105510 ⎘
Refining of hydrocarbon oils using hydrogen or hydrogen-generating compounds; Selective hydrogenation of the diolefin or acetylene compounds characterised by the catalyst used containing nickel or cobalt metal, or compounds thereof
Sub-classes:HYDROGENATION CATALYST WITH IMPROVED SULFUR RESISTANCE AND METHOD FOR PRODUCING SAME
#2Process for Reducing Unsaturated Hydrocarbons in Aromatic Fraction Through Selective Hydrogenation
#3METHOD OF PRODUCING PYROLYSIS PRODUCTS FROM A MIXED PLASTICS STREAM AND INTEGRATION OF THE SAME IN A REFINERY
#4Catalyst comprising an active nickel phase in the form of small particles distributed in a shell and a nickel-copper alloy
#5Catalyst comprising an active nickel sulfur phase distributed in a shell
#6Process for reducing unsaturated hydrocarbons in aromatic fraction through selective hydrogenation
#7HYDROGENATION PROCESS COMPRISING A CATALYST PREPARED BY ADDITION OF AN ORGANIC COMPOUND IN THE GAS PHASE
#8METHOD FOR PRODUCING LIQUID HYDROCARBON FUEL
#9Method for preparing a selective bimetallic hydrogenation catalyst made of nickel and copper
#10Producing C5 olefins from steam cracker C5 feeds
#11PROCESS FOR PREPARATION OF A SPECIFIC CATALYST FOR SELECTIVE HYDROGENATION AND HYDROGENATION OF AROMATIC COMPOUNDS BY KNEADING
#12Producing C5 olefins from steam cracker C5 feeds—a process using a catalytic distillation reactor system
#13Selective hydrogenation method using a nickel-based catalyst produced using an additive comprising a carboxylic acid function
#14Conversion process for an organic material
#15Mesoporous and macroporous nickel-based catalyst having a median macropore diameter of between 50 nm and 200 nm and its use with regard to hydrogenation
#16Selective hydrogenation process using a nickel catalyst prepared with an additive containing an amine or amide function or an amino acid
#17Producing C5 olefins from steam cracker C5 feeds
#18Catalyst with a mesoporous and macroporous co-mixed nickel active phase having a median macropore diameter in the range 50 to 300 NM, and its use in hydrogenation
#19Nickel-based mesoporous catalyst and use thereof in hydrogenation
#20Mesoporous and macroporous nickel-based catalyst having a median macropore diameter of greater than 200 nm and its use with regard to hydrogenation
#21Catalyst with a mesoporous and macroporous co-mixed nickel active phase having a median macropore diameter of more than 300 nm, and its use in hydrogenation
#22Method for selective hydrogenation using a catalyst containing copper and at least one metal selected from between nickel or cobalt
#23Process for the production of a gasoline with a low sulfur content
#24Process for preparing a catalyst based on a group VIII metal and containing silicon, and a process of selective hydrogenation implementing said catalyst
#25Catalysts for hydrodesulfurization
#26Process for the production of a gasoline with a low sulfur content
#27Method for preparing supported metal catalysts for hydrogenating unsaturated hydrocarbons
#28Method for producing hydrocarbon material
#29Process for selective hydrogenation in the presence of a catalyst based on a metal from group VIII prepared using at least one cyclic oligosaccharide
#30Process for hydrotreating inferior naphtha fraction
#31METHOD OF SEPARATING BUTENE-2 FROM A C4 CUT CONTAINING BUTENE-2 AND BUTENE-1 BY SELECTIVE OLIGOMERIZATION OF BUTENE-1
#32LAYERED CATALYST
#33CATALYSTS FOR HYDROGENATION OF UNSATURATED HYDROCARBONS AND PREPARATIONS AND USES THEREOF
#34Process for preparing a Ni/Sn supported catalyst for the selective hydrogenation of polyunsaturated hydrocarbons
#35PROCESS FOR PREPARING A SUPPORTED CATALYST BASED ON Ni AND A METAL FROM GROUP IB, FOR THE SELECTIVE HYDROGENATION OF POLYUNSATURATED HYDROCARBONS
#36CATALYST, A PROCESS FOR SELECTIVE HYDROGENATION OF ACETYLENE TO ETHYLENE AND A METHOD FOR THE MANUFACTURE OF THE CATALYST
#37Selective hydrogenation catalyst, and process for its preparation
#38Process and catalyst for selective hydrogenation of dienes and acetylenes
#39Process for synthesizing cubic metallic nanoparticles in the presence of two reducing agents
#40Purification of an aromatic fraction containing acetylenes by selective hydrogenation of the acetylenes
#41Selective Hydrogenation Processes Using Functional Surface Catalyst Composition
#42Selective hydrogenation process and catalyst
#43Process for synthesizing anisotropic metallic nanoparticles using two different reducing agents
#44Method for synthesizing a catalyst based on anisotropic metallic nanoparticles by a micellar means
#45PROCESS FOR SELECTIVELY HYDROGENATING BUTADIENE IN AN C4 OLEFIN STREAM CONTAINING A CATALYST POISON WITH THE SIMULTANEOUS ISOMERIZATION OF 1-BUTENE TO 2-BUTENE
#46Composite catalyst for the selective oligomerization of lower alkenes and the production of high octane products
#47Hydrogenation catalyst
#48Process and catalyst for selective hydrogenation of dienes and acetylenes
#49Partial oxidation using molecular sieve SSZ-71
#50Process for the hydrotreatment of an olefinic gasoline comprising a selective hydrogenation stage
#51Method for selective hydrogenation of polyunsaturated compounds into monounsaturated compounds using a homogeneous catalyst
#52Selective hydrogenation process and catalyst
#53Hydrogenation of aromatics and olefins using a mesoporous catalyst
#54Method for transmitting service data using a discontinuous transmission mode
#55Process and catalyst for the selective hydrogenation of diolefins contained in an olefin containing stream and for the removal of arsenic therefrom and a method of making such catalyst
#56Highly selective olefin removal with unsulfided hydrotreating catalysts