Dehumidification device and electrified desorption device thereof
Abstract
A dehumidification device and an electrified desorption device thereof are provided. The electrified desorption device includes a conductive water-absorbing material containing titanosilicates; a conductive layer containing a metal component or a mixture of the metal component and graphite, attached to end surfaces at two sides of the water-absorbing material; a pair of electrode structures, coupled to the two sides of the water-absorbing material respectively and each having multiple sub-electrodes insulated from each other; and a voltage source, coupled to the pair of electrode structures. The electrodes are coupled to the conductive water-absorbing material, and the conductive water-absorbing material is directly electrified with a current, so that the conductive water-absorbing material generates heat to achieve a desorption effect, and further maintains a re-adsorbing capability to continue operation.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A dehumidification device, comprising:
a condensation portion; an electrified desorption device, comprising: a conductive water-absorbing material containing titanosilicates; a conductive layer containing a metal component or a mixture of the metal component and graphite, attached to end surfaces at two sides of the water-absorbing material; a pair of electrode structures, each having multiple sub-electrodes insulated from each other; and a voltage source, coupled to the pair of electrode structures; a ratio of silicon atoms to titanium atoms in the titanosilicates of the conductive water-absorbing material is
1
≤
Si
Ti
≤
10
;
and
a regeneration portion, coupled to the condensation portion and the electrified desorption device respectively and further having a conductive water-absorbing material, wherein the pair of electrode structures is selectively coupled to two sides of the conductive water-absorbing material.
2 . The dehumidification device according to claim 1 , wherein the regeneration portion further has a regeneration air passage.
3 . The dehumidification device according to claim 1 , wherein the regeneration portion further has a heating unit.
4 . The dehumidification device according to claim 1 , wherein the voltage source provides a voltage to the pair of electrode structures, and the voltage is an alternating current (AC) voltage or a direct current (DC) voltage.
5 . The dehumidification device according to claim 1 , wherein a material of the conductive layer is a pure metal material, an alloy material, metallic oxide, or non-metallic oxide.
6 . The dehumidification device according to claim 1 , wherein each electrode structure further has:
a conductive structure, coupled to the water-absorbing material; and multiple insulation frames, disposed on the conductive structure to divide the conductive structure into multiple sub-electrodes insulated from each other.
7 . The dehumidification device according to claim 6 , wherein the conductive structure is a metal net, a metal strip, or a metal wire.
8 . The dehumidification device according to claim 1 , wherein the voltage source further has a power distribution unit, electrically connected to the multiple sub-electrodes respectively.
9 . The dehumidification device according to claim 1 , wherein the condensation portion comprises a condensation coiler formed by multiple condensation pipes.
10 . The dehumidification device according to claim 1 , wherein the conductive water-absorbing material is a titanosilicate material, and a titanosilicate content of the conductive water-absorbing material ranges from 1% to 99.99%, or the conductive water-absorbing material is a mixture of the conductive water-absorbing material with the titanosilicate as the main component and aluminosilicates, or is a mixture of the conductive water-absorbing material with the titanosilicate as the main component and multiple conductive or non-conductive substances, and a content of non-titanosilicate ranges from 0.01% to 95%.
11 . The dehumidification device according to claim 1 , wherein the conductive water-absorbing material turns.
12 . The dehumidification device according to claim 1 , wherein the voltage source has a voltage below 500 volts.Join the waitlist — get patent alerts
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