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COMPARATIVE STUDY the ACTIVITY in DRY REFORMING of METHANE of BIOXIDE NiO-Co3O4 and NiO-Fe2O3 SYSTEMS SUPPORTED on the GRANULATED NATURAL DIATOMITE
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In this work, catalytic systems NiO-Co3O4 and NiO-Fe2O3 bioxide supported on the granulated natural diatomite from the Georgia deposit were investigated as catalysts for the dry reforming of methane. The results showed that the NiO-Co3O4/D catalyst is more active and stable than NiO-Fe2O3/D. At the reaction temperature 850 oC the conversion of methane on the NiO-Co3O4/D catalyst was 77%, whereas on the NiO-Fe2O3/D – 42%. The activity of the NiO-Co3O4/D catalyst in the reaction is probably due to the high dispersity of the catalyst particles. The results of SEM-EDX, XRD, and AES showed that cobalt oxide in the composition of NiO-Co3O4/D is in the form of nanoparticles with sizes much smaller than the sensitivity threshold of X-ray diffraction analysis (<100Å).
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Title: COMPARATIVE STUDY the ACTIVITY in DRY REFORMING of METHANE of BIOXIDE NiO-Co3O4 and NiO-Fe2O3 SYSTEMS SUPPORTED on the GRANULATED NATURAL DIATOMITE
Description:
In this work, catalytic systems NiO-Co3O4 and NiO-Fe2O3 bioxide supported on the granulated natural diatomite from the Georgia deposit were investigated as catalysts for the dry reforming of methane.
The results showed that the NiO-Co3O4/D catalyst is more active and stable than NiO-Fe2O3/D.
At the reaction temperature 850 oC the conversion of methane on the NiO-Co3O4/D catalyst was 77%, whereas on the NiO-Fe2O3/D – 42%.
The activity of the NiO-Co3O4/D catalyst in the reaction is probably due to the high dispersity of the catalyst particles.
The results of SEM-EDX, XRD, and AES showed that cobalt oxide in the composition of NiO-Co3O4/D is in the form of nanoparticles with sizes much smaller than the sensitivity threshold of X-ray diffraction analysis (<100Å).
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