Matches in SemOpenAlex for { <https://semopenalex.org/work/W2075985110> ?p ?o ?g. }
- W2075985110 endingPage "175" @default.
- W2075985110 startingPage "168" @default.
- W2075985110 abstract "Yttria stabilized bismuth oxide (YSB) membranes were prepared using a self-made YSB powder with sintering temperatures down to 750 °C. The membrane was characterized by SEM, porosity measurement, electrochemical impedance measurement and composition detection by plasma-optical emission spectrometry. The prepared membranes were tested for air separation under a new concept in the field-pure ion conductor with external short circuit. The influences of CO2 and water vapor in the sweep gas on the O2 permeation behavior of the resultant YSB membranes have been investigated. The O2 permeation fluxes of the YSB membrane decreased with increasing the CO2 concentration in the sweep gas. Such flux decline is a very normal phenomenon due to the strong chemical adsorption of CO2 to the membrane surface. YSB can withstand the presence of CO2 atmospheres at high temperatures without causing any reaction between the two phases. More interesting is that, contrary to the negative effect of the water vapor on other membranes like perovskite, the presence of H2O is beneficial for O2 permeation through the YSB membrane. The maximum oxygen flux achieved was 1.33 ml cm−2 min−1 at 850 °C for the YSB membrane with a thickness of 1 mm. Thin-film membrane technology and surface modification can help to further improve the O2 fluxes to be of practical interest." @default.
- W2075985110 created "2016-06-24" @default.
- W2075985110 creator A5013288442 @default.
- W2075985110 creator A5016038041 @default.
- W2075985110 creator A5019020773 @default.
- W2075985110 creator A5037185459 @default.
- W2075985110 creator A5053998052 @default.
- W2075985110 creator A5077255554 @default.
- W2075985110 creator A5083364618 @default.
- W2075985110 date "2013-01-01" @default.
- W2075985110 modified "2023-09-23" @default.
- W2075985110 title "CO2 and water vapor-tolerant yttria stabilized bismuth oxide (YSB) membranes with external short circuit for oxygen separation with CO2 capture at intermediate temperatures" @default.
- W2075985110 cites W1541737091 @default.
- W2075985110 cites W1565883035 @default.
- W2075985110 cites W1794469750 @default.
- W2075985110 cites W1963643439 @default.
- W2075985110 cites W1965580710 @default.
- W2075985110 cites W1968619188 @default.
- W2075985110 cites W1978171666 @default.
- W2075985110 cites W1979799273 @default.
- W2075985110 cites W1980439981 @default.
- W2075985110 cites W1984337589 @default.
- W2075985110 cites W1988194742 @default.
- W2075985110 cites W1992682678 @default.
- W2075985110 cites W1994889544 @default.
- W2075985110 cites W1995850899 @default.
- W2075985110 cites W1998612122 @default.
- W2075985110 cites W2001515907 @default.
- W2075985110 cites W2007524757 @default.
- W2075985110 cites W2008367890 @default.
- W2075985110 cites W2012120190 @default.
- W2075985110 cites W2016454124 @default.
- W2075985110 cites W2020415732 @default.
- W2075985110 cites W2033454809 @default.
- W2075985110 cites W2034966163 @default.
- W2075985110 cites W2039884315 @default.
- W2075985110 cites W2040942771 @default.
- W2075985110 cites W2045287888 @default.
- W2075985110 cites W2046074126 @default.
- W2075985110 cites W2047180650 @default.
- W2075985110 cites W2058576376 @default.
- W2075985110 cites W2069705448 @default.
- W2075985110 cites W2072123486 @default.
- W2075985110 cites W2075048613 @default.
- W2075985110 cites W2083724120 @default.
- W2075985110 cites W2094674591 @default.
- W2075985110 cites W2095549029 @default.
- W2075985110 cites W2096891557 @default.
- W2075985110 cites W2100985959 @default.
- W2075985110 cites W2102595081 @default.
- W2075985110 cites W2124241998 @default.
- W2075985110 cites W2125053394 @default.
- W2075985110 cites W2131379134 @default.
- W2075985110 cites W2134063557 @default.
- W2075985110 cites W2135252007 @default.
- W2075985110 cites W2147751344 @default.
- W2075985110 cites W2148122024 @default.
- W2075985110 cites W2151742144 @default.
- W2075985110 cites W2161787079 @default.
- W2075985110 cites W2162076243 @default.
- W2075985110 cites W2350556588 @default.
- W2075985110 cites W2367164795 @default.
- W2075985110 cites W2438212059 @default.
- W2075985110 cites W2614662609 @default.
- W2075985110 cites W2950802453 @default.
- W2075985110 cites W4229868324 @default.
- W2075985110 cites W4376595559 @default.
- W2075985110 doi "https://doi.org/10.1016/j.memsci.2012.09.015" @default.
- W2075985110 hasPublicationYear "2013" @default.
- W2075985110 type Work @default.
- W2075985110 sameAs 2075985110 @default.
- W2075985110 citedByCount "11" @default.
- W2075985110 countsByYear W20759851102013 @default.
- W2075985110 countsByYear W20759851102014 @default.
- W2075985110 countsByYear W20759851102015 @default.
- W2075985110 countsByYear W20759851102016 @default.
- W2075985110 countsByYear W20759851102020 @default.
- W2075985110 crossrefType "journal-article" @default.
- W2075985110 hasAuthorship W2075985110A5013288442 @default.
- W2075985110 hasAuthorship W2075985110A5016038041 @default.
- W2075985110 hasAuthorship W2075985110A5019020773 @default.
- W2075985110 hasAuthorship W2075985110A5037185459 @default.
- W2075985110 hasAuthorship W2075985110A5053998052 @default.
- W2075985110 hasAuthorship W2075985110A5077255554 @default.
- W2075985110 hasAuthorship W2075985110A5083364618 @default.
- W2075985110 hasConcept C113196181 @default.
- W2075985110 hasConcept C123609680 @default.
- W2075985110 hasConcept C127413603 @default.
- W2075985110 hasConcept C134132462 @default.
- W2075985110 hasConcept C147534773 @default.
- W2075985110 hasConcept C159985019 @default.
- W2075985110 hasConcept C178790620 @default.
- W2075985110 hasConcept C18411161 @default.
- W2075985110 hasConcept C185592680 @default.
- W2075985110 hasConcept C191897082 @default.
- W2075985110 hasConcept C192562407 @default.
- W2075985110 hasConcept C2779851234 @default.
- W2075985110 hasConcept C41625074 @default.