EP0343382A1

Method for the production of bis-phenols.

Abstract

A process which comprises (a) contacting an excess of a phenol with a ketone in the presence of an acidic ion exchange resin cata­lyst;(b) recovering thereafter a stream from the acidic ion exchange resin catalyst including the dihydric phenol, unreacted phenol, isomers of the desired di­hydric phenol and acid impurities derived from the acidic ion exchange resin catalyst;(c) removing a major portion of the desired di­hydric phenol from the stream of (b);(d) separating the stream including phenol, a small portion of the desired dihydric phenol, isomers of the desired dihydric phenol, and acidic impurities derived from the acidic ion exchange resin catalyst into a major stream and a minor stream by volume;(e) recycling the major stream so as to contact the acidic ion exchange resin catalyst of (a) together with new phenol and ketone so as to maintain a balance between the color of the final desired dihydric phenol product and impurities found therein;(f) recovering from the small stream desirable dihydric phenol, and(g) introducing into the minor stream created at step (d) sufficient quantities of a Group II a metal or transition metal of oxidation number +2 carbonate to effectively neutralize the acidic impurities derived from the acidic ion exchange resin catalyst.

EP0343382A1, drawing sheet 1
Sheet 1 of 1

Term

Term ended

Projected expiry passed 21 April 2009, 17.4 years ago.

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14 claims: 3 independent, 11 dependent

  1. 1
    A process which comprises (a) contacting an excess of a phenol with a ketone in the presence of an acidic ion exchange resin cata­lyst;(b) recovering thereafter a stream from the acidic ion exchange resin catalyst including the dihydric phenol, unreacted phenol, isomers of the desired di­hydric phenol and acid impurities derived from the acidic ion exchange resin catalyst;(c) removing a major portion of the desired di­hydric phenol from the stream of (b);(d) separating the stream including phenol, a small portion of the desired dihydric phenol, isomers of the desired dihydric phenol, and acidic impurities derived from the acidic ion exchange resin catalyst into a major stream and a minor stream by volume;(e) recycling the major stream so as to contact the acidic ion exchange resin catalyst of (a) together with new phenol and ketone so as to maintain a balance between the color of the final desired dihydric phenol product and impurities found therein;(f) recovering from the small stream desirable dihydric phenol, and (g) introducing into the minor stream created at step (d) sufficient quantities of a Group II a metal or transition metal of oxidation number +2 carbonate to effectively neutralize the acidic impurities derived from the acidic ion exchange resin catalyst.
  2. 2
    The process in accordance with claim 1 wherein the phenol is phenol.
  3. 3
    The process in accordance with claim 1 wherein the ketone is acetone.
  4. 4
    The process in accordance with claim 2 wherein the ketone is acetone, the desired product being bis­phenol-A.
  5. 5
    The process in acordance with claim 1 wherein the cation is selected from the group consisting of magnesium, calcium, barium, manganese, cobalt, nickel, copper and zinc.
  6. 6
    The process in accordance with claim 5 wherein the cation is zine, manganese, magnesium, calcium and barium.
  7. 7
    The process in accordance with claim 6 wherein the cation is barium.
  8. 8
    In a process for preparing a dihydric phenol from the reaction of a phenol and a ketone in the presence of an acidic ion exchange resin catalyst, the improvement comprising the addition to the process of sufficient quantities of a Group II-a metal or transi­tion metal of oxidation number +2 carbonate to a minor portion of the split process stream created after the removal from the stream of a major quantity of the desired dihydric phenol to effectively neutralize acidic impurities provided from the acidic ion exchange resin catalyst, said impurities carried with the desired dihydric phenol in the downstream processing steps from the catalyst.
  9. 9
    The process in accordance with claim 8 wherein the phenol is phenol.
  10. 10
    The process in accordance with claim 8 wherein the ketone is acetone.
  11. 11
    The process in accordance with claim 9 wherein the ketone is actone, the desired product being bis­phenol-A.
  12. 12
    The process in accordance with claim 8 wherein the cation is selected from the group consisting of magnesium, calcium, barium, manganese, cobalt, nickel, copper and zinc.
  13. 13
    The process in accordance with claim 12 where­in the cation is zine, manganese, magnesium, calcium and barium.
  14. 14
    The process in accordance with claim 13 where­in the cation is barium.