Composite membrane utilized in membrane distillation
A composite membrane includes a hydrophobic porous membrane and a high water content hydrogel layer disposed on the surface of the hydrophobic porous membrane facing the hot end. The surface active agents contained in the wastewater at the hot end are blocked by the high water content hydrogel layer, thus the problem of pore wetting of the hydrophobic porous membrane can be prevented. Therefore, the membrane distillation technique can be utilized for processing wastewater containing surface active agents.
1. A composite membrane utilized in membrane distillation, comprising:
a hydrophobic porous membrane having a first surface and a second surface opposite to each other, wherein the first surface is corresponding to a wastewater having surface active agents and the second surface is corresponding to a cold side; and
a high water content hydrogel layer disposed at the first surface, wherein the high water content hydrogel layer comprises curdlen or agarose, a mesh size of the high water content hydrogel layer is in a range from about 192 nm to about 237 nm, a thickness of the high water content hydrogel layer is about 200 um, and a water content of the high water content hydrogel layer is from about 94% to about 96%,
wherein
the
water
content
=
W
s
-
W
d
W
s
×
100
%
,
in which Ws represents a weight of the wet high water content hydrogel layer, and Wd represents a weight of the dry high water content hydrogel layer.
2. The composite membrane of claim 1 , wherein the high water content hydrogel layer is a physical crosslinking material or a chemical cross linking material.
3. The composite membrane of claim 1 , wherein the hydrophobic porous membrane is made of polytetrafluoroethylene (PTFE), polypropene (PP), polyvinylidene fluoride (PVDF), polyolefin, or the combinations thereof.