Porous Composite Membrane Including Microporous Membrane Layers And Nanofiber Layer
A filtration member comprising a nanofiber layer and two nanoporous membrane layers is disclosed. The filtration member can be used to remove particles and gels from photoresist and other fluids by a combination of sieving and non-sieving particle retention mechanisms.
1 . A filtration member, comprising:
a non-sieving membrane layer having a pore size rating of between about 10 nanometers and about 50 nanometers;
a sieving membrane layer having a pore size rating of between about 2 nanometers and about 50 nanometers; and
a nylon nanofiber layer having a pore size rating greater than the pore size rating of the non-sieving membrane and sieving membrane layers, a basis weight of between about 20 grams per square meter and about 35 grams per square meter and a mean isopropyl alcohol (IPA) bubble point of between about 3.5 pounds per square inch and about 5 pounds per square inch.
2 . The filtration member of claim 1 , wherein the nylon nanofiber layer is interposed between the non-sieving membrane layer and the sieving membrane layer.
3 . The filtration member of claim 1 , wherein the non-sieving membrane layer is interposed between the sieving membrane layer and the nylon nanofiber layer.
4 . The filtration member of claim 1 , wherein the sieving membrane layer is interposed between the non-sieving membrane layer and the nylon nanofiber layer.
5 . The filtration member of claim 1 , further comprising one or more layers of a porous support material.
6 . The filtration member of claim 1 , wherein the filtration member has an upstream end and a downstream end and the non-sieving membrane layer, the sieving membrane layer and the nylon nanofiber layer are arranged to form an upstream retentive layer, a center retentive layer and a downstream retentive layer, wherein the nylon nanofiber layer does not form the downstream retentive layer.
7 . The filtration member of claim 6 , wherein the nylon nanofiber layer forms the upstream retentive layer.
8 . The filtration member of claim 6 , wherein the sieving membrane layer forms the downstream retentive layer.
9 . The filtration member of claim 8 , wherein the non-sieving membrane layer forms the upstream retentive layer and the nylon nanofiber layer forms the center retentive layer.
10 . The filtration member of claim 8 , wherein the non-sieving membrane layer forms the center retentive layer and the nylon nanofiber layer forms the upstream retentive layer.
11 . The filtration member of claim 6 , wherein the sieving membrane layer forms the upstream retentive layer.
12 . The filtration member of claim 1 , wherein the non-sieving membrane layer is a nylon membrane layer.
13 . The filtration member of claim 12 , wherein the nylon membrane layer and the nylon nanofiber layer each include nylon-6.
14 . The filtration member of claim 1 , wherein the filtration member comprises at least one nylon nanofiber layer.
15 . The filtration member of claim 14 , wherein the filtration member comprises three nylon nanofiber layers.
16 . The filtration member of claim 1 , wherein the sieving membrane layer is an ultra-high molecular weight polyethylene (UPE) membrane layer.
17 . The filtration member of claim 1 , wherein the sieving membrane layer is a UPE membrane layer and the non-sieving membrane layer is a nylon membrane layer.
18 . The filtration member of claim 17 , wherein the nylon membrane layer has a pore size rating of about 10 nanometers and the UPE membrane layer has a pore size rating of about 50 nanometers.
19 . The filtration member of claim 17 , wherein the nylon membrane layer has a pore size rating of about 50 nanometers and the UPE membrane layer has a pore size rating of about 2 to about 5 nanometers.
20 . A filter, comprising a housing and the filtration member from any one of claims 1 - 19 .
21 . Use of the filtration member of any one of claims 1 - 19 or the filter of claim 20 to remove gel from photoresist.
22 . A method of removing gel from photoresist, the method comprising passing a flow of photoresist through the filtration member of any one of claims 1 - 19 or the filter of claim 20 , thereby removing gel from the photoresist.