In this work, the estimation capacity of the response surface methodology (RSM), in the catalytic naphtha reforming to enhance the octane number of reformats via isomerization reaction pathway and minimize the aromatization activity over tri-metallic modified Pt-Re/Al2O3 catalyst were investigated by applying Design of experiment (DOE). The parent bimetallic catalysts were modified using a relatively inactive metal (Sn) by means of employing non-conventional method of anchoring technique called controlled surface reaction (CSR) method in order to favor the intimate contact of Sn with the active phase to suppress the metallic character of Pt metal. The correlations between RON, aromatization and isomerization activities with three reaction v...
<p>In this paper, a hybrid model for estimating the activity of a commercial Pt-Re/Al<sub>2</sub>O<s...
Catalytic reforming is an important intermediate in the processing of crude (naphtha in particular) ...
AbstractCatalytic reforming of naphtha is one of the most important processes for high octane gasoli...
This study is aimed at investigating the interactive effect of reaction variables on the composition...
AbstractOne of the most significant procedures in oil refineries is naphtha catalytic reforming unit...
Catalytic naphtha reforming is extensively applied in petroleum refineries and petrochemical industr...
International audienceBridging the gap between kinetic model conception and catalyst design is targe...
Catalytic naphtha reforming is practiced extensively in the petroleum-refining industry to convert ...
YesIncreasing the yield and research octane number (RON) of naphtha isomerization process are the mo...
YesNaphtha isomerization is an important issue in petroleum industries and it has to be a simple and...
Catalytic reforming of naphtha for improving its characteristics is one of the most important petrol...
Background: The main purpose of the naphtha reforming process is to obtain high octane naphtha, arom...
AbstractIndustrial bifunctional reforming catalysts are promoted by chlorides for providing adequate...
The technique of developing a mathematical model of catalytic isomerization of light naphtha is stat...
Aromatization of propylene was carried out on Pt-Cu/ ?-Al2O3 bimetal catalyst at a temperature of 46...
<p>In this paper, a hybrid model for estimating the activity of a commercial Pt-Re/Al<sub>2</sub>O<s...
Catalytic reforming is an important intermediate in the processing of crude (naphtha in particular) ...
AbstractCatalytic reforming of naphtha is one of the most important processes for high octane gasoli...
This study is aimed at investigating the interactive effect of reaction variables on the composition...
AbstractOne of the most significant procedures in oil refineries is naphtha catalytic reforming unit...
Catalytic naphtha reforming is extensively applied in petroleum refineries and petrochemical industr...
International audienceBridging the gap between kinetic model conception and catalyst design is targe...
Catalytic naphtha reforming is practiced extensively in the petroleum-refining industry to convert ...
YesIncreasing the yield and research octane number (RON) of naphtha isomerization process are the mo...
YesNaphtha isomerization is an important issue in petroleum industries and it has to be a simple and...
Catalytic reforming of naphtha for improving its characteristics is one of the most important petrol...
Background: The main purpose of the naphtha reforming process is to obtain high octane naphtha, arom...
AbstractIndustrial bifunctional reforming catalysts are promoted by chlorides for providing adequate...
The technique of developing a mathematical model of catalytic isomerization of light naphtha is stat...
Aromatization of propylene was carried out on Pt-Cu/ ?-Al2O3 bimetal catalyst at a temperature of 46...
<p>In this paper, a hybrid model for estimating the activity of a commercial Pt-Re/Al<sub>2</sub>O<s...
Catalytic reforming is an important intermediate in the processing of crude (naphtha in particular) ...
AbstractCatalytic reforming of naphtha is one of the most important processes for high octane gasoli...