FILTER SYSTEM FOR WATER AND GAS REMOVAL AND SYSTEMS AND METHODS OF USE THEREOF
Disclosed are embodiments of a cabin filter system including a sorbent material for removing gas and/or water from a cabin. The filter system also includes at least one heater configured to transmit thermal energy (e.g., microwave energy) to the sorbent material. Also disclosed are methods of using such filter systems.
1 . A cabin filter system, comprising:
a sorbent material configured to remove at least one of gas or water from a cabin; and
at least one heater configured to transmit thermal energy directly to the sorbent material.
2 - 4 . (canceled)
5 . The cabin filter system of claim 1 , wherein the sorbent material comprises a plurality of units, and wherein the plurality of units comprise at least one of powder, beads, extrudates, tablets, pellets, agglomerates, granules, shaped bodies, compressed shapes and combinations thereof.
6 - 9 . (canceled)
10 . The cabin filter system of claim 1 , wherein the sorbent material comprises an alumino-silicate material, optionally an alumino-silicate gel.
11 . (canceled)
12 . The cabin filter system of claim 1 , wherein the water sorbent material comprises at least one of silica, alumina or a metal organic framework.
13 . The cabin filter system of claim 1 , wherein the sorbent material comprises a gas sorbent material comprising at least one of amines and carbamates impregnated onto one or more high surface area substrates.
14 . The cabin filter system of claim 13 wherein the carbamates comprise the product of a reaction between an ethylamine carbonate and dimethyl carbonate.
15 . The cabin filter system of claim 13 , wherein the high surface area substrates comprise a pore volume of greater than about 0.8 cc/g.
16 . The cabin filter system of claim 13 , wherein the high surface area substrates comprise a mean pore diameter of greater than about 100 Å, or greater than about 110 Å, or greater than about 120 Å.
17 . (canceled)
18 . (canceled)
19 . The cabin filter system of claim 1 , wherein the sorbent material comprises a gas sorbent material comprising about 35 wt % to about 55 wt % of an amine component and about 45 wt % to about 65 wt % of a silica component, or about 40 wt % to about 50 wt % of an amine component and about 50 wt % to about 60 wt % of a silica component, and about 45 wt % of an amine component and about 55 wt % of a silica component.
20 . The cabin filter system of claim 13 , wherein the gas sorbent material comprises one or more binders.
21 . The cabin filter system of claim 20 , wherein the one or more binders comprise at least one of an organic binder, a styrene acrylic polymer, an inorganic binder or sodium silicate.
22 . (canceled)
23 . The cabin filter system of claim 1 , wherein the at least one heater comprises a microwave resonator.
24 . The cabin filter system of claim 1 , wherein the thermal energy is microwave energy.
25 . The cabin filter system of claim 1 , wherein the thermal energy has a frequency of about 2400 MHz to about 2500 MHz, or about 900 MHz to about 915 MHz.
26 . The cabin filter system of claim 1 , wherein the at least one heater is configured to directly transmit thermal energy to the sorbent material.
27 - 30 . (canceled)
31 . The cabin filter system of claim 1 , wherein the cabin is in an vehicle, an electric automobile, a truck, a van, a plane, a helicopter, a train or a spacecraft.
32 . A filter system, comprising:
a water sorbent material;
a gas sorbent material; and
at least one heater configured to transmit thermal energy to at least one of the water sorbent material or the gas sorbent material.
33 - 53 . (canceled)
54 . The filter system of claim 32 , wherein the gas sorbent material comprises one or more binders.
55 . The filter system of claim 54 , wherein the one or more binders comprise at least one of an organic binder, a styrene acrylic polymer, an inorganic binder or a sodium silicate.
56 - 70 . (canceled)
71 . A method of using a filter system, comprising:
operating a first sorption line of the filter system, the first sorption line comprising a first water sorbent material and a first gas sorbent material, wherein the first sorption line removes water and gas from surrounding air; and
regenerating a second sorption line of the filter system, the second sorption line comprising a second water sorbent material and a second gas sorbent material, wherein the second sorption line desorbs water and gas from the second water sorbent material and the second gas sorbent material.