Gas-to-liquids facility for fixed offshore hydrocarbon production platforms
View Patent ↗A GTL facility for a fixed offshore hydrocarbon production platform which comprises a deck attached to a base that is secured to the sea floor. The GTL facility comprises a syngas reactor for converting natural gas into syngas and a liquids production unit for converting the syngas into a hydrocarbon liquid. Furthermore, at least one of the syngas reactor and the liquids production unit comprises a catalyst which is constructed using PI micro-reactor technology. As a result, the GTL unit is sufficiently small to be located on the deck of the platform.
1. In combination with a fixed offshore hydrocarbon production platform which comprises a deck attached to a base that is secured to the sea floor, the improvement comprising a GTL facility for converting natural gas into a hydrocarbon liquid which comprises:
a syngas reactor for converting the natural gas into syngas; and
a liquids production unit for converting the syngas into the hydrocarbon liquid;
wherein at least one of the syngas reactor and the liquids production unit comprises a monolithic catalyst which includes a solid body, a plurality of discrete channels which extend through the body and comprise walls, and a catalytic material which is deposited on the walls;
wherein the monolithic catalyst camorises a cell density of between about 100 cells/in 2 and about 1000 cells/in 2 ;
wherein the GTL unit is sufficiently small to be located on the deck of the platform; and
wherein the gases flowing through the syngas reactor, or the gases and liquids flowing through the liquids production unit, flow through the channels in a flow regime which substantially eliminates back mixing.
2. A GTL facility for a fixed offshore hydrocarbon production platform which comprises a deck attached to a base that is secured to the sea floor, the GTL facility comprising:
a syngas reactor for converting natural gas from a subsea well into syngas; and
a liquids production unit for converting the syngas into a hydrocarbon liquid;
wherein at least one of the syngas reactor and the liquids production unit comprises a monolithic catalyst which includes a solid body, a plurality of discrete channels which extend through the body and comprise walls, and a catalytic material which is deposited on the walls; and
wherein the monolithic catalyst comprises a cell density of between about 100 cells/in 2 and about 1000 cells/in 2 ;
wherein the GTL unit is sufficiently small to be located on the deck of the platform; and
wherein the gases flowing through the syngas reactor, or the gases and liquids flowing through the liquids production unit, flow through the channels in a flow regime which substantially eliminates back mixing.
3. A GTL facility for a fixed offshore hydrocarbon production platform which comprises a deck attached to a base that is secured to the sea floor, the GTL facility comprising:
a syngas reactor for converting natural gas from a subsea well into syngas; and
a liquids production unit for converting the syngas into a hydrocarbon liquid;
wherein at least one of the syngas reactor and the liquids production unit comprises a monolithic catalyst which includes a solid body, a plurality of discrete channels which extend through the body and comprise walls, and a catalytic material which is deposited on the walls;
wherein the monolithic catalyst comprises a cell density of between about 100 cells/in 2 and about 1000 cells/in 2 ;
wherein the GTL unit is sufficiently small to be located on the deck of the platform; and
wherein the liquids production unit produces hydrogen which is used to generate heat for the conversion of natural gas into syngas in the syngas reactor.
4. The combination of claim 1 , wherein the monolithic catalyst comprises a crossflow design defining a series of first channels for the gases to flow through and a series of transverse second channels for a cooling medium to flow through, and wherein the second channels alternate vertically with the first channels.
5. The combination of claim 2 , wherein the monolithic catalyst comprises a crossflow design defining a series of first channels for the gases to flow through and a series of transverse second channels for a cooling medium to flow through, and wherein the second channels alternate vertically with the first channels.
6. The combination of claim 3 , wherein the monolithic catalyst comprises a crossflow design defining a series of first channels for the gases to flow through and a series of transverse second channels for a cooling medium to flow through, and wherein the second channels alternate vertically with the first channels.