Claims
- 1. Process for the production of a benzenedicarboxylic acid containing less than a total of about 150 ppmw carboxybenzaldehyde and toluic acid which comprises the steps of:
(1) feeding (i) a dialkyl benzene compound, (ii) aqueous acetic acid reaction medium having oxidation catalyst components dissolved therein, and (iii) an oxygen-containing gas to a first pressurized oxidation zone wherein liquid-phase, exothermic oxidation of the dialkyl benzene compound occurs, wherein the temperature and pressure within the first pressurized oxidation reactor are maintained at about 150 to 180° C. and about 3.5 to 13 bars absolute (bara) (2) removing from the upper portion of the first reactor a vapor comprising vaporized aqueous, acetic reaction medium and oxygen-depleted gas comprising carbon dioxide, methane, inert components, and less than about 9 volume percent, based on the non-condensable components of the vapor, oxygen; (3) removing from the lower portion of the first reactor an oxidizer product comprising (i) solid and dissolved benzenedicarboxylic acid and incomplete oxidation products and (ii) the aqueous, acetic acid reaction medium having the oxidation catalyst dissolved therein; (4) feeding (i) the oxidizer product of step (3) and (ii) an oxygen-containing gas to a second pressurized oxidation zone wherein liquid-phase, exothermic oxidation of the incomplete oxidation products occurs, wherein the temperature and pressure within the second pressurized oxidation reactor are maintained at about 185 to 230° C. and about 4.5 to 18.3 bara; (5) removing from the upper portion of the second reactor a vapor comprising vaporized aqueous, acetic reaction medium and oxygen-depleted gas comprising carbon dioxide, methane, inert components, and less than about 5 volume percent, based on the non-condensable components of the vapor, oxygen; (6) removing from the lower portion of the second reactor a second oxidizer product comprising (i) solid and dissolved benzenedicarboxylic acid and (ii) the aqueous, acetic acid reaction medium having the oxidation catalyst dissolved therein; and (7) separating the benzenedicarboxylic acid from the (ii) the aqueous, acetic acid reaction medium of step (6) to obtain the benzenedicarboxylic acid containing less than about 150 ppmw carboxyaldehyde and toluic acid.
- 2. Process according to claim 1 for the production of terephthalic acid containing less than a total of about 150 ppmw p-carboxybenzaldehyde and p-toluic acid which comprises the steps of:
(1) feeding (i) p-xylene, (ii) aqueous acetic acid reaction medium having oxidation catalyst components dissolved therein, and (iii) an oxygen-containing gas to a first pressurized oxidation zone wherein liquid-phase, exothermic oxidation of the dialkyl benzene compound occurs, wherein the temperature and pressure within the first pressurized oxidation reactor are maintained at about 150 to 180° C. and about 3.5 to 13 bars absolute (bara); (2) removing from the upper portion of the first reactor a vapor comprising vaporized aqueous, acetic reaction medium and oxygen-depleted gas comprising carbon dioxide, methane, inert components, and less than about 9 volume percent, based on the non-condensable components of the vapor. oxygen; (3) removing from the lower portion of the first reactor an oxidizer product comprising (i) solid and dissolved terephthalic acid and incomplete oxidation products and (ii) the aqueous, acetic acid reaction medium having the oxidation catalyst dissolved therein; (4) feeding (i) the oxidizer product of step (3) and (ii) an oxygen-containing gas to a second pressurized oxidation zone wherein liquid-phase, exothermic oxidation of the incomplete oxidation products occurs, wherein the temperature and pressure within the second pressurized oxidation reactor are maintained at about 185 to 230° C. and about 4.5 to 18.3 bara; (5) removing from the upper portion of the second reactor a vapor comprising vaporized aqueous, acetic reaction medium and oxygen-depleted gas comprising carbon dioxide, methane, inert components, and 0 to about 1 volume percent, based on the non-condensable components of the vapor, oxygen; (6) removing from the lower portion of the second reactor a second oxidizer product comprising (i) solid and dissolved terephthalic acid and (ii) the aqueous, acetic acid reaction medium having the oxidation catalyst dissolved therein; and (7) separating the terephthalic acid from the (ii) the aqueous, acetic acid reaction medium of step (6) to obtain the terephthalic acid containing less than about 150 ppmw p-carboxyaldehyde and p-toluic acid.
- 3. Process according to claim 2 wherein step 1 is carried out at about 155 to 165° C. and about 5.2 to 6.9 bara in the presence of aqueous acetic acid reaction medium containing about 4 to 5 weight percent water having oxidation catalyst components comprising cobalt, manganese and bromine dissolved therein; and the second pressurized oxidation zone of step (4) are maintained at a temperature and pressure of about 205 to 215° C. and about 13.4 to 17.2 bara.
- 4. Process according to claim 3 wherein the atomic ratio of Co:Mn:Br is about 5 to 40:1.0:4 to 40.
- 5. Process according to claim 1 wherein the second oxidizer product of step (6) is fed to a flash evaporation zone wherein the temperature and pressure of the second oxidizer product are reduced by flash evaporation.
- 6. Process according to claim 2 wherein the second oxidizer product of step (6) is fed to a flash evaporation zone comprising (i) a first flash vessel operated at a temperature of about 170 to 190° C. and a pressure of about 2.4 to 5.2 bara and (ii) a second flash vessel operated at a temperature of about 60 to 100° C. and a pressure of about 0.3 to 0.8 bara, wherein the temperature and pressure of the second oxidizer product are reduced by flash evaporation.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application claims the benefit of U.S. Provisional Application Serial No. 60/295,618 filed Jun. 4, 2001.
Provisional Applications (1)
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Number |
Date |
Country |
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60295618 |
Jun 2001 |
US |