DIVIDING WALL COLUMN IN ALKYLATION PROCESS FOR REACTOR RECYCLE AND PRODUCT SEPARATION
20210188737 · 2021-06-24
Assignee
Inventors
Cpc classification
B01D3/141
PERFORMING OPERATIONS; TRANSPORTING
B01D3/007
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A dividing wall column is used in an alkylation process flow scheme to fractionate an alkylate reactor effluent to produce an iso-butane-rich stream as a recycle feed for the alkylation reactor while also separating iso-butane, normal butane and alkylate as separate product streams depending on the reactor effluent composition. In an optional embodiment, the scheme may contain propane.
Claims
5. The alkylation system of claim 4 where the overhead iso-butane-rich stream (42) is a recycle stream (26) to the alkylation reaction/regeneration section (10).
6. The alkylation system of claim 4 where the alkylate product stream (22) is routed to a battery limit after preheating the alkylate reactor effluent (14) in a heat exchanger (60) prior to being fed to the DWC (16).
7. The alkylation system of claim 4 further comprising an intermediate reboiler (48) in a bottom section (50) of the DWC (32).
8. The alkylation system of claim 7 where the alkylate product (46) is a heating medium in the intermediate reboiler (48) before it preheats the alkylate reactor effluent (30).
9. The alkylation system of claim 4 where the make-up iso-butane (24) is at least a portion of the iso-butane product (28) and the make-up iso-butane (24) is routed to the olefin feed (12) upstream of the alkylation reaction/regeneration section (10) to form a mixture.
10. The alkylation system of claim 9 in the absence of a fractionation section of the alkylation reaction/regeneration section (10), configured to fractionating the mixture.
11. The alkylation system of any one of claim 1, 2, or 3 where: the alkylate reactor effluent (30) containing propane is a feed to a pre-fractionator section (34) of the DWC (32); the DWC (32) has an overhead product (53) containing propane routed to a depropanizer column (54); the DWC (32) has an iso-butane-rich stream that is the iso-butane product stream is a first side draw product (56), taken from a main-fractionator section (36) of the DWC (32); where the iso-butane product stream (26) is recycled to the alkylation reaction/regeneration section (10); the DWC (32) has a n-butane-rich stream (58) that is the n-butane product stream (20) is a second side draw product (58), taken from a main-fractionator section (36) of the DWC (32) or the bottoms section (50) of the DWC (32); where the second side draw product (58) is selected from the group consisting of vapor, liquid, or a combination thereof; and the DWC (32) has a bottoms product (46) that is the alkylate product stream (22).
12. The alkylation system of claim 11 where the alkylate product stream (46) is routed to a battery limit after preheating the alkylate reactor effluent (30) in a heat exchanger (60) prior to being fed to the DWC (32).
13. The alkylation system of claim 11 further comprising an intermediate reboiler (48) in a bottom section (50) of the DWC (32), and where the alkylate product stream (46) is a heating medium in the intermediate reboiler (48).
14. The alkylation system of claim 11 where the DWC (32) comprises a dividing wall panel (28) starting at or near the top of the column (32) and extending downward.
15. The alkylation system of claim 14 where: the alkylate reactor effluent (30) is fed to a top tray of the pre-fractionation section (60) of the DWC (62); the DWC (62) comprises an overhead condenser (72) configured to condense vapors from the pre-fractionation section (68) and the main fractionation section (70); and a reflux stream (74) from the overhead condenser (72) is fed to a top tray of the main fractionation section (70).
16. The alkylation system of claim 14 where a propane-rich stream is taken as a side draw (76) from the main-fractionation section (70).
17. The alkylation system of claim 14 where an iso-butane-rich stream (78) is withdrawn from the main fractionation section (70) and recycled to the alkylation reaction/regeneration section (10).
18. The alkylation system of claim 14 where a third side draw is a n-butane-rich stream (80) taken from a point selected from the group consisting of the main fractionation section (70) and a bottom section (82) of the DWC (62).
19. The alkylation system of claim 18 where the third side draw that is a n-butane-rich stream (80) is selected from the group consisting of vapor, liquid, and a combination thereof.
20. The alkylation system of claim 14 where the alkylate product stream (46) is routed to a battery limit after preheating the alkylate reactor effluent (30) in a heat exchanger (60) prior to being fed to the DWC (62).
21. The alkylation system of claim 14 further comprising an intermediate reboiler (48) in a bottom section of the DWC (62), and where the alkylate product stream (46) is a heating medium in the intermediate reboiler (48).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0006]
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[0010]
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DETAILED DESCRIPTION
[0012]
[0013] More specifically as shown in
[0014] While
[0015]
[0016]
[0017]
[0018] In another non-limiting embodiment,
[0019]
[0020] The alkylate reactor effluent 30 is fed to the top tray (not shown) of the pre-fractionation section 68 of the dividing wall column 62. Vapors from the pre-fractionation section 68 and the main-fractionation section 70 are condensed in the overhead system 72 (alkylate product separator overhead condenser) and a reflux stream 74 from the overhead condenser 72 is fed to the top tray (not shown) of the main fractionation section 70 of the DWC 62. A propane rich stream 76 can be taken as a side draw from the main fractionation section 70 of the DWC 62. In one non-limiting embodiment, this propane and isobutane stream 76 is sent to a depropanizer (not shown). An iso-butane rich stream 78 can be withdrawn from the main-fractionation section 70 of the DWC 62 and sent back to the alkylate reactor 10 as a recycle stream. The second side draw product 78 can be taken as a vapor or liquid draw as per the heat integration requirement of the system. A normal-butane rich stream 80 as a third side draw product can also be taken from the main fractionator side 70 of the DWC 62 or the bottom section 82 of the dividing wall column 62. The third side draw product 80 can be taken as a vapor or liquid draw as per the heat integration requirement of the system. The alkylate product 46 is taken from the bottom section 82 of the DWC 62 and routed to the battery limit after heat exchange in the feed/effluent heat exchanger 60 to preheat the column feed 30. As shown in
[0021] It will be appreciated that the system and process described herein is not limited to any particular temperature ranges, pressure ranges, flow rates, stream compositions, and the like. It is expected that the system and process, now that it is described, can be modified by one of ordinary skill in the art to be applicable to a variety of reactor effluent compositions and other conditions and parameters as necessary.
[0022] It will be appreciated that the DWC can be a tray column, a packed column, or a combination of both.
[0023] It will also be appreciated that the systems and processes described herein will have a number of technical and commercial advantages. Technical advantages include, but are not necessarily limited to: [0024] Improvement of fractionation efficiency; [0025] Reduced utility requirements; [0026] Reduced overall energy requirements; [0027] Reduced CO.sub.2/NOx emissions; [0028] Enhanced plant safety due to less hydrocarbon Inventory; and [0029] Reduced iso-butane loss from the system.
[0030] Commercial advantages include, but are not necessarily limited to: [0031] 20-30% less capital requirement as compared to the conventional column solutions; [0032] Improvement in fractionation economics; [0033] Less plot space (equipment footprint) requirement; [0034] Advantages for plant upgrading/debottlenecking; [0035] Overall improvement in the value of products; and [0036] Alternative use of existing assets to improve the overall economics of the plant.
[0037] In the foregoing specification, the invention has been described with reference to specific embodiments thereof. However, the specification is to be regarded in an illustrative rather than a restrictive sense. For example, equipment, columns, DWCs, processes, reactants, olefins, isoparaffins, products, alkylates, and operating conditions falling within the claimed or disclosed parameters, but not specifically identified or tried in a particular example, are expected to be within the scope of this invention.
[0038] The present invention may be practiced in the absence of an ele-ment not disclosed. In addition, the present invention may suitably comprise, consist or consist essentially of the elements disclosed. For instance, there may be provided an alkylation system, where the alkylation system consists essentially of or consists of an alkylation reaction/regeneration section that receives feed comprising olefin and make-up iso-butane, which alkylation reaction/regeneration section delivers alkylate reactor effluent to a dividing wall column (DWC) that also receives make-up iso-butane, where the DWC separates the alkylate reactor effluent into product streams comprising, consisting essentially of, or consisting of an iso-butane product stream, a n-butane product stream, and an alkylate product stream.
[0039] The words “comprising” and “comprises” as used throughout the claims, are to be interpreted to mean “including but not limited to” and “includes but not limited to”, respectively.
[0040] As used herein, the word “substantially” shall mean “being largely but not wholly that which is specified.”
[0041] As used herein, the singular forms “a,” “an,” and “the” are intended to include the plural forms as well, unless the context clearly indicates otherwise.
[0042] As used herein, the term “about” in reference to a given parameter is inclusive of the stated value and has the meaning dictated by the context (e.g., it includes the degree of error associated with measurement of the given parameter).
[0043] As used herein, the term “and/or” includes any and all combina-tions of one or more of the associated listed items. [0044] the DWC (16) has a side draw product that is a n-butane-rich stream (44) that is the n-butane product stream (20); and [0045] the DWC (16) has a bottoms product (46) that is the alkylate product stream (22).