IP Library Granted Patent US 12679792
Granted Patent B2
US 12679792 · App. 18/281,451 · Granted Jul 14, 2026

Process for recovering isoprenol

Inventors: Andreas Keller (Ludwigshafen am Rhein, DE); Hans Hasse (Kaiserslautern, DE); Rupert Wagner (Ludwigshafen am Rhein, DE); Bernhard Brunner (Ludwigshafen am Rhein, DE); Matthias Schult (Ludwigshafen am Rhein, DE); Stephan Maurer (Ludwigshafen am Rhein, DE); Heiko Hallmann (Ludwigshafen am Rhein, DE); Maximilian Dyga (Kaiserslautern, DE)
Assignee: BASF SE
C07C29/80B01D3/143C07C33/025
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Quick Facts
Patent No.
US 12679792
App. No.
18/281,451
Granted
Jul 14, 2026
Kind
B2
Abstract

A process for recovering isoprenol essentially free of formaldehyde from a stream of crude isoprenol containing isoprenol, water and formaldehyde, the process comprising subjecting the stream of crude isoprenol or an isoprenol containing fraction thereof to distillation in a low-boiler separation tower operated at a pressure of 2.5 bara or higher to obtain a distillate stream containing aqueous formaldehyde and a bottoms stream containing isoprenol. The process of the invention allows for obtaining isoprenol essentially free of formaldehyde. Further provided is a plant for recovering isoprenol essentially free of formaldehyde from a stream of crude isoprenol containing isoprenol, water and formaldehyde, the plant comprising a first low-boiler separation tower, a second low-boiler separation tower, and a finishing tower.

Claims (24)

1 . A process for recovering isoprenol essentially free of formaldehyde from a stream of crude isoprenol containing isoprenol, water and formaldehyde, the process comprising subjecting the stream of crude isoprenol or an isoprenol containing fraction thereof to distillation in a low-boiler separation tower operated at a pressure of 2.5 bara or higher to obtain a distillate stream containing aqueous formaldehyde and a bottoms stream containing isoprenol.

2 . The process according to claim 1 , comprising reacting formaldehyde with isobutylene to obtain a reaction mixture, and removing unreacted isobutylene from the reaction mixture in an isobutylene distillation tower to obtain the stream of crude isoprenol.

3 . The process according to claim 2 , wherein the second distillate is at least partially recycled to the reaction of formaldehyde with isobutylene.

4 . The process according to claim 1 , comprising

(i) directing the stream of crude isoprenol to a first low-boiler separation tower operated at a pressure of 1.5 bara or lower, to obtain a first bottoms stream containing isoprenol and formaldehyde, and a first distillate stream containing water and low-boilers;

(ii) directing the first bottoms stream to a second low-boiler separation tower operated at a pressure of 2.5 bara or higher, to obtain a second distillate stream containing aqueous formaldehyde, and a second bottoms stream containing isoprenol; and

(iii) directing the second bottoms stream to a finishing tower to obtain pure isoprenol as a distillate stream, and a bottoms stream containing high-boilers.

5 . The process according to claim 4 , wherein a quench section is provided downstream, in vapor flow direction, of a rectifying section of the second low-boiler separation tower, and an aqueous liquid is collected at the lower end of the quench section, wherein the aqueous liquid is partially circulated into the quench section through a circulation line and partially withdrawn as the second distillate.

6 . The process according to claim 5 , wherein the aqueous liquid is cooled before being circulated into the quench section.

7 . The process according to claim 6 , wherein the aqueous liquid is heat-exchanged with the stream of crude isoprenol flowing into the first low-boiler separation tower before being circulated into the quench section.

8 . The process according to claim 5 , wherein the aqueous liquid is partially returned to the rectifying section as a reflux stream.

9 . The process according to claim 8 , wherein the mass flow ratio of the reflux stream to the second distillate is in the range of 2:1 to 10:1.

10 . The process according to claim 5 , wherein a scrubbing section is provided downstream, in vapor flow direction, of the quench section and water is introduced at the top of the scrubbing section.

11 . The process according to claim 4 , wherein the second distillate comprises 25 to 60 wt.-%.

12 . The process according to claim 4 , wherein the obtained pure isoprenol comprises less than 0.5 wt.-%.

13 . The process according to claim 4 , wherein the first low-boiler separation tower is operated at a pressure of 1.2 bara or lower and/or wherein the second low-boiler separation tower is operated at a pressure of 2.5 bara or higher.

14 . The process according to claim 4 , comprising directing at least part of the first distillate stream to a wastewater stripping column to separate low-boilers from water.

15 . A plant for recovering isoprenol essentially free of formaldehyde from a stream of crude isoprenol containing isoprenol, water and formaldehyde, the plant comprising

a first low-boiler separation tower, adapted to receive the stream of crude isoprenol and to distillatively separate the stream of crude isoprenol into a first bottoms stream containing isoprenol and formaldehyde, and a first distillate stream containing water and low-boilers;

a second low-boiler separation tower, adapted to receive a first bottoms stream from the first low-boiler separation tower and to distillatively separate the first bottoms stream into a second distillate stream containing aqueous formaldehyde, and a second bottoms stream containing isoprenol; and

a finishing tower, adapted to receive a second bottoms stream from the second low-boiler separation tower and to distillatively separate the second bottoms stream into pure isoprenol as a distillate stream, and a bottoms stream containing high-boilers.

16 . The plant according to claim 15 , wherein the second low-boiler separation tower comprises

a quench section above a rectifying section of the second low-boiler separation tower, wherein the second low-boiler separation tower is designed to collect a second distillate at the lower end of the quench section and to partially circulate the second distillate into the quench section through a circulation line; and

a scrubbing section above the quench section and a water inlet at the top of the scrubbing section.