METHOD FOR PREPARING MERCAPTANS BY SULFHYDROLYSIS OF SULFIDES
The present invention concerns a method for sulfhydrolysis from dialkyl sulfides and hydrogen sulfide, in the presence of a specific catalyst based on titanium dioxide and/or zirconium dioxide, as well as the corresponding use of such a catalyst. The present invention also concerns a method for preparing mercaptans, in particular methyl mercaptan, from at least one alcohol and hydrogen sulfide, comprising said sulfhydrolysis method.
1 . A sulfhydrolysis process, wherein a dialkyl sulfide is reacted with hydrogen sulfide (H 2 S) in the presence of ZrO 2 and/or TiO 2 as catalyst(s), to obtain at least one mercaptan.
2 . The process according to claim 1 , wherein said catalyst(s) do not comprise any alkali metal oxide.
3 . The process according to claim 1 , said process being performed in a reactor comprising only one catalytic zone.
4 . The process according to claim 1 , wherein the reaction temperature is between 100° C. and 500° C.
5 . The process according to claim 1 , wherein the H 2 S/dialkyl sulfide mole ratio is between 0.1/1 and 50/1.
6 . The process according to claim 1 , wherein the dialkyl sulfide is selected from the group consisting of: dimethyl sulfide, diethyl sulfide, dioctyl sulfide, didodecyl sulfide and methyl ethyl sulfide.
7 . A process for preparing mercaptan(s), comprising:
preparing mercaptan(s) and dialkyl sulfide(s) from at least one alcohol and H 2 S, and
reacting said dialkyl sulfide(s) produced with H 2 S according to the sulfhydrolysis process as defined in claim 1 , to obtain said mercaptan(s).
8 . The process according to claim 7 , comprising:
A) introducing a stream comprising H 2 S and a stream comprising at least one alcohol into a first reactor;
B) reacting the two streams to obtain an outlet stream comprising at least one mercaptan, at least one dialkyl sulfide and optionally H 2 S;
C) separating the outlet stream obtained from step B) into:
a stream comprising the mercaptan(s),
a stream comprising the dialkyl sulfide(s), and
optionally a stream comprising H 2 S;
D) introducing the stream comprising the dialkyl sulfide(s) into a second reactor with a stream of H 2 S;
E) reacting the two streams according to the sulfhydrolysis process to obtain an outlet stream comprising said mercaptan(s) and optionally H 2 S;
F) optionally recycling the stream of H 2 S obtained from step C) into step A).
9 . The process according to claim 8 , wherein the outlet stream from the second reactor of step E) is recycled into the first reactor of step A).
10 . The process according to claim 7 , comprising:
a) introducing a stream comprising a mercaptan and H 2 S and a stream comprising an alcohol into a first reactor;
b) reacting the two streams to obtain an outlet stream comprising the mercaptan, a dialkyl sulphide and optionally H 2 S;
c) separating the outlet stream obtained from step b) into:
a stream comprising the mercaptan;
a stream comprising the dialkyl sulphide; and
optionally a stream comprising H 2 S;
d) introducing the stream comprising the dialkyl sulphide into a second reactor with a stream of H 2 S;
e) reacting the two streams according to the sulfhydrolysis process to obtain an outlet stream comprising the mercaptan and H 2 S;
f) introducing the outlet stream obtained from step e) into the reactor of step a);
g) optionally recovering the stream comprising the mercaptan obtained from step c); and
h) optionally recycling the stream of H 2 S obtained from step c) into step a).
11 . The use of ZrO 2 and/or TiO 2 as catalyst(s) in a reaction reacting a dialkyl sulfide with hydrogen sulfide to obtain a mercaptan.