Process for separating hydrogen from an olefin hydrocarbon effluent vapor stream
One or more specific embodiments disclosed herein includes a method for separating hydrogen from an olefin hydrocarbon rich compressed effluent vapor stream, employing a integrated heat exchanger, multiple gas-liquid separators, external refrigeration systems, and a rectifier attached to a liquid product drum.
1 . A deethanizer system for separating ethane and other components from a liquid mixture comprising propylene and propane hydrocarbon components as well as ethane and lighter components, comprising:
a stripper column section comprising:
a stripper column, wherein the stripper column comprises a top stage and a bottom stage, and further wherein the stripper column receives a liquid mixture; and
a stripper column condenser, wherein the stripper column condenser is connected to the stripper column and a first heat exchanger, wherein the first heat exchanger transfers a fresh feed (propane) liquid stream to a first control valve, wherein the first control valve transfers a first mixed vapor/liquid stream to the stripper column condenser; and
a rectifier column section comprising:
a rectifier column, wherein the rectifier column is connected to the stripper column condenser, and further wherein the rectifier column transfers an overhead vapor stream to an integrated main heat exchanger;
a rectifier column reflux drum, wherein the rectifier column reflux drum is connected to the integrated main heat exchanger, and further wherein rectifier column reflux drum receives a second mixed vapor/liquid stream from the integrated main heat exchanger;
a rectifier column reflux pump, wherein the rectifier column reflux pump is connected to the rectifier column reflux drum and rectifier column; and
a pressure control valve, wherein the pressure control valve is connected to the rectifier column reflux drum;
wherein, the deethanizer system is connected to a propylene/propane splitter system wherein the bottom stage of the stripper column discharges a hydrocarbon stream, wherein the hydrocarbon stream is split into a first stream, a second stream, and a third stream; wherein the first stream flows to a stripper column main reboiler, wherein the stripper column main reboiler vaporizes the first stream, and further wherein the stripper column main reboiler sends the vaporized first stream to the bottom stage of the stripper column; wherein the stripper column main reboiler provides a reboiler stream to the propylene/propane splitter system, and further wherein the propylene/propane splitter system provides a warmed gas stream to the stripper column main reboiler, and further wherein the warmed gas stream comprises a temperature between 45 degrees C. and 50 degrees C.; wherein the integrated main heat exchanger comprises a pass in the cold section of the integrated main heat exchanger, and further wherein the pass receives the overhead vapor stream from the rectifier column, and further wherein the pass transfers the second mixed vapor/liquid stream to the rectifier column reflux drum.
2 . The deethanizer system of claim 1 , wherein the rectifier column reflux drum transfers a rectifier liquid stream back to the rectifier column.
3 . The deethanizer system of claim 2 , wherein the rectifier column reflux drum transfers the rectifier liquid stream back to the rectifier column through the rectifier column reflux pump.
4 . The deethanizer system of claim 3 , wherein the rectifier column reflux drum transfers the rectifier liquid stream to the rectifier column reflux pump.
5 . The deethanizer system of claim 4 , wherein the rectifier column reflux pump transfers the rectifier liquid stream to the rectifier column.
6 . The deethanizer system of claim 1 , wherein the first heat exchanger discharges a discharge vapor stream, and further wherein the first heat exchanger receives a side fresh feed stream and a fresh feed vapor stream.
7 . The deethanizer system of claim 6 , wherein the first heat exchanger reduces the temperature of the side fresh feed stream.
8 . The deethanizer system of claim 1 , wherein the stripper column condenser is cooled by the side fresh feed stream, wherein the side fresh feed stream comprises a temperature of between −10 degrees C. and 5 degrees C.
9 . The deethanizer system of claim 1 , wherein the second stream flows to a stripper column supplemental reboiler, wherein the stripper column supplemental reboiler vaporizes the second stream by employing a lower temperature heating source stream with a temperature of between 35 degrees C. and 50 degrees C., and further wherein the stripper column supplemental reboiler sends the vaporized second stream to the bottom stage of the stripper column.
10 . The deethanizer system of claim 1 , wherein the third stream flows to a pressure control valve.
11 . The deethanizer system of claim 10 , wherein the third stream flows from the pressure control valve to the propylene/propane splitter system.
12 . The deethanizer system of claim 1 , wherein the system operates at a pressure range between 850 kPa·G and 1150 kPa·G.
13 . The deethanizer system of claim 1 , wherein the rectifier column discharges a reflux stream.
14 . The deethanizer system of claim 1 , wherein the rectifier column reflux drum transfers a rectifier vapor stream to the pressure control valve.