Matches in SemOpenAlex for { <https://semopenalex.org/work/W3215174111> ?p ?o ?g. }
- W3215174111 endingPage "186" @default.
- W3215174111 startingPage "176" @default.
- W3215174111 abstract "Water vapor has been one of the vital problems in purification of volatile organic compounds. In this study, the adsorption-desorption equilibrium of water vapor were conducted at 298, 308, 318, and 328 K on three adsorbents: hypercrosslinked polymeric adsorbents (HPA), activated carbon fiber (ACF) and granular activated carbon (GAC). The obtained isotherms were type V and the adsorption capacity at the same condition was: GAC>ACF>HPA. cluster formation induced micropore filling (CIMF) model was adopted to fit the adsorption isotherms and the fitting parameters showed that adsorption capacities of water vapor on micropores and functional groups had a negative logarithmic linear relationship with temperature. The existence of functional groups could weaken the negative influence of temperature on the water adsorption performance, while the influence of temperature had negligible relationship with microporous volume. The hysteresis loops at different temperatures on three adsorbents had similar shape, the size of which were also: GAC>ACF>HPA. They mainly occurred in micropore adsorption, but their size had positive relationships with both functional groups and microporous volume. The hysteresis became smaller along with the increase of temperature, closely related with the stability of water clusters. In conclusion, temperature, functional groups and porous structure played crucial roles for water vapor adsorption and the formation of hysteresis.Implications: Water vapor is one of the vital influence for VOCs recovery, so studying the adsorption mechanism of water vapor is important to weaken its negative effect. Adsorption capacities of water vapor on both micropores and functional groups had a negative logarithmic linear relationship with temperature. The existence of functional groups could weaken the negative influence of temperature on the water adsorption performance, while the influence of temperature had negligible relationship with microporous volume. The hysteresis loops on three adsorbents mainly occurred in micropore adsorption, but their size had positive relationships with both functional groups and microporous volume." @default.
- W3215174111 created "2021-12-06" @default.
- W3215174111 creator A5004616552 @default.
- W3215174111 creator A5020143743 @default.
- W3215174111 creator A5078110797 @default.
- W3215174111 creator A5083042448 @default.
- W3215174111 date "2022-01-10" @default.
- W3215174111 modified "2023-10-16" @default.
- W3215174111 title "Equilibrium and hysteresis formation of water vapor adsorption on microporous adsorbents: Effect of adsorbent properties and temperature" @default.
- W3215174111 cites W172313913 @default.
- W3215174111 cites W1963755429 @default.
- W3215174111 cites W1969242148 @default.
- W3215174111 cites W1969684607 @default.
- W3215174111 cites W1971723616 @default.
- W3215174111 cites W1975264953 @default.
- W3215174111 cites W1978947887 @default.
- W3215174111 cites W1979776848 @default.
- W3215174111 cites W1985433412 @default.
- W3215174111 cites W1986022082 @default.
- W3215174111 cites W1988387284 @default.
- W3215174111 cites W1989310271 @default.
- W3215174111 cites W1989515099 @default.
- W3215174111 cites W1991798953 @default.
- W3215174111 cites W1993275674 @default.
- W3215174111 cites W1997670695 @default.
- W3215174111 cites W1999968444 @default.
- W3215174111 cites W2003081386 @default.
- W3215174111 cites W2004676623 @default.
- W3215174111 cites W2006949187 @default.
- W3215174111 cites W2010842212 @default.
- W3215174111 cites W2015948162 @default.
- W3215174111 cites W2017384874 @default.
- W3215174111 cites W2018470205 @default.
- W3215174111 cites W2019717553 @default.
- W3215174111 cites W2024503895 @default.
- W3215174111 cites W2033017212 @default.
- W3215174111 cites W2037166444 @default.
- W3215174111 cites W2037361058 @default.
- W3215174111 cites W2037425117 @default.
- W3215174111 cites W2039404452 @default.
- W3215174111 cites W2043341905 @default.
- W3215174111 cites W2047227174 @default.
- W3215174111 cites W2058043726 @default.
- W3215174111 cites W2058796341 @default.
- W3215174111 cites W2058831426 @default.
- W3215174111 cites W2068356780 @default.
- W3215174111 cites W2077467772 @default.
- W3215174111 cites W2086942857 @default.
- W3215174111 cites W2093000835 @default.
- W3215174111 cites W2104525190 @default.
- W3215174111 cites W2129857275 @default.
- W3215174111 cites W2134616540 @default.
- W3215174111 cites W2134981547 @default.
- W3215174111 cites W2169949745 @default.
- W3215174111 cites W2192525430 @default.
- W3215174111 cites W2314701813 @default.
- W3215174111 cites W2323570231 @default.
- W3215174111 cites W2324356179 @default.
- W3215174111 cites W2324633431 @default.
- W3215174111 cites W2332911429 @default.
- W3215174111 cites W2399396881 @default.
- W3215174111 cites W2560650939 @default.
- W3215174111 cites W2564579063 @default.
- W3215174111 cites W2569220937 @default.
- W3215174111 cites W2750782348 @default.
- W3215174111 cites W2768164402 @default.
- W3215174111 cites W2893280057 @default.
- W3215174111 cites W2922180493 @default.
- W3215174111 cites W2922861808 @default.
- W3215174111 cites W3154351420 @default.
- W3215174111 cites W807505362 @default.
- W3215174111 cites W1966229751 @default.
- W3215174111 doi "https://doi.org/10.1080/10962247.2021.2011477" @default.
- W3215174111 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/34846277" @default.
- W3215174111 hasPublicationYear "2022" @default.
- W3215174111 type Work @default.
- W3215174111 sameAs 3215174111 @default.
- W3215174111 citedByCount "2" @default.
- W3215174111 countsByYear W32151741112023 @default.
- W3215174111 crossrefType "journal-article" @default.
- W3215174111 hasAuthorship W3215174111A5004616552 @default.
- W3215174111 hasAuthorship W3215174111A5020143743 @default.
- W3215174111 hasAuthorship W3215174111A5078110797 @default.
- W3215174111 hasAuthorship W3215174111A5083042448 @default.
- W3215174111 hasConcept C121332964 @default.
- W3215174111 hasConcept C123299182 @default.
- W3215174111 hasConcept C127413603 @default.
- W3215174111 hasConcept C147534773 @default.
- W3215174111 hasConcept C150394285 @default.
- W3215174111 hasConcept C162711632 @default.
- W3215174111 hasConcept C178790620 @default.
- W3215174111 hasConcept C185592680 @default.
- W3215174111 hasConcept C192562407 @default.
- W3215174111 hasConcept C20556612 @default.
- W3215174111 hasConcept C2779647737 @default.
- W3215174111 hasConcept C42360764 @default.
- W3215174111 hasConcept C62520636 @default.
- W3215174111 hasConcept C86381522 @default.