REACTOR WITH BAFFLE CONFIGURATION
A reactor includes a shell defining an interior, a plurality of baffles positioned in the interior of the reactor, and a fluid pathway defined between the plurality of baffles and extending between an inlet and an outlet. In some embodiments, the reactor has a degree of mixing of less than 0.2.
1 . A reactor comprising:
a shell defining an interior;
a plurality of baffles positioned in the interior of the reactor, wherein the plurality of baffles comprises ten or more baffles, and a baffle cut for each baffle of the plurality of baffles is from 18% to 35%; and
a fluid pathway defined between the plurality of baffles and extending between an inlet and an outlet;
wherein the reactor has a degree of mixing of less than 0.2.
2 . The reactor of claim 1 , wherein the fluid pathway includes a plurality of changes in direction.
3 . The reactor of claim 1 , wherein the plurality of baffles comprises from 10 to 22 baffles.
4 . The reactor of claim 1 , wherein the baffles are separated from the shell by at least one gap.
5 . The reactor of claim 4 , wherein the gap has a width of about ½ inch or less.
6 . The reactor of claim 1 , wherein each baffle of the plurality of baffles is attached directly to the shell such that there is no circumferential gap between the baffle and the shell.
7 . The reactor of claim 1 , wherein the reactor has a mean residence time of 50 seconds to 130 seconds.
8 . The reactor of claim 1 , wherein the reactor has a degree of mixing of less than 0.1.
9 . The reactor of claim 1 , wherein the reactor does not include a liquid distributor.
10 . A method of producing alpha-methyl styrene from dimethylbenzyl alcohol comprising:
providing an inlet stream to an interior of a reactor, the inlet stream including dimethylbenzyl alcohol, wherein the reactor includes a plurality of baffles positioned in the interior of the reactor, wherein the plurality of baffles comprises ten or more baffles, a baffle cut for each baffle of the plurality of baffles is from 18% to 35%, and the reactor has a degree of mixing of less than 0.2; and
reacting at least a portion of the dimethylbenzyl alcohol in the reactor to form alpha-methyl styrene.
11 . The method of claim 10 , wherein at least 75% of the dimethylbenzyl alcohol is reacted to form alpha-methyl styene.
12 . The method of claim 10 , further comprising passing at least a portion of the dimethylbenzyl alcohol through a gap between the baffle and at a wall defining the interior of the reactor, wherein the gap has a width of about ½ inch or less.
13 . The method of claim 10 , wherein the plurality of baffles comprises from 10 to 22 baffles
14 . The method of claim 10 , wherein the reactor has a diameter from 4 inches to 48 inches.
15 . The method of claim 10 , wherein the reactor has a flow rate of 1,000 gal/hr to 50,000 gal/hr.
16 . The method of claim 10 , wherein the reactor has a mean residence time of 50 seconds to 130 seconds.
17 . The method of claim 10 , wherein the reactor has a degree of mixing of less than 0.1.
18 . The method of claim 10 , wherein the reactor does not include a liquid distributor.
19 . The method of claim 10 , wherein the inlet stream comprises from 0.5 to 20 wt. % dimethylbenzylalcohol, based on a total weight of the inlet stream composition.
20 . The method of claim 10 , wherein the inlet stream comprises at least one of cumene, cumene hydroperoxide, phenol, and acetone.