Light Curing for Membrane Performance
The present invention relates to a spiral wound membrane element designs wherein the membrane sheet is fabricated with selective flux and rejection characteristics that can then be modified using various intensities and wavelengths of energy such as UV or the visible spectrum to optimize characteristics of the membrane sheet such as flux or rejection, and that can be utilized to optimally bond photopolymer spacers either above the active surface of the membrane sheet, or below the active surface.
1 . A method of producing a membrane comprising:
(a) providing a permeable support layer sheet;
(b) disposing a polymer coating on a first surface of the permeable support layer sheet, where the polymer coating has one or more properties that can be varied by exposure to light;
(c) supplying light to the polymer coating at wavelengths and intensities to produce a membrane having flux and rejection properties desired for use in a spiral wound filtration element.
2 . The method of claim 1 , wherein step (c) comprises directing light toward the permeable support layer sheet from the side of the first surface, such that the light reaches the polymer coating before reaching the permeable support layer sheet.
3 . The method of claim 1 , wherein step (c) comprises directing light toward the permeable support layer sheet from opposite the side of the first surface, such that the light reaches the polymer coating after transiting the permeable support layer sheet.
4 . The method of claim 1 , wherein step (c) comprises providing a source of light at a fixed location, and moving the permeable support layer sheet relative to the source of light.
5 . The method of claim 1 , wherein step (c) comprises providing a source of light at a location that is moveable relative to the permeable support layer sheet, and moving the source of light relative to the permeable support layer sheet.
6 . The method of claim 1 , wherein step (c) comprises supplying light having intensity, wavelength, or both, that vary with region of the membrane.
7 . The method of claim 6 , wherein the polymer coating has a thickness, and wherein step (c) comprises supplying light having intensity, wavelength, or both, that vary responsive to the thickness of the polymer coating.
8 . The method of claim 6 , wherein step (c) comprises supplying light having intensity, wavelength, or both, that is constant across a first dimension of the membrane and vary along a second dimension of the membrane.
9 . The method of claim 6 , wherein the membrane sheet has a thickness, and wherein step (c) comprises supplying light having intensity, wavelength, or both, that vary responsive to the thickness of the membrane sheet.
10 . The method of claim 6 , wherein step (c) comprises supplying light such that the flux of the membrane has a first value near a first end or side of the membrane and a second value near a second, opposite, end or side of the membrane, wherein the second value is greater than the first value.
11 . The method of claim 10 , wherein the flux of the membrane varies smoothly from the first value to the second value between the first and second ends or sides.
12 . The method of claim 6 , wherein step (c) comprises supplying light such that the rejection of the membrane has a first value near a first end or side of the membrane and a second value near a second end or side of the membrane, opposite the first end or side of the membrane, wherein the second value is greater than the first value.
13 . The method of claim 10 , wherein the rejection of the membrane varies smoothly from the first value to the second value between the first and second ends or sides.
14 . (canceled)
15 . The method of claim 1 , wherein the light comprises ultraviolet light.
16 . A membrane for use in a spiral wound filtration element, having a flux or rejection that has a first value near a first end or side of the membrane and a second value near a second, opposite, end or side of the membrane, wherein the second value is greater than the first value.
17 . The membrane of claim 16 , wherein the flux or rejection of the membrane varies smoothly from the first value to the second value between the first and second ends or sides.
18 . The membrane of claim 16 , having a flux that has a first flux value near a first end or side of the membrane and a second flux value near a second, opposite, end or side of the membrane, wherein the second flux value is greater than the first flux value; and having a rejection that has a first rejection value near a first end or side of the membrane and a second rejection value near a second, opposite, end or side of the membrane, wherein the second rejection value is greater than the first rejection value.