Matches in SemOpenAlex for { <https://semopenalex.org/work/W2744461517> ?p ?o ?g. }
- W2744461517 endingPage "21616" @default.
- W2744461517 startingPage "21607" @default.
- W2744461517 abstract "CaO doped Ni/MCF catalysts were prepared by conventional incipient wetness impregnation and sol-gel methods for the study of methane dry reforming reaction. The fresh and used catalysts were characterized using H2 temperature programmed reduction (H2-TPR), X-ray diffraction (XRD), Fourier transform infra-red spectroscopy (FTIR), thermogravimetry (TG), differential scanning calorimetry (DSC) and O2 temperature-programmed oxidation (O2-TPO). XRD exhibited that CaO and Ni particles are dispersed on the surface of catalyst. The Ni:CaO ratio was adjusted for the improvement of pore textural properties on behalf of enhancement of metal particle dispersion for increased catalytic performance and anti-coking. The catalytic performance and stability of the catalysts for methane dry reforming reaction were studied at 700–750 °C at atmospheric pressure with GHSV of 24000 mL g−1h−1 having same feed ratio of CH4:CO2 = 1. Experimental results exhibited that catalyst prepared by a sol-gel method showed superior catalytic activity, stability and resisted carbon deposition than catalyst prepared incipient wetness impregnation method. Among all tested catalysts 9CaO 9Ni/MCF catalyst remained the best for catalytic performance and anti-coking activity due to higher metal dispersion with small metal particles, as well as the synergetic effect between CaO and Ni. During 75 h stability test over the catalyst 9CaO 9Ni/MCF the CH4 and CO2 conversion remained 91% and 99% respectively." @default.
- W2744461517 created "2017-08-17" @default.
- W2744461517 creator A5011824635 @default.
- W2744461517 creator A5013802102 @default.
- W2744461517 creator A5041250919 @default.
- W2744461517 creator A5079047697 @default.
- W2744461517 date "2017-08-01" @default.
- W2744461517 modified "2023-10-13" @default.
- W2744461517 title "Study of coking and catalyst stability over CaO promoted Ni-based MCF synthesized by different methods for CH4/CO2 reforming reaction" @default.
- W2744461517 cites W1473694001 @default.
- W2744461517 cites W1966124416 @default.
- W2744461517 cites W1968732513 @default.
- W2744461517 cites W1969193052 @default.
- W2744461517 cites W1975006742 @default.
- W2744461517 cites W1976437650 @default.
- W2744461517 cites W1976543190 @default.
- W2744461517 cites W1979085775 @default.
- W2744461517 cites W1989212231 @default.
- W2744461517 cites W1992202592 @default.
- W2744461517 cites W1992473732 @default.
- W2744461517 cites W1992989607 @default.
- W2744461517 cites W1993432533 @default.
- W2744461517 cites W1995041236 @default.
- W2744461517 cites W1995285348 @default.
- W2744461517 cites W1996957900 @default.
- W2744461517 cites W2001244859 @default.
- W2744461517 cites W2013870273 @default.
- W2744461517 cites W2015668888 @default.
- W2744461517 cites W2016220091 @default.
- W2744461517 cites W2016623468 @default.
- W2744461517 cites W2018206765 @default.
- W2744461517 cites W2023009034 @default.
- W2744461517 cites W2023404472 @default.
- W2744461517 cites W2024457489 @default.
- W2744461517 cites W2028567490 @default.
- W2744461517 cites W2031982417 @default.
- W2744461517 cites W2039833652 @default.
- W2744461517 cites W2041858867 @default.
- W2744461517 cites W2042888245 @default.
- W2744461517 cites W2050257746 @default.
- W2744461517 cites W2050890415 @default.
- W2744461517 cites W2051651562 @default.
- W2744461517 cites W2054207713 @default.
- W2744461517 cites W2057085210 @default.
- W2744461517 cites W2062081304 @default.
- W2744461517 cites W2063231110 @default.
- W2744461517 cites W2077468314 @default.
- W2744461517 cites W2079662841 @default.
- W2744461517 cites W2080524265 @default.
- W2744461517 cites W2082655228 @default.
- W2744461517 cites W2084144644 @default.
- W2744461517 cites W2084896804 @default.
- W2744461517 cites W2085483680 @default.
- W2744461517 cites W2088232936 @default.
- W2744461517 cites W2091359372 @default.
- W2744461517 cites W2091626499 @default.
- W2744461517 cites W2093506053 @default.
- W2744461517 cites W2094094665 @default.
- W2744461517 cites W2095489125 @default.
- W2744461517 cites W2110075489 @default.
- W2744461517 cites W2121206963 @default.
- W2744461517 cites W2166254003 @default.
- W2744461517 cites W2191885146 @default.
- W2744461517 cites W2201409800 @default.
- W2744461517 cites W221015242 @default.
- W2744461517 cites W2261742908 @default.
- W2744461517 cites W2269981777 @default.
- W2744461517 cites W2287806915 @default.
- W2744461517 cites W2324463533 @default.
- W2744461517 cites W2325377302 @default.
- W2744461517 cites W2332315824 @default.
- W2744461517 cites W2469952814 @default.
- W2744461517 cites W2511098834 @default.
- W2744461517 cites W2513835179 @default.
- W2744461517 cites W2525822256 @default.
- W2744461517 cites W2595267855 @default.
- W2744461517 cites W2828182 @default.
- W2744461517 cites W4376453456 @default.
- W2744461517 cites W4769348 @default.
- W2744461517 cites W2734305690 @default.
- W2744461517 doi "https://doi.org/10.1016/j.ijhydene.2017.05.036" @default.
- W2744461517 hasPublicationYear "2017" @default.
- W2744461517 type Work @default.
- W2744461517 sameAs 2744461517 @default.
- W2744461517 citedByCount "16" @default.
- W2744461517 countsByYear W27444615172018 @default.
- W2744461517 countsByYear W27444615172019 @default.
- W2744461517 countsByYear W27444615172020 @default.
- W2744461517 countsByYear W27444615172021 @default.
- W2744461517 countsByYear W27444615172022 @default.
- W2744461517 countsByYear W27444615172023 @default.
- W2744461517 crossrefType "journal-article" @default.
- W2744461517 hasAuthorship W2744461517A5011824635 @default.
- W2744461517 hasAuthorship W2744461517A5013802102 @default.
- W2744461517 hasAuthorship W2744461517A5041250919 @default.
- W2744461517 hasAuthorship W2744461517A5079047697 @default.
- W2744461517 hasConcept C118792377 @default.
- W2744461517 hasConcept C120665830 @default.