Matches in SemOpenAlex for { <https://semopenalex.org/work/W2605287251> ?p ?o ?g. }
- W2605287251 endingPage "692" @default.
- W2605287251 startingPage "679" @default.
- W2605287251 abstract "Abstract The destruction of toluene in dielectric barrier discharge (DBD) reactor coupled with a series of CeO2-MnOx catalysts was investigated in this work. All catalysts prepared by sol-gel method were characterized in detail using N2 adsorption, XRD, TEM, H2-TPR, Raman, O2-TPD and XPS analysis technology. The effect of input power, molar ratio of Ce/Mn, gas flow rate and initial concentration of toluene on the removal efficiency of toluene and CO2 selectivity has been investigated. The plasma-catalytic system improves the removal efficiency and CO2 selectivity significantly compared with the plasma alone system. The catalytic performance of CeO2-MnOx catalysts are higher than pure CeO2 and MnOx, which might be contributed to the synergistic effect between CeO2 and MnOx (such as Mn3+/Mn2+ and Ce4+/Ce3+ redox couples) in the CeO2-MnOx catalysts. The highest removal efficiency of toluene (95.94%) and CO2 selectivity (90.73%) are acquired with Ce1Mn1 catalyst. The reason may be that: (1) the increased BET specific surface area and the decreased grain size can be obtained from CeO2-MnOx catalyst. (2) The formation of CeO2-MnOx solid solution resulted from the incorporation of Mn cations into the CeO2 lattice could generate more oxygen vacancies and improve the mobility of oxygen. On the basis of the analytic results of GC/MS, the pathways of toluene destruction in the plasma-catalysis system are discussed." @default.
- W2605287251 created "2017-04-14" @default.
- W2605287251 creator A5005782053 @default.
- W2605287251 creator A5007021298 @default.
- W2605287251 creator A5014072668 @default.
- W2605287251 creator A5055838753 @default.
- W2605287251 creator A5078249953 @default.
- W2605287251 date "2017-08-01" @default.
- W2605287251 modified "2023-10-10" @default.
- W2605287251 title "Plasma-catalytic removal of toluene over CeO 2 -MnO x catalysts in an atmosphere dielectric barrier discharge" @default.
- W2605287251 cites W1129226212 @default.
- W2605287251 cites W1580350362 @default.
- W2605287251 cites W1739609139 @default.
- W2605287251 cites W1749373575 @default.
- W2605287251 cites W1754662869 @default.
- W2605287251 cites W1964101020 @default.
- W2605287251 cites W1964932243 @default.
- W2605287251 cites W1972379626 @default.
- W2605287251 cites W1973646473 @default.
- W2605287251 cites W1975880620 @default.
- W2605287251 cites W1975970958 @default.
- W2605287251 cites W1976789544 @default.
- W2605287251 cites W1981529968 @default.
- W2605287251 cites W1987470389 @default.
- W2605287251 cites W1989864364 @default.
- W2605287251 cites W1990448890 @default.
- W2605287251 cites W1991648104 @default.
- W2605287251 cites W1994186910 @default.
- W2605287251 cites W1996346017 @default.
- W2605287251 cites W1997928079 @default.
- W2605287251 cites W2001449969 @default.
- W2605287251 cites W2001821956 @default.
- W2605287251 cites W2003791219 @default.
- W2605287251 cites W2005289615 @default.
- W2605287251 cites W2013155057 @default.
- W2605287251 cites W2020788660 @default.
- W2605287251 cites W2023480298 @default.
- W2605287251 cites W2028004097 @default.
- W2605287251 cites W2028534757 @default.
- W2605287251 cites W2034878515 @default.
- W2605287251 cites W2035842572 @default.
- W2605287251 cites W2036790358 @default.
- W2605287251 cites W2039955938 @default.
- W2605287251 cites W2040299339 @default.
- W2605287251 cites W2041031017 @default.
- W2605287251 cites W2041170068 @default.
- W2605287251 cites W2050886226 @default.
- W2605287251 cites W2051000368 @default.
- W2605287251 cites W2052139646 @default.
- W2605287251 cites W2056085077 @default.
- W2605287251 cites W2061639832 @default.
- W2605287251 cites W2067164442 @default.
- W2605287251 cites W2067461549 @default.
- W2605287251 cites W2068370412 @default.
- W2605287251 cites W2068838298 @default.
- W2605287251 cites W2068862631 @default.
- W2605287251 cites W2070171202 @default.
- W2605287251 cites W2074912575 @default.
- W2605287251 cites W2075070011 @default.
- W2605287251 cites W2081165947 @default.
- W2605287251 cites W2082361140 @default.
- W2605287251 cites W2087198424 @default.
- W2605287251 cites W2088958610 @default.
- W2605287251 cites W2088974114 @default.
- W2605287251 cites W2099744384 @default.
- W2605287251 cites W2101143877 @default.
- W2605287251 cites W2101978223 @default.
- W2605287251 cites W2128913597 @default.
- W2605287251 cites W2135522572 @default.
- W2605287251 cites W2175900704 @default.
- W2605287251 cites W2179989076 @default.
- W2605287251 cites W2183959053 @default.
- W2605287251 cites W226058584 @default.
- W2605287251 cites W2290977575 @default.
- W2605287251 cites W2328640011 @default.
- W2605287251 cites W2331864283 @default.
- W2605287251 doi "https://doi.org/10.1016/j.cej.2017.03.153" @default.
- W2605287251 hasPublicationYear "2017" @default.
- W2605287251 type Work @default.
- W2605287251 sameAs 2605287251 @default.
- W2605287251 citedByCount "205" @default.
- W2605287251 countsByYear W26052872512017 @default.
- W2605287251 countsByYear W26052872512018 @default.
- W2605287251 countsByYear W26052872512019 @default.
- W2605287251 countsByYear W26052872512020 @default.
- W2605287251 countsByYear W26052872512021 @default.
- W2605287251 countsByYear W26052872512022 @default.
- W2605287251 countsByYear W26052872512023 @default.
- W2605287251 crossrefType "journal-article" @default.
- W2605287251 hasAuthorship W2605287251A5005782053 @default.
- W2605287251 hasAuthorship W2605287251A5007021298 @default.
- W2605287251 hasAuthorship W2605287251A5014072668 @default.
- W2605287251 hasAuthorship W2605287251A5055838753 @default.
- W2605287251 hasAuthorship W2605287251A5078249953 @default.
- W2605287251 hasConcept C121332964 @default.
- W2605287251 hasConcept C127413603 @default.
- W2605287251 hasConcept C133386390 @default.
- W2605287251 hasConcept C161790260 @default.