Claims
- 1. A process for reaction and separation comprising:
(a) introducing a first component into at least one column in a first zone of a plurality of zones, wherein each said zone comprises one or more columns containing an ion-exchange media, each said column having at least one inlet and one outlet and being moveably connected serially or parallel to a proceeding column or an external stream to simulate a media flow and being operable in an up-flow or down-flow mode, and at least one said column being operable independently of at least one other column; (b) directing said first component from said first zone in the direction or counter direction of said media and into another column of said first zone or a second zone, wherein said first component comprises at least one of a reactant, eluent or a combination thereof; (c) at least one of reacting or separating said first component to prepare a second component, wherein said second component comprises one of the group consisting of product, extract, raffinate, unconverted first component and combinations thereof; and (d) extracting said second component from one or more columns thereof.
- 2. A process for reaction and separation using a liquid-solid contacting apparatus which comprises:
(a) inputting a process material into at least one column of a plurality of columns packed with media, each said column having at least one inlet for accepting a flow of said process material from another column or group of columns, an external feed stream, an external eluent stream or a combination thereof, and at least one outlet for connecting to another column, a group of columns, an external product stream or a combination thereof; each said column being independently operable in an up-flow or down-flow mode and connected independently to one of the group comprising another column, an external feed stream, an external eluent stream, an external product stream and combinations thereof; (b) reacting and separating said process material in one or more said columns; and (c) extracting material therefrom.
- 3. In a process using a liquid-solid contacting apparatus having a plurality of packed columns, each of which has a supply conduit and a discharge conduit adapted for connection to a disk having a plurality of ports for connection being associated with supply and discharge conduits, said columns or said disk being mounted for rotation about an axis so that by rotation said conduits and said ports in the disk are alignable for direct flow communication therebetween such that, a plurality of supply and discharge conduits communicate with associated other supply and discharge conduits of the columns, and by synchronizing rotation of at least the columns and the disk, the improvement therein comprising flowing a process material through each of said columns to react and separate said flow material.
- 4. In a process using a liquid-solid contacting apparatus having a multiport rotary valve for directing fluid streams comprising:
(a) a first head having opposed surfaces, comprising at least two first ports located on the same surface for connection with an external fluid stream, and having a separate channel associated with each first port leading to a second port corresponding to the first port and located on the surface opposite the first port; (b) a rotatable second head having at least two third ports each in communication with a separate second port and channel and located on a surface in contact with the surface of the first head containing the second ports, said third ports leading to an inlet or outlet of a chamber containing a fluid-solid contacting medium so as to form a fluid seal between the chamber and an external fluid stream; and (c) a drive for rotating at least one of said heads to interconnect a selected external fluid stream with a selected chamber for a predetermined period of time before permitting interconnection of said external fluid stream with a different chamber; and (d) the ports being configurable to permit said external fluid streams to be delivered to multiple or successive chambers in series or in parallel or to bypass a selected chamber simultaneous with the delivery of other external fluid streams; the improvement therein comprising flowing a process material through said chambers to react and separate said flow material.
- 5. A process for conducting reaction and separation in a material process flow as set forth in claims 1, 2, 3 or 4, wherein said columns are configured to provide at least one reverse flow.
- 6. A process for conducting reaction and separation in a material flow as set forth in claims 1, 2, 3 or 4, wherein at least two said columns are connected to said flow therein in parallel to provide a parallel flow configuration.
- 7. A process for conducting reaction and separation in a material flow as set forth in claims 1, 2, 3 or 4, having a separation/reaction process zone, wherein one or multiple columns are connected together to provide a separate reaction zone inside of said separation/reaction process zone.
- 8. A process for conducting reaction and separation in a material flow as set forth in claims 1, 2, 3 or 4, having a separation/reaction process zone, wherein one or multiple columns are connected together in a zone within said unit but outside of said separation/reaction process zone.
- 9. A process for conducting a reaction and separation in a material flow as set forth in claims 1, 2, 3 or 4, having a separation/reaction process zone, wherein one or more said columns are connected to provide a flow pattern selected from the group consisting of: reverse flow, parallel flow, a separated reaction zone inside of a separation/reaction process zone, separated reaction zone in a zone within said unit but outside of said separation/reaction process zone, and a combination of any one or more of these configurations.
- 10. A process as set forth in claim 5 wherein said process flow contains solids or forms solids in the course of the process.
- 11. A process as set forth in claim 10 wherein said solids are removed from the top of at least one column, said removal being either continuously or intermittently.
- 12. A process as set forth in a claim 1 wherein said columns are moveably connected serially or parallel to a proceeding column or an external stream to simulate a media flow by rotating to from one to the next.
- 13. A process as set forth in a claim 1, 2, 3 or 4 for the production of bisphenol-A.
- 14. A process as set forth in claim 13, wherein at least two said columns are connected in parallel to columns connected in series configuration, said parallel columns having a fluid flow direction opposite to said media flow or toward the top of said parallel column.
- 14. A process as set forth in claim 13, wherein said process material is acetone and an eluent is phenol.
CROSS REFERENCE
[0001] This application is a continuation-in-part of copending U.S. patent application Ser. No. 10/207,585 (Attorney Docket Number 02-254) filed on Jul. 29, 2002 and a continuation-in-part of copending U.S. patent application Ser. No. 10/213,580 (Attorney Docket Number 02-254 CIP) filed on Aug. 6, 2002.
Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
10207585 |
Jul 2002 |
US |
Child |
10412502 |
Apr 2003 |
US |
Parent |
10213580 |
Aug 2002 |
US |
Child |
10412502 |
Apr 2003 |
US |