Matches in SemOpenAlex for { <https://semopenalex.org/work/W2907543994> ?p ?o ?g. }
- W2907543994 endingPage "1382" @default.
- W2907543994 startingPage "1372" @default.
- W2907543994 abstract "Amine-supported mesoporous oxide materials have proven to be effective acid gas sorbents. While the primary application of these supported amine species has been CO2 capture, they have also shown to be proficient at adsorbing other damaging flue gas impurities such as SOx and NOx. The precise nature of the amine (primary, secondary, or tertiary) is known to dictate the gas–amine interactions, with tertiary amines of particular interest due to their inability to adsorb dry CO2, favoring SOx and NOx species. The different amine sites also provoke differences in oxidative stability, when exposed to temperatures similar to those used for thermal desorption procedures. Herein we focus on the structural and chemical changes that occur in a range of class 1 (amine-impregnated) and class 2 (amine-grafted) sorbents upon oxidation and correlate these with their variation in acid gas (CO2, NO2, and SO2) uptakes, as a function of the oxidation temperature. These studies suggest that oxidatively degraded or “spent” su..." @default.
- W2907543994 created "2019-01-11" @default.
- W2907543994 creator A5026242353 @default.
- W2907543994 creator A5031259283 @default.
- W2907543994 creator A5052807182 @default.
- W2907543994 creator A5086558389 @default.
- W2907543994 date "2018-12-26" @default.
- W2907543994 modified "2023-10-14" @default.
- W2907543994 title "Exploring the Acid Gas Sorption Properties of Oxidatively Degraded Supported Amine Sorbents" @default.
- W2907543994 cites W1135851971 @default.
- W2907543994 cites W1565716364 @default.
- W2907543994 cites W1983902012 @default.
- W2907543994 cites W1994529792 @default.
- W2907543994 cites W1997292086 @default.
- W2907543994 cites W2003440013 @default.
- W2907543994 cites W2005319158 @default.
- W2907543994 cites W2011828528 @default.
- W2907543994 cites W2016539884 @default.
- W2907543994 cites W2019832034 @default.
- W2907543994 cites W2022224360 @default.
- W2907543994 cites W2024685013 @default.
- W2907543994 cites W2032797438 @default.
- W2907543994 cites W2041566541 @default.
- W2907543994 cites W2042143628 @default.
- W2907543994 cites W2058236569 @default.
- W2907543994 cites W2064411034 @default.
- W2907543994 cites W2068536827 @default.
- W2907543994 cites W2082499728 @default.
- W2907543994 cites W2085189533 @default.
- W2907543994 cites W2085720812 @default.
- W2907543994 cites W2094703787 @default.
- W2907543994 cites W2121022470 @default.
- W2907543994 cites W2130321631 @default.
- W2907543994 cites W2234905474 @default.
- W2907543994 cites W2287064417 @default.
- W2907543994 cites W2287480013 @default.
- W2907543994 cites W2308729898 @default.
- W2907543994 cites W2314344642 @default.
- W2907543994 cites W2314697832 @default.
- W2907543994 cites W2315594215 @default.
- W2907543994 cites W2318775926 @default.
- W2907543994 cites W2318887899 @default.
- W2907543994 cites W2319500290 @default.
- W2907543994 cites W2321088781 @default.
- W2907543994 cites W2326530431 @default.
- W2907543994 cites W2327190868 @default.
- W2907543994 cites W2327632489 @default.
- W2907543994 cites W2328931076 @default.
- W2907543994 cites W2332893944 @default.
- W2907543994 cites W2333200482 @default.
- W2907543994 cites W2345548705 @default.
- W2907543994 cites W2434560946 @default.
- W2907543994 cites W2559884340 @default.
- W2907543994 cites W2560434599 @default.
- W2907543994 cites W2575096424 @default.
- W2907543994 cites W2593297243 @default.
- W2907543994 cites W2593742575 @default.
- W2907543994 cites W2601256601 @default.
- W2907543994 cites W2619883613 @default.
- W2907543994 cites W2737133187 @default.
- W2907543994 cites W2767094793 @default.
- W2907543994 cites W2770684835 @default.
- W2907543994 cites W973530200 @default.
- W2907543994 doi "https://doi.org/10.1021/acs.energyfuels.8b03688" @default.
- W2907543994 hasPublicationYear "2018" @default.
- W2907543994 type Work @default.
- W2907543994 sameAs 2907543994 @default.
- W2907543994 citedByCount "5" @default.
- W2907543994 countsByYear W29075439942019 @default.
- W2907543994 countsByYear W29075439942020 @default.
- W2907543994 countsByYear W29075439942021 @default.
- W2907543994 countsByYear W29075439942022 @default.
- W2907543994 crossrefType "journal-article" @default.
- W2907543994 hasAuthorship W2907543994A5026242353 @default.
- W2907543994 hasAuthorship W2907543994A5031259283 @default.
- W2907543994 hasAuthorship W2907543994A5052807182 @default.
- W2907543994 hasAuthorship W2907543994A5086558389 @default.
- W2907543994 hasBestOaLocation W29075439943 @default.
- W2907543994 hasConcept C107872376 @default.
- W2907543994 hasConcept C127413603 @default.
- W2907543994 hasConcept C131779359 @default.
- W2907543994 hasConcept C150394285 @default.
- W2907543994 hasConcept C178790620 @default.
- W2907543994 hasConcept C179104552 @default.
- W2907543994 hasConcept C185592680 @default.
- W2907543994 hasConcept C42360764 @default.
- W2907543994 hasConcept C58445606 @default.
- W2907543994 hasConceptScore W2907543994C107872376 @default.
- W2907543994 hasConceptScore W2907543994C127413603 @default.
- W2907543994 hasConceptScore W2907543994C131779359 @default.
- W2907543994 hasConceptScore W2907543994C150394285 @default.
- W2907543994 hasConceptScore W2907543994C178790620 @default.
- W2907543994 hasConceptScore W2907543994C179104552 @default.
- W2907543994 hasConceptScore W2907543994C185592680 @default.
- W2907543994 hasConceptScore W2907543994C42360764 @default.
- W2907543994 hasConceptScore W2907543994C58445606 @default.
- W2907543994 hasFunder F4320322120 @default.
- W2907543994 hasFunder F4320337480 @default.