Bayonet catalytic reactor
A bayonet reactor including a catalytic reactor in the form of an annular structured packing is provided with increased surface area for the transfer of heat between annulus gas and return gas, an increased coefficient of heat transfer between the annulus and return gases, and a reduced overall pressure drop relative to conventional reactors. The reactors of the present technology can enable intensified catalytic processing.
1. A bayonet catalytic reactor comprising:
an outer tube having an open first end and a closed second end;
an inner tube disposed at least partially within the outer tube, the inner tube having an open first end and an open second end; and
a catalytic reactor comprising a structured packing disposed within an annulus defined by an inner diameter of the outer tube and an outer diameter of the inner tube,
wherein the outer diameter of the inner tube is at least 0.45 times the inner diameter of the outer tube,
wherein the second ends of the outer tube and the inner tube are disposed within a furnace, and wherein the first ends of the outer tube and the inner tube are disposed outside the furnace.
2. The bayonet catalytic reactor of claim 1 , wherein the outer diameter of the inner tube is at least 0.63 times the inner diameter of the outer tube.
3. The bayonet catalytic reactor of claim 1 , wherein the outer diameter of the inner tube is at least 0.77 times the inner diameter of the outer tube.
4. The bayonet catalytic reactor of claim 1 , further comprising a second catalytic reactor disposed within the inner tube proximate the second end of the inner tube.
5. The bayonet catalytic reactor of claim 4 , wherein the second catalytic reactor is a structured reactor comprising a honeycomb catalytic reactor.
6. The bayonet catalytic reactor of claim 4 , wherein the second catalytic reactor extends from the second end of the inner tube toward the first end of the inner tube to a distance less than 50% of the distance from the second end of the inner tube to the first end of the inner tube.
7. The bayonet catalytic reactor of claim 1 , wherein the bayonet catalytic reactor is a steam reforming reactor.
8. The bayonet catalytic reactor of claim 1 , further comprising insulation disposed within the inner tube, the insulation configured to impede heat transfer between gas flowing through the annulus and gas flowing through the inner tube.
9. A bayonet catalytic reactor comprising:
an outer tube having an open first and end a closed second end;
an inner tube disposed at least partially within the outer tube, the inner tube having an open first end and an open second end;
a catalytic reactor comprising a structured packing disposed within a first annulus defined by an inner diameter of the outer tube and an outer diameter of the inner tube;
a device disposed within the inner tube, the device configured to enhance heat transfer between the inner tube and a fluid flowing within the inner tube; and
a third tube having a blockage therein preventing fluid flow through the third tube, wherein a second annulus is defined by an inner diameter of the inner tube and an outer diameter of the third tube.
10. The bayonet catalytic reactor of claim 9 , wherein the second annulus has a cross sectional area less than 0.6 times a cross-sectional area of the first annulus.
11. The bayonet catalytic reactor of claim 9 , wherein the second annulus has a cross sectional area less than 0.15 times a cross-sectional area of the first annulus.
12. The bayonet catalytic reactor of claim 9 , wherein the second ends of the outer tube and the inner tube are disposed within a furnace, and wherein the first ends of the outer tube and the inner tube are disposed outside the furnace.
13. The bayonet catalytic reactor of claim 9 , wherein the device extends from the first end of the inner tube toward the second end of the inner tube to a distance less than 90% of the distance from the first end of the inner tube to the second end of the inner tube.
14. The bayonet catalytic reactor of claim 9 , wherein the device extends from the first end of the inner tube toward the second end of the inner tube to a distance less than 70% of the distance from the first end of the inner tube to the second end of the inner tube.
15. The bayonet catalytic reactor of claim 9 , further comprising a second catalytic reactor disposed within the inner tube proximate the second end of the inner tube.
16. The bayonet catalytic reactor of claim 15 , wherein the second catalytic reactor is a structured reactor comprising a honeycomb catalytic reactor.
17. The bayonet catalytic reactor of claim 15 , wherein the second catalytic reactor extends from the second end of the inner tube toward the first end of the inner tube to a distance less than 50% of the distance from the second end of the inner tube to the first end of the inner tube.
18. The bayonet catalytic reactor of claim 9 , wherein the reactor is a steam reforming reactor.
19. The bayonet catalytic reactor of claim 9 , further comprising insulation disposed within the inner tube, the insulation configured to impede heat transfer between gas flowing through the first annulus and gas flowing through the inner tube.
20. A bayonet catalytic reactor comprising:
an outer tube having an open first and end a closed second end;
an inner tube disposed at least partially within the outer tube, the inner tube having an open first end and an open second end;
a catalytic reactor comprising a structured packing disposed within a first annulus defined by an inner diameter of the outer tube and an outer diameter of the inner tube; and
a device disposed within the inner tube, the device configured to enhance heat transfer between the inner tube and a fluid flowing within the inner tube;
wherein the second ends of the outer tube and the inner tube are disposed within a furnace, and wherein the first ends of the outer tube and the inner tube are disposed outside the furnace.