Grafted NiO on natural olivine for dry reforming of methane
نویسندگان
چکیده
منابع مشابه
Dry Reforming of Methane Using Cold Plasma; Kinetic Model Study
In this work, the dry reforming of methane was studied using a corona and gliding discharge plasma microreactors. A chemical kinetic model was developed to describe the experimental behavior observed. The kinetic model is proposed based on the assumption that the reactant molecules CH4 or CO2 are attacked by active species produced b...
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ABSTRACT In this work, the dry reforming of methane was studied using a corona and glow discharge plasma microreactors. A chemical kinetic model was developed to understand the reaction better. The modelization allowed prediction of the reactants conversion according to the energy transfer to the gas (P×τ). The β value is trait of the energy cost, whatever this value was leeser indicated ...
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With the actual growth of the natural gas industry in the US as well as the potential and availability of this non-renewable carbon source worldwide, reforming of methane gas is getting increasing attention. Methane can be used for the production of heat or electricity, as well, it can be converted to syngas, a building block that could lead to the production of liquid fuels and chemicals, a ve...
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This communication presents the successful design of a structured catalyst based on porous anodic alumina membranes for methane dry reforming. The catalyst with a strong Ni-NiAl2O4 interaction shows both excellent activity and stability.
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The existence of liquid water on Mars has been hotly debated, especially following the discovery of the mineral olivine [(Mg,Fe) 2 SiO 4 ] in several regions of the planet by the latest Mars missions. Olivine, a greenish magnesium/ iron orthosilicate common in mafic rocks, has been claimed to indicate spatially limited chemical weathering [1-3] because it readily evolves to iddingsite, goethite...
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ژورنال
عنوان ژورنال: Science and Technology of Advanced Materials
سال: 2002
ISSN: 1468-6996,1878-5514
DOI: 10.1016/s1468-6996(02)00026-8