130503 @default.
- W2080883400 hasConceptScore W2080883400C512968161 @default.
- W2080883400 hasConceptScore W2080883400C55493867 @default.
- W2080883400 hasConceptScore W2080883400C68170385 @default.
- W2080883400 hasConceptScore W2080883400C86381522 @default.
- W2080883400 hasIssue "1-4" @default.
- W2080883400 hasLocation W20808834001 @default.
- W2080883400 hasOpenAccess W2080883400 @default.
- W2080883400 hasPrimaryLocation W20808834001 @default.
- W2080883400 hasRelatedWork W2006070393 @default.
- W2080883400 hasRelatedWork W2018823693 @default.
- W2080883400 hasRelatedWork W2094087377 @default.
- W2080883400 hasRelatedWork W2166646712 @default.
- W2080883400 hasRelatedWork W2324173993 @default.
- W2080883400 hasRelatedWork W2520243344 @default.
- W2080883400 hasRelatedWork W2684986028 @default.
- W2080883400 hasRelatedWork W2932848173 @default.
- W2080883400 hasRelatedWork W4220887855 @default.
- W2080883400 hasRelatedWork W4386258089 @default.
- W2080883400 hasVolume "32" @default.
- W2080883400 isParatext "false" @default.
- W2080883400 isRetracted "false" @default.
- W2080883400 magId "2080883400" @default.
- W2080883400 workType "article" @default.