The role of catalyst synthesis on the enhancement of nickel praseodymium (III) oxide for the conversion of greenhouse gases to syngas
Catalytic methane (CH4) dry reforming (MDR) reaction proceeds with the formation of carbon; hence the effects of the catalyst preparation method on the type of carbon are worth investigating. This study investigated the performance of 20 wt% nickel praseodymium (III) oxide (20 wt% Ni/Pr2O3) catalyst...
פריטים דומים
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The role of catalyst synthesis on the enhancement of nickel praseodymium (III) oxide for the conversion of greenhouse gases to syngas
מאת: Osazuwa, Osarieme Uyi, et al.
יצא לאור: (2023) -
Catalytic conversion of greenhouse gases
מאת: Osazuwa, Osarieme Uyi, et al.
יצא לאור: (2020) -
An overview on the role of lanthanide series (rare earth metals) in H2 and syngas production from CH4 reforming processes
מאת: Sumaiya, Zainal Abidin, et al.
יצא לאור: (2020) -
Catalytic Conversion of Methane and Carbon Dioxide (Greenhouse Gases) into Syngas over Samarium-Cobalt-Trioxides Perovskite Catalyst
מאת: Osazuwa, Osarieme U., et al.
יצא לאור: (2017) -
H2-rich syngas from glycerol dry reforming over Nibased catalysts supported on alumina from aluminum dross
מאת: Nurul Asmawati, Roslan, et al.
יצא לאור: (2021)