Matches in SemOpenAlex for { <https://semopenalex.org/work/W2922861808> ?p ?o ?g. }
- W2922861808 endingPage "177" @default.
- W2922861808 startingPage "168" @default.
- W2922861808 abstract "Understanding water distribution behaviors plays an essential role in shale gas development due to the hydraulic fracturing technology. In this study, water vapor adsorption isotherms were measured for Upper Triassic Yanchang and Lower Silurian Longmaxi samples at 288.15 K, 298.15 K and 308.15 K to investigate the adsorption behaviors of water on shale. For a description of adsorption process, a Dent’s model provides an estimate of primary and secondary adsorption sites of water adsorption. The effects of temperature, shale mineralogy, and water distribution were discussed. The results show that temperature has a negative effect on water vapor adsorption. Adsorption capacities of primary and secondary sites decrease with increasing temperature. Water vapor adsorption capacity is tightly associated with clay content, whereas water vapor adsorption has no significant relationship with total organic carbon (TOC). Normalized water vapor adsorption content also has no significant relationship with TOC, which indicates no obvious correlation between water vapor adsorption and TOC content. The inter-crystal pores of clay minerals provide significant specific surface for gas adsorption in shale. At low relative pressure, a large number of water molecules adsorb on the primary sites. At high relative vapor pressure, most of the primary sites have been occupied, so that the secondary adsorption sites will be utilized. Therefore, due to relative weak binding energies in secondary adsorption sites, water cluster are formed in micro-pores of shale. As relative vapor pressure increases, capillary condensation gradually predominates over the adsorption. The study will reveal mechanism of water adsorption and distribution characteristics on shale and provide some foundation for geological reserve estimation and shale gas recovery prediction." @default.
- W2922861808 created "2019-04-01" @default.
- W2922861808 creator A5017571386 @default.
- W2922861808 creator A5026396494 @default.
- W2922861808 creator A5053381657 @default.
- W2922861808 creator A5058333204 @default.
- W2922861808 creator A5068961925 @default.
- W2922861808 creator A5077905471 @default.
- W2922861808 creator A5078129675 @default.
- W2922861808 creator A5079524076 @default.
- W2922861808 date "2019-07-01" @default.
- W2922861808 modified "2023-10-18" @default.
- W2922861808 title "Experimental study of water vapor adsorption behaviors on shale" @default.
- W2922861808 cites W1507805306 @default.
- W2922861808 cites W1734529207 @default.
- W2922861808 cites W1836553622 @default.
- W2922861808 cites W1857552492 @default.
- W2922861808 cites W1981649335 @default.
- W2922861808 cites W1986113254 @default.
- W2922861808 cites W1987859673 @default.
- W2922861808 cites W2004255951 @default.
- W2922861808 cites W2010518043 @default.
- W2922861808 cites W2011254969 @default.
- W2922861808 cites W2011652100 @default.
- W2922861808 cites W2014314836 @default.
- W2922861808 cites W2019234405 @default.
- W2922861808 cites W2024446193 @default.
- W2922861808 cites W2029759118 @default.
- W2922861808 cites W2043341905 @default.
- W2922861808 cites W2056713732 @default.
- W2922861808 cites W2057054178 @default.
- W2922861808 cites W2057374802 @default.
- W2922861808 cites W2057693583 @default.
- W2922861808 cites W2064223687 @default.
- W2922861808 cites W2066965928 @default.
- W2922861808 cites W2067655208 @default.
- W2922861808 cites W2071771565 @default.
- W2922861808 cites W2072471289 @default.
- W2922861808 cites W2090003288 @default.
- W2922861808 cites W2104076412 @default.
- W2922861808 cites W2140460370 @default.
- W2922861808 cites W2161225043 @default.
- W2922861808 cites W2162666312 @default.
- W2922861808 cites W2209504942 @default.
- W2922861808 cites W2215866425 @default.
- W2922861808 cites W2312934586 @default.
- W2922861808 cites W2328828939 @default.
- W2922861808 cites W2330878997 @default.
- W2922861808 cites W2413796914 @default.
- W2922861808 cites W2533161785 @default.
- W2922861808 cites W2612803172 @default.
- W2922861808 cites W2614887862 @default.
- W2922861808 cites W2615148320 @default.
- W2922861808 cites W2745890562 @default.
- W2922861808 cites W2760098347 @default.
- W2922861808 cites W2780358244 @default.
- W2922861808 cites W2789995906 @default.
- W2922861808 cites W2792475380 @default.
- W2922861808 cites W2794702858 @default.
- W2922861808 cites W2800365933 @default.
- W2922861808 cites W2866184637 @default.
- W2922861808 cites W2884688510 @default.
- W2922861808 cites W2898046214 @default.
- W2922861808 cites W4378882847 @default.
- W2922861808 cites W816904156 @default.
- W2922861808 doi "https://doi.org/10.1016/j.fuel.2019.03.029" @default.
- W2922861808 hasPublicationYear "2019" @default.
- W2922861808 type Work @default.
- W2922861808 sameAs 2922861808 @default.
- W2922861808 citedByCount "42" @default.
- W2922861808 countsByYear W29228618082019 @default.
- W2922861808 countsByYear W29228618082020 @default.
- W2922861808 countsByYear W29228618082021 @default.
- W2922861808 countsByYear W29228618082022 @default.
- W2922861808 countsByYear W29228618082023 @default.
- W2922861808 crossrefType "journal-article" @default.
- W2922861808 hasAuthorship W2922861808A5017571386 @default.
- W2922861808 hasAuthorship W2922861808A5026396494 @default.
- W2922861808 hasAuthorship W2922861808A5053381657 @default.
- W2922861808 hasAuthorship W2922861808A5058333204 @default.
- W2922861808 hasAuthorship W2922861808A5068961925 @default.
- W2922861808 hasAuthorship W2922861808A5077905471 @default.
- W2922861808 hasAuthorship W2922861808A5078129675 @default.
- W2922861808 hasAuthorship W2922861808A5079524076 @default.
- W2922861808 hasConcept C127313418 @default.
- W2922861808 hasConcept C127413603 @default.
- W2922861808 hasConcept C147534773 @default.
- W2922861808 hasConcept C150394285 @default.
- W2922861808 hasConcept C151730666 @default.
- W2922861808 hasConcept C153127940 @default.
- W2922861808 hasConcept C178790620 @default.
- W2922861808 hasConcept C185592680 @default.
- W2922861808 hasConcept C19184958 @default.
- W2922861808 hasConcept C199289684 @default.
- W2922861808 hasConcept C40212044 @default.
- W2922861808 hasConcept C42360764 @default.
- W2922861808 hasConcept C84351421 @default.
- W2922861808 hasConceptScore W2922861808C127313418 @default.