US2008222945A1PendingUtilityA1

Method for Producing Hydrocarbon Fuel Oil

Assignee: JAPAN OIL GAS AND METALS NATPriority: Sep 22, 2005Filed: Sep 22, 2005Published: Sep 18, 2008
Est. expirySep 22, 2025(expired)· nominal 20-yr term from priority
C10G 45/64
42
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Claims

Abstract

To efficiently obtain a liquid fuel containing no sulfur and having good cold flow properties by hydrotreating heavy wax generated by the Fischer-Tropsch (FT) synthesis to perform cracking with the gasification rate restrained and also increase an isomerization reaction which occurs at the same time. A method for producing a hydrocarbon fuel oil, in which heavy wax generated by the FT synthesis is hydrotreated with a catalyst of the platinum group using zeolite or silica-alumina as a support under specific reaction conditions corresponding to the kind of the support, thereby performing cracking and an isomerization reaction.

Claims

exact text as granted — not AI-modified
1 . A method for producing a hydrocarbon fuel oil, wherein wax generated by the Fischer-Tropsch synthesis and containing 50% or more by mass of normal paraffin having 7 to 100 carbon number is cracked and isomerized at a gasification rate of less than 10% by mass to an isoparaffin ratio in a fraction with 9 to 21 carbon number of 70% or more by mass, using a catalyst in which at least one kind of platinum group metal is contained on a support comprising zeolite as a main component in an amount of 0.01 to 10% by mass, in terms of metal, on a catalyst basis, at a hydrogen partial pressure of 2 to 20 MPa, at a temperature of 200 to 320° C., at a liquid hourly space velocity of 0.1 to 2 h −1  and at a hydrogen/oil ratio of 100 to 2000 L/L. 
     
     
         2 . A method for producing a hydrocarbon fuel oil, wherein wax generated by the Fischer-Tropsch synthesis and containing 50% or more by mass of normal paraffin having 7 to 100 carbon number is cracked and isomerized at a gasification rate of less than 10% by mass to an isoparaffin ratio in a fraction with 9 to 21 carbon number of 70% or more by mass, using a catalyst in which at least one kind of platinum group metal is contained on a support comprising silica-alumina as a main component in an amount of 0.01 to 10% by mass in terms of metal on a catalyst basis, at a hydrogen partial pressure of 2 to 20 MPa, at a temperature of 350 to 400° C., at a liquid hourly space velocity of 0.1 to 2 h −1  and at a hydrogen/oil ratio of 100 to 2000 L/L.

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