Vapor-liquid contacting apparatus and process with offset contacting modules
A high capacity and high efficiency co-current and cross-flow vapor-liquid contacting apparatus and process is useful in distillation columns and other vapor-liquid contacting processes. The apparatus is characterized by an arrangement of offset contacting modules in horizontal stages. The modules define a co-current contacting volume and in an exemplary configuration the modules include a liquid distributor and a demister. Half modules comprise downcomers against the shell of the vessel for transporting liquid to the subjacent stage.
1. An apparatus for performing vapor-liquid contacting, comprising:
a vessel having a plurality of stages, each stage having a contacting module;
each contacting module comprising a liquid distributor having an outlet proximate to a contacting volume and a demister having an inlet surface proximate to the contacting volume; and
a deck in each stage, said deck inferior to an outlet surface of said demister, and wherein contacting modules on adjacent stages are horizontally offset, wherein said deck comprises perforations directly inferior to the outlet surface of said demister;
wherein said deck is a transport deck configured to receive liquid from the outlet surface of said demister and wherein the perforations are configured to allow vapor to rise therethrough and contact the liquid on the deck.
2. The apparatus of claim 1 further comprising a half module which shares a wall with a shell of the vessel.
3. The apparatus of claim 1 wherein one of the plurality of stages comprises a full contacting module, wherein the liquid distributor is disposed between two demisters.
4. The apparatus of claim 3 further comprising a receiving deck inferior to said two demisters and a half module inferior to said receiving deck.
5. The apparatus of claim 2 further comprising a transport deck inferior to said half module and a contact module inferior to said transport deck.
6. The apparatus of claim 5 wherein said half module comprises a downcomer comprising an outlet in said downcomer proximate to a contacting volume, and a demister having an inlet surface proximate to the contacting volume and an outlet surface superior to said transport deck.
7. The apparatus of claim 1 wherein contacting modules in every other stage are vertically aligned.
8. The apparatus of claim 1 further comprising a weir adjacent to the liquid distributor, said weir extending above a base of the deck for holding up liquid on the deck.
9. The apparatus of claim 1 further comprising at least one of:
a processor;
a memory storing computer-executable instructions;
a monitoring component positioned at a location to sense at least one parameter; and
a receiver configured to receive data from the monitoring component.
10. An apparatus for performing vapor-liquid contacting, comprising:
a vessel comprising a plurality of stages, each stage having a contacting module and a deck;
each contacting module comprising a liquid distributor having an outlet proximate to a contacting volume and a demister, said demister having an inlet surface proximate to the contacting volume and an outlet surface superior to said deck; and
a downcomer inferior to said deck, wherein said deck comprises perforations directly inferior to the outlet surface of said demister;
wherein said deck is a transport deck configured to receive liquid from the outlet surface of said demister and wherein the perforations are configured to allow vapor to rise therethrough and contact the liquid on the deck.
11. The apparatus of claim 10 wherein a half contacting module comprises said downcomer, said downcomer having an outlet proximate to a contacting volume, and a demister having an inlet surface proximate to the contacting volume and an outlet surface superior to a transport deck, wherein said downcomer shares a wall with a shell of the vessel.
12. The apparatus of claim 11 comprising a further liquid distributor inferior to said transport deck.