PROCESS FOR THE CO-PRODUCTION OF ALCOHOLS
The present invention relates to the co-production of unsaturated aldehydes via a crossed-aldol condensation reaction catalyzed by recyclable water-soluble phase-transfer catalysts or the hydroxides thereof. The aldehydes are then hydrogenated to the desired alcohol products or saturated aldehyde feed stocks. Specifically, methods in which 2,4-diethyloctanol is co-produced with 2-ethylhexanol in batch and continuous processes are described. Recovery of the phase-transfer catalyst through water washing followed by “salting out” from the washings is also demonstrated.
1 .- 24 . (canceled)
25 . A continuous process for the optimized coproduction of 2,4-diethyloctanol in a 2-ethylhexanol manufacturing process comprising the steps of:
(a) forming an unsaturated aldehyde reaction product mixture comprised of 2-ethyl-2-hexenal and 2,4-diethyl-2-octenal by an aqueous base-catalyzed crossed-aldol condensation reaction between n-butyraldehyde and 2-ethylhexanal in the presence of (i) a quaternary ammonium or phosphonium salt as a water soluble phase-transfer catalyst (PTC) which is present in a molar ratio of the PTC to the n-butyraldehyde of between 0.01:1 to 0.2:1, and (ii) an alkali metal hydroxide in a molar ratio of the alkali metal hydroxide to the n-butyraldehyde of between 0.03:1 to 1.30:1,
(b) separating the PTC from the aldehyde reaction product mixture by washing a stream of the unsaturated aldehyde reaction product mixture with a water stream to obtain an aqueous PTC-containing stream and an organic unsaturated aldehyde product-containing stream;
(c) subjecting the unsaturated aldehyde reaction product-containing stream obtained in step (b) to hydrogenation to form a product stream comprised of 2-ethylhexanol and 2,4-diethyloctanol;
(d) recovering the PTC from the PTC-containing stream obtained in step (b) by adding an alkali metal hydroxide solution to the aqueous PTC-containing stream to thereby form a first aqueous phase containing the sodium hydroxide and a second phase containing predominantly the PTC, whereby the PTC is recovered in the second phase; and
(e) recycling the PTC recovered in step (d) to the crossed-aldol condensation reaction of step (a).
26 . The process of claim 25 , wherein the aldol reaction is performed at a temperature from about 30 to 120° C.
27 . The process of claim 25 , wherein the aldol reaction is performed at a temperature from about 30 to about 100° C.
28 . The process of claim 25 , wherein the sodium hydroxide solution comprises a 10-50 weight percent solution of sodium hydroxide.