Polyester production system employing horizontally elongated esterification vessel
A polyester production process employing an esterification system that utilizes a horizontally elongated esterification vessel as an esterification reactor and/or a vapor-liquid disengagement vessel.
1. A process comprising:
subjecting a reaction medium comprising terephthalic acid to esterification in an esterification zone defined within an esterification vessel,
wherein said esterification vessel has a length-to-diameter (L:D) ratio less than about 10:1, is horizontally oriented and is substantially empty, and
wherein said reaction medium flows substantially horizontally through said esterification vessel.
2. The process of claim 1 , further comprising, optionally, agitating said reaction medium in said esterification vessel, wherein less than about 50 percent of the agitation is provided by mechanical agitation.
3. The process of claim 1 , further comprising, optionally, adding heat to said reaction medium in said esterification vessel, wherein the amount of heat added to said reaction medium in said esterification vessel is less than about 20 BTU/pound.
4. The process of claim 1 , wherein said esterification vessel has an L:D ratio in the range of from about 1.25:1 to about 8:1.
5. The process of claim 1 , wherein the average depth of said reaction medium in said esterification vessel is less than about 0.75 D.
6. The process of claim 1 , wherein said esterification vessel has an L:D ratio in the range of from about 1.5:1 to about 6:1, wherein the average depth of said reaction medium in said esterification vessel is less than about 0.5 D.
7. The process of claim 1 , wherein said reaction medium enters said esterification vessel via a fluid inlet and exits said esterification vessel via a liquid outlet, wherein said liquid outlet is horizontally spaced from said fluid inlet by at least 1.25 D.
8. A process comprising:
(a) subjecting a reaction medium comprising terephthalic acid to esterification in an esterification reactor to thereby produce a first product;
(b) introducing at least a portion of said first product into a disengagement vessel;
(c) withdrawing separate liquid and vapor products from said disengagement vessel; and
(d) routing at least a portion of the withdrawn liquid phase back to said first esterification reactor via a recirculation loop, wherein the internal volume defined by said disengagement vessel is at least about 50 percent of the combined internal volume defined by said recirculation loop and said esterification reactor,
wherein said esterification reactor is horizontally elongated and substantially empty, and the disengagement vessel has a length-to-diameter (L:D) ratio in the range of from about 1.25:1 to about 8:1.
9. The process of claim 8 , wherein the internal volume defined by said disengagement vessel is at least about 75 percent of the combined internal volume defined by said recirculation loop and said esterification reactor.
10. The process of claim 8 , wherein the internal volume defined by said disengagement vessel is at least 150 percent of the combined internal volume defined by said recirculation loop and said esterification reactor.