POROUS ARTICLES, PROCESSES FOR THEIR PREPARATION AND USES THEREOF
The present invention relates to polymer compositions (C) for the preparation of porous article, notably microporous membranes or hollow fibers. More particularly, the present invention relates to a process of preparing a porous article from at least one polyphenylene sulfide (PPS) polymer with an additive and at least one reinforcing filler followed by a step of shaping the article and contacting the article with water to dissolve the additive and create an interconnected pore network within the shaped article.
1 - 15 . (canceled)
16 . A polymer composition (C) comprising:
at least one polyphenylene sulfide (PPS);
at least 28 wt. %, based on the total weight of the polymer composition (C), of at least one additive of formula (I):
R a —Ar—X b (I)
where
Ar is an aromatic moiety and is selected from the group consisting of substituted or unsubstituted, aromatic monocyclic or polycyclic group having 5 to 18 carbon atoms;
each of R, identical or different from each other, is selected from the group consisting of a halogen, an hydroxyl, a C1-C18 aliphatic group, a C1-C18 cycloaliphatic group and a C1-C18 aromatic;
a is zero or an integer ranging from 1 to 5;
X is (COO − ), (M p+ ) 1/p in which M p+ is a metal cation of p valence;
b is an integer ranging from 1 to 4; and
at least one reinforcing filler.
17 . The polymer composition (C) of claim 16 , wherein Ar in formula (I) is selected from the group consisting of:
wherein Z is a divalent moiety and is selected from the group consisting of —SO 2 —, —CO— and alkylenes of 1 to 6 carbon atoms.
18 . The polymer composition (C) of claim 16 , wherein the additive is according to formula (II):
each of R, identical or different from each other, is selected from the group consisting of a halogen, an hydroxyl, a C1-C18 aliphatic group, a C1-C18 cycloaliphatic 5 group and a C1-C18 aromatic;
a is zero or an integer ranging from 1 to 5;
X is (COO − ), (M p+ ) 1/p in which M p+ is a metal cation of p valence; and
b is each of either 1 or 2.
19 . The polymer composition (C) of claim 16 , wherein the additive salt is selected from the group consisting of benzoate, methylbenzoate, ethylbenzoate, propylbenzoate and butylbenzoate.
20 . The polymer composition (C) of claim 16 , comprising between 30 wt. % and 70 wt. % of the additive.
21 . The polymer composition (C) of claim 16 , wherein the reinforcing filler is a fibrous filler and the polymer composition includes the fibrous filler in the amount ranging from 5 wt. % to 50 wt. %, based on the total weight of the polymer composition.
22 . The polymer composition (C) of claim 16 , wherein the reinforcing filler is selected from the group consisting of glass fibers, carbon fibers and basalt fibers.
23 . A polymer article (A) comprising the polymer composition (C) of claim 16 .
24 . A method of forming a porous polymer membrane (M), comprising:
(i) preparing a polymer composition (C) according to claim 16 ,
(ii) processing the polymer composition (C) into a membrane,
(iii) immersing the membrane into water.
25 . The method of claim 24 , wherein step (i) consists in melt-mixing the at least one polymer (P) with at least 28 wt. % of the at least one additive of formula (I).
26 . The method of claim 25 , wherein the melt-mixing consists in heating the semi-crystalline polymer (P), along with the additive of formula (I), to a processing temperature (Tp) above the melting temperature (Tm) of the polymer to form a melt.
27 . The method of claim 26 , wherein the processing temperature (Tp) is at least 15° C. greater than the melting temperature (Tm) of the semi-crystalline polymer (P).
28 . A porous polymer membrane (M) obtainable by the process of claim 24 , having an average pore size from about 0.01 micron to about 5.0 micron.
29 . A method for filtering or purifying fluids, the method comprising using the polymer membrane (M) of claim 28 to filter or purify a fluid.