Membrane-based separation processes enhanced with an absorption device
A salt ion membrane may be paired with an absorption device to provide advantaged separation processes comprising: introducing a first aqueous salt stream and a mixed feed stream comprising at least one olefin and at least one paraffin to a salt ion membrane under conditions effective to form at least two phases; obtaining an olefin-rich permeate stream and an olefin-lean retentate stream from the salt ion membrane, in which the olefin-rich permeate stream and/or the olefin-lean retentate stream further comprises a salt ion membrane aqueous salt phase; introducing at least a portion of the olefin-lean retentate stream and a second aqueous salt stream to an absorption device under conditions effective to promote olefin extraction; obtaining an olefin-rich aqueous salt stream from the absorption device; and providing at least a portion of the olefin-rich aqueous salt stream as at least a portion of the first aqueous salt stream.
1 . A process comprising:
providing a mixed feed stream comprising at least one olefin and at least one paraffin;
introducing at least a first portion of the mixed feed stream and a first aqueous salt stream to a salt ion membrane under conditions effective to form at least two phases while contacting the salt ion membrane;
wherein the salt ion membrane is more permeable to olefins than to paraffins;
obtaining an olefin-rich permeate stream and an olefin-lean retentate stream from the salt ion membrane, the olefin-lean retentate stream comprising at least a portion of the at least one olefin from the mixed feed stream;
wherein at least one of the olefin-rich permeate stream and the olefin-lean retentate stream further comprises a salt ion membrane aqueous salt phase;
introducing at least a portion of the olefin-lean retentate stream and a second aqueous salt stream to an absorption device under conditions effective to promote olefin extraction into the second aqueous salt stream;
obtaining from the absorption device an olefin-rich aqueous salt stream comprising at least a portion of the at least one olefin from the olefin-lean retentate stream, and an olefin-lean hydrocarbon stream comprising at least a portion of the at least one paraffin from the mixed feed stream; and
providing at least a portion of the olefin-rich aqueous salt stream as at least a portion of the first aqueous salt stream.
2 . The process of claim 1 , wherein the second aqueous salt stream comprises at least a portion of the salt ion membrane aqueous salt phase, the salt ion membrane aqueous salt phase being separated from the olefin-rich permeate stream and/or the olefin-lean retentate stream before being provided as the at least a portion of the second aqueous salt stream.
3 . The process of claim 2 , wherein a makeup stream comprising an aqueous salt solution or water is supplied as at least a portion of the second aqueous salt stream.
4 . The process of claim 2 , wherein the olefin-rich permeate stream further comprises at least a portion of the salt ion membrane aqueous salt phase, and at least a portion of the second aqueous salt stream is obtained from the salt ion membrane aqueous salt phase comprising the olefin-rich permeate stream.
5 . The process of claim 2 , wherein the olefin-lean retentate stream comprises at least a portion of the salt ion membrane aqueous salt phase, and at least a portion of the second aqueous salt stream is obtained from the salt ion membrane aqueous salt phase comprising the olefin-lean retentate stream.
6 . The process of claim 2 , wherein a first portion of the salt ion membrane aqueous salt phase is diverted away from a second portion of the salt ion membrane aqueous salt phase being provided to the absorption device.
7 . The process of claim 1 , wherein the second aqueous salt stream has a lower olefin concentration than does the first aqueous salt stream.
8 . The process of claim 7 , wherein the second aqueous salt stream comprises at least a portion of the salt ion membrane aqueous salt phase, the salt ion membrane aqueous salt phase being separated from the olefin-rich permeate stream and/or the olefin-lean retentate stream before being provided as the at least a portion of the second aqueous salt stream, and the process further comprising:
performing a conditioning operation upon at least a portion of the salt ion membrane aqueous salt phase to produce the lower olefin concentration.
9 . The process of claim 8 , wherein the conditioning operation comprises at least one action performed on the salt ion membrane aqueous salt phase selected from the group consisting of a temperature change, a pressure change, a phase separation, and any combination thereof.
10 . The process of claim 8 , wherein the conditioning operation comprises at least phase separation of the salt ion membrane aqueous salt phase from a conditioned hydrocarbon-rich stream comprising one or more olefins.
11 . The process of claim 10 , further comprising:
introducing at least a portion of the conditioned hydrocarbon-rich stream to the salt ion membrane.
12 . The process of claim 10 , wherein the salt ion membrane aqueous salt phase is separated from the conditioned hydrocarbon-rich stream as a hydrocarbon-lean stream, and at least a portion of the hydrocarbon-lean stream is provided to the absorption device as at least a portion of the second aqueous salt stream.
13 . The process of claim 10 , wherein the conditioning operation comprises changing a temperature of the salt ion membrane aqueous salt phase at least once.
14 . The process of claim 13 , wherein changing the temperature of the salt ion membrane aqueous salt phase at least once comprises:
raising the temperature of the salt ion membrane aqueous salt phase from a first temperature to a second temperature to lower an olefin absorption capacity thereof;
after raising the temperature of the salt ion membrane aqueous salt phase to the second temperature, performing phase separation to separate the conditioned hydrocarbon-rich stream from the salt ion membrane aqueous salt phase; and
after separating the conditioned hydrocarbon-rich stream from the salt ion membrane aqueous salt phase, lowering the temperature of the salt ion membrane aqueous salt phase from the second temperature to a third temperature to at least partially restore the olefin absorption capacity.
15 . The process of claim 14 , further comprising:
performing a first phase separation prior to raising the temperature and separating a first conditioned hydrocarbon-rich stream comprising one or more olefins from the salt ion membrane aqueous salt phase.
16 . The process of claim 15 , further comprising:
performing phase separation upon the olefin-lean retentate stream and separating an olefin-lean hydrocarbon-rich stream from the salt ion membrane aqueous salt phase prior to raising the temperature of the salt ion membrane aqueous salt phase; and
introducing at least a portion of the olefin-lean hydrocarbon rich stream to the absorption device.
17 . The process of claim 9 , further comprising:
raising pressure of the salt ion membrane aqueous salt phase prior to providing the salt ion membrane aqueous salt phase as at least a portion of the second aqueous salt stream.
18 . The process of claim 1 , further comprising:
introducing at least a second portion of the mixed feed stream to the absorption device.
19 . The process of claim 1 , wherein the first and second aqueous salt streams comprise a silver (I) salt, a copper (I) salt, or any combination thereof.
20 . The process of claim 1 , wherein the salt ion membrane and the first and second aqueous salt streams each comprise one or more metal salts that are the same.
21 . The process of claim 1 , wherein one or more olefins are obtained from the olefin-rich permeate stream at a purity of at least about 95 wt %, based on total hydrocarbons in the olefin-rich permeate stream.
22 . The process of claim 1 , wherein the olefin-rich permeate stream contains at least about 95 wt % of the one or more olefins in the mixed feed stream, based on total olefins in the mixed feed stream.
23 . The process of claim 1 , wherein an equal number of the salt ion membrane and the absorption device are present.
24 . The process of claim 1 , wherein the absorption device is selected from the group consisting of an absorption column, a rotating packed bed, and a compact contacting unit.
25 . The process of claim 1 , wherein a retentate-side pressure of the salt ion membrane is at least about 1.5 bar greater than a permeate-side pressure of the salt ion membrane.
26 . The process of claim 1 , wherein a single salt ion membrane is used to promote separation of the mixed feed stream.
27 . The process of claim 1 , wherein a single absorption device is used to promote olefin extraction into the second aqueous salt stream.