Claims
- 1. A process of producing tetrabromobisphenol-A which comprises continuously or substantially continuously brominating bisphenol-A and/or underbrominated bisphenol-A in the presence of an excess of unreacted bromine over that required to form tetrabromobisphenol-A, the bromination being conducted in a reaction mass having a liquid phase into which the bisphenol-A and/or underbrominated bisphenol-A is/are being continuously or substantially continuously fed and from which tetrabromobisphenol-A is continuously or substantially continuously precipitating, and having in said liquid phase an amount of HBr which will protect the color of the tetrabromobisphenol-A precipitate from being adversely affected by said excess of unreacted bromine.
- 2. A process of claim 1 wherein it is bisphenol-A that is being continuously or substantially continuously fed into said liquid phase.
- 3. A process of claim 1 wherein it is at least one underbrominated bisphenol-A species that is being continuously or substantially continuously fed into said liquid phase.
- 4. A process of claim 1 wherein the bisphenol in the continuous or substantially continuous feed is bisphenol-A and underbrominated bisphenol-A.
- 5. A process of any of claims 1-4 wherein the tetrabromobisphenol-A precipitate has a purity of at least about 95 wt % and is present in an amount giving at least about a 90% yield based upon the amount of bisphenol-A and/or underbrominated bisphenol-A fed.
- 6. A process of any of claims 1-4 wherein the tetrabromobisphenol-A-containing precipitate has an APHA color of about 50 or less as determinable using a solution of 80 grams of the precipitate in 100 mL of acetone.
- 7. A process of any of claims 1-4 wherein the amount of HBr in the liquid phase of the reaction mass is, on a weight basis, from about 6 to about 50 times as much as the maximum amount of unreacted bromine that is expected to be in the liquid phase of the reaction mass.
- 8. A process of any of claims 1-4 wherein during at least a portion of the time said bromination is being conducted, the liquid phase of the reaction mass has a presence of unreacted bromine above about 20,000 ppm but not above about 80,000 ppm.
- 9. A process of any of claims 1-4 wherein the process is conducted as a batch process.
- 10. A process of any of claims 1-4 wherein the process is conducted as a continuous process, and wherein said precipitate is continuously or substantially continuously being removed from the reaction mass during the time the feed of bisphenol-A and/or underbrominated bisphenol-A is/are being carried out.
- 11. A process of any of claims 1-4 wherein said liquid phase is comprised of water and a water-miscible organic solvent.
- 12. A process of any of claims 1-4 wherein said liquid phase is comprised of water and a water-miscible alkanol.
- 13. A process of any of claims 1-4 wherein said liquid phase is comprised of water and methanol or ethanol.
- 14. A process of any of claims 1-4 wherein the temperature of the reaction mass during the bromination is in the range of about 30 to about 100° C.
- 15. A process of any of claims 1-4 wherein the temperature of the reaction mass during the bromination is in the range of about 50 to about 80° C.
- 16. A process of claim 1 or 2 wherein the process is conducted as a batch process; wherein the tetrabromobisphenol-A precipitate has a purity of at least about 95 wt % and is present in an amount giving at least about a 90% yield based upon the amount of bisphenol-A and/or underbrominated bisphenol-A fed; and wherein the tetrabromobisphenol-A-containing precipitate has an APHA color of about 50 or less as determinable using a solution of 80 grams of the precipitate in 100 mL of acetone.
- 17. A process of claims 1 or 2 wherein the process is conducted as a continuous process; wherein said precipitate is continuously or substantially continuously being removed from the reaction mass during the time the feed of bisphenol-A and/or underbrominated bisphenol-A is/are being carried out; wherein the tetrabromobisphenol-A precipitate has a purity of at least about 95 wt % and is present in an amount giving at least about a 90% yield based upon the amount of bisphenol-A and/or underbrominated bisphenol-A fed; and wherein the tetrabromobisphenol-A-containing precipitate has an APHA color of about 50 or less as determinable using a solution of 80 grams of the precipitate in 100 mL of acetone.
- 18. A process of claim 1 or 2 wherein said liquid phase is comprised of water and a water-miscible organic solvent; wherein the tetrabromobisphenol-A precipitate has a purity of at least about 95 wt % and is present in an amount giving at least about a 90% yield based upon the amount of bisphenol-A and/or underbrominated bisphenol-A fed; and wherein the tetrabromobisphenol-A-containing precipitate has an APHA color of about 50 or less as determinable using a solution of 80 grams of the precipitate in 100 mL of acetone.
- 19. A process of claim 1 or 2 wherein the temperature of the reaction mass during the bromination is in the range of about 30 to about 100° C.; wherein said liquid phase is comprised of water and a water-miscible organic solvent; wherein the tetrabromobisphenol-A precipitate has a purity of at least about 95 wt % and is present in an amount giving at least about a 90% yield based upon the amount of bisphenol-A and/or underbrominated bisphenol-A fed; and wherein the tetrabromobisphenol-A-containing precipitate has an APHA color of about 50 or less as determinable using a solution of 80 grams of the precipitate in 100 mL of acetone.
- 20. A process of claim 1 or 2 wherein the temperature of the reaction mass during the bromination is in the range of about 50 to about 80° C.; wherein said liquid phase is comprised of water and a water-miscible alkanol; wherein the tetrabromobisphenol-A precipitate has a purity of at least about 95 wt % and is present in an amount giving at least about a 90% yield based upon the amount of bisphenol-A and/or underbrominated bisphenol-A fed; and wherein the tetrabromobisphenol-A-containing precipitate has an APHA color of about 50 or less as determinable using a solution of 80 grams of the precipitate in 100 mL of acetone.
- 21. A process for the production of tetrabromobisphenol-A product, which process comprises providing a liquid phase reaction system to which bisphenol-A and/or underbrominated bisphenol-A is/are being fed and in which there is being formed a tetrabromobisphenol-A precipitate by the bromination of bisphenol-A and/or underbrominated bisphenol-A with an excess of bromine over the stoichiometric amount theoretically required to produce tetrabromobisphenol-A, and in which there is present during all or substantially all of the time the bisphenol-A and/or underbrominated bisphenol-A is/are being fed, an amount of HBr which will protect the color of the tetrabromobisphenol-A precipitate from being adversely affected by the intentional or unintentional variance of the unreacted bromine concentration in the liquid phase even if such concentration is above about 20,000 ppm, the bromination being conducted at such rate that tetrabromobisphenol-A is being produced substantially continuously in a yield of at least about 90% based on the amount of the bisphenol-A being fed, the precipitate formed by the process comprising at least about 95 wt % tetrabromobisphenol-A having an APHA color of less than about 100, said APHA color being determinable by dissolving 80 grams of the tetrabromobisphenol-A product in 100 mL of acetone.
- 22. A process of claim 21 wherein the bromination is performed at a temperature within the range of from about 50 to about 80° C.
- 23. A process of claim 21 wherein the amount of HBr in the liquid phase of the reaction system is, on a weight basis, from about 6 to about 50 times as much as the maximum amount of unreacted bromine that is expected to be in said liquid phase during the time bisphenol-A and/or underbrominated bisphenol-A is/are being fed.
REFERENCE TO RELATED APPLICATIONS
This application is a continuation of commonly-owned U.S. application Ser. No. 09/329,374, filed Jun. 10, 1999, the latter application being a continuation-in-part of commonly-owned prior U.S. application Ser. Nos. 09/096,332; filed Jun. 11, 1998, now U.S. Pat. No. 6,084,136 and 08/945,158, Oct. 21, 1997, now U.S. Pat. No. 6,084,137. application Ser. No. 09/096,332 is a continuation-in-part of application Ser. No. 08/945,158, which in turn is a continuation-in-part of commonly-owned application Ser. Nos. 08/426,996 and 08/426,998 both filed Apr. 24, 1995 and both now abandoned. application Ser. No. 08/426,998 in turn is a continuation-in-part of commonly-owned application Ser. No. 08/398,837, filed Mar. 6, 1995 and now abandoned. Application Ser. No. 08/945,158 is also a continuation-in-part of commonly-owned application Ser. No. 08/550,044, filed Oct. 30, 1995, now U.S. Pat. No. 5,723,690, which in turn is a continuation of commonly-owned application Ser. No. 08/426,997, filed Apr. 24, 1995, now U.S. Pat. No. 5,527,971.
US Referenced Citations (40)
Foreign Referenced Citations (28)
Number |
Date |
Country |
686772 |
May 1964 |
CA |
706433 |
Mar 1965 |
CA |
2041220 |
Mar 1971 |
DE |
3417027 |
Nov 1985 |
DE |
0367869 |
May 1990 |
EP |
0380365 |
Aug 1990 |
EP |
0380363 |
Aug 1990 |
EP |
0472395 |
Feb 1992 |
EP |
0574031 |
Dec 1993 |
EP |
0572154 |
Dec 1993 |
EP |
2274586 |
Jan 1976 |
FR |
949306 |
Feb 1964 |
GB |
1031500 |
Jun 1966 |
GB |
1316415 |
May 1973 |
GB |
64410 |
Nov 1981 |
IL |
58-225034 |
Dec 1983 |
JP |
60-58728 |
Dec 1985 |
JP |
62-48641 |
Mar 1987 |
JP |
63-316748 |
Dec 1988 |
JP |
2196747 |
Aug 1990 |
JP |
4099743 |
Mar 1992 |
JP |
5213804 |
Aug 1993 |
JP |
5229976 |
Sep 1993 |
JP |
2026280 |
Jan 1995 |
SU |
9611227 |
Apr 1996 |
WO |
9620911 |
Jul 1996 |
WO |
9627576 |
Sep 1996 |
WO |
9633964 |
Oct 1996 |
WO |
Non-Patent Literature Citations (12)
Entry |
Islam et al., “Tetrahalogenated 4:4′-Dihydroxydiphenylalkanes, their Synthesis and some of their Reactions”, Egypt J. Chem., vol. 20, No. 5, 1977, pp. 483-490. |
Sadygov et al., “Oxidative Bromination of 2,2-Bis(4′-Hydroxyphenyl) Propane”, Neftekhimiya, vol. 30, No. 1, 1990, pp. 109-113. (Translation attached pp. 1-7). |
Chemical Abstracts vol. 78, 1973, p. 328. |
Chemical Abstracts vol. 96, 1982, p. 718. |
Chemical Abstracts vol. 104, 1986, p. 656. |
Chemical Abstracts vol. 104, 1986, p. 716. |
Patent Abstracts of Japan, Publication No. JP 62048641, Publication Date Mar. 3, 1987, entitled “Bromination of Bisphenol Compound”. |
Levenspiel Chemical Reaction Eng. (1962), Chapter 6, p. 126, 1962. |
Chemical Abstract, vol. 86, 1977, p. 570, JP 77,05745. |
CAPLUS, Abstract of JP 52,034620, 1977. |
WPIDS, Abstract of JP 77/034620, 1977. |
JAPIO, Abstract of JP 52,005745, 1977. |
Continuations (2)
|
Number |
Date |
Country |
Parent |
09/329374 |
Jun 1999 |
US |
Child |
09/614818 |
|
US |
Parent |
08/426997 |
Apr 1995 |
US |
Child |
08/550044 |
|
US |
Continuation in Parts (7)
|
Number |
Date |
Country |
Parent |
09/096332 |
Jun 1998 |
US |
Child |
09/329374 |
|
US |
Parent |
08/945158 |
Oct 1997 |
US |
Child |
09/096332 |
|
US |
Parent |
08/945158 |
|
US |
Child |
09/096332 |
|
US |
Parent |
08/426996 |
Apr 1995 |
US |
Child |
08/945158 |
|
US |
Parent |
08/426998 |
Apr 1995 |
US |
Child |
08/426996 |
|
US |
Parent |
08/398837 |
Mar 1995 |
US |
Child |
08/426998 |
|
US |
Parent |
08/550044 |
Oct 1995 |
US |
Child |
08/945158 |
|
US |