HIGH EFFICIENCY FILTER MEDIA
Articles and methods involving filter media are generally provided. In certain embodiments, a filter media has a design and/or comprises one or more layers that enhances its efficiency and/or performance.
1 . A filter media, comprising:
a first layer comprising a plurality of fine fibers having an average diameter of less than 1 micron; and
a second layer disposed on the first layer, wherein:
the first layer has a porosity of greater than 80%;
the second layer has a normalized surface area of greater than 15 m 2 /m 2 ; and
the second layer has an efficiency metric of greater than 2.5.
2 . A filter media as in claim 1 , wherein the first layer has a porosity of less than or equal to 99%.
3 . A filter media as in claim 1 , wherein the plurality of fine fibers has an average diameter of greater than or equal to 0.01 microns.
4 . A filter media as in claim 1 , wherein the fine fibers comprise greater than or equal to 1 wt. % and less than or equal to 25 wt. % of an impact modifier and wherein the impact modifier is dispersed in a matrix polymer.
5 . A filter media as in claim 1 , wherein the impact modifier comprises a copolymer comprising at least two different monomers, wherein at least one monomer has an affinity to the matrix polymer and wherein at least one monomer does not have affinity to the matrix polymer.
6 . A filter media as in claim 1 , wherein the matrix polymer comprises greater than or equal to 50 wt. % and less than or equal to 100 wt. % of a thermoplastic polymer.
7 . A filter media as in claim 1 , wherein the second layer has an efficiency metric of less than or equal to 6.
8 . A filter media as in claim 1 , wherein the second layer has a normalized surface area of less than or equal to 100 m 2 /m 2 .
9 . A filter media as in claim 1 , wherein the second layer is a meltblown layer.
10 . (canceled)
11 . A filter media as in claim 1 , wherein the second layer has an average fiber diameter of greater than or equal to 0.5 microns less than 4 microns.
12 . A filter media as in claim 1 , wherein the second layer has an oil rank of greater than 1 and less than or equal to 8.
13 . A filter media as in claim 1 , wherein the second layer has an initial efficiency of greater than 95% and less than or equal to 99.99995%.
14 . A filter media as in claim 1 , wherein the second layer is hydrocharged.
15 . A filter media as in claim 1 , wherein the second layer comprises a fluorocarbon coating.
16 . A filter media as in claim 1 , wherein the second layer comprises a plurality of synthetic fibers.
17 . A filter media as in claim 1 , wherein the second layer has a pressure drop of greater than or equal to 0.001 kPa and less than or equal to 0.08 kPa.
18 . A filter media as in claim 1 , further comprising a first wetlaid non-woven fiber web positioned adjacent the first layer at a side opposite the second layer.
19 . A filter media as in claim 1 , further comprising a second wetlaid non-woven fiber web positioned adjacent the second layer at a side opposite the first layer.
20 - 21 . (canceled)
22 . A filter media as in claim 1 , wherein a ratio of an efficiency of the first wetlaid non-woven fiber web to an efficiency of the second wet-laid non-woven fiber web is less than or equal to 1:1.1 and greater than or equal to 1:99.
23 . (canceled)
24 . A filter media as in claim 1 , wherein the filter media has a thermal PAO loading capacity of greater than or equal to 10 g/m 2 and less than or equal to 100 g/m 2 .
25 - 33 . (canceled)