IP Library Granted Patent US 9,387,457
Granted Patent B2
US 9,387,457 · App. 14/352,180 · Granted Jul 12, 2016

Water vapor adsorbent for adsorption heat pump, method for producing water vapor adsorbent, and adsorption heat pump including water vapor adsorbent

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Quick Facts
Patent No.
US 9,387,457
App. No.
14/352,180
Granted
Jul 12, 2016
Kind
B2
Abstract

There is provided a water vapor adsorbent for adsorption heat pumps that has high adsorption and desorption performance and high water resistance, such as submersion resistance. The water vapor adsorbent contains a zeolite that contains at least a silicon atom, an aluminum atom, and a phosphorus atom in its framework structure and that has a framework density of 12.0 T/1,000 cubic angstroms or more and 16.0 T/1,000 cubic angstroms or less, wherein the water vapor adsorbent contains a group 11 metal of the periodic table, which constitutes 0.1% to 15% by weight of the zeolite. In the zeolite containing the group 11 metal, an ion of the group 11 metal substitutes for a Bronsted acid site, which promotes a hydrolysis reaction of the zeolite, and decreases the number of Bronsted acid sites of the zeolite, thereby improving the water resistance, such as submersion resistance, of the zeolite.

Claims (15)

1. An adsorption heat pump having a water vapor adsorbent, the water vapor adsorbent comprising:

a zeolite that comprises at least a silicon atom, an aluminum atom, and a phosphorus atom in its framework structure;

wherein:

the zeolite framework structure has a framework density of 12.0 T/1,000 to 16.0 T/1,000 cubic angstroms;

the water vapor adsorbent further comprises a group 11 metal in an amount 0.1% to 15% by weight of the zeolite; and

the water vapor adsorbent is obtained by a method comprising loading the group 11 metal onto the zeolite.

2. The adsorption heat pump of claim 1 , wherein the zeolite has a zeolite structure of CHA.

3. The adsorption heat pump of claim 1 , wherein a change in relative vapor pressure of 0.15 in a relative vapor pressure range of 0.05 or more and 0.30 or less causes a change in the amount of water adsorbed to the water vapor adsorbent of 0.15 g-H 2 O/g or more.

4. A method for producing the adsorption heat pump of claim 1 , comprising:

loading a group 11 metal onto a zeolite that comprises at least a silicon atom, an aluminum atom, and a phosphorus atom in its framework structure and that has a framework density of 12.0 T/1,000 to 16.0 T/1,000 cubic angstroms to produce the water vapor adsorbent, and

adding the water vapor adsorbent to the adsorption heat pump.

5. The adsorption heat pump of claim 1 , wherein the group 11 metal is copper.

6. The adsorption heat pump of claim 1 , wherein the water vapor adsorbent comprises the group 11 metal in an amount of 0.1% to 3% by weight of the zeolite.

7. The adsorption heat pump of claim 1 , wherein the water vapor adsorbent comprises the group 11 metal in an amount of 0.1% to 1.5% by weight of the zeolite.

8. The adsorption heat pump of claim 1 , wherein the water vapor adsorbent comprises the group 11 metal in an amount of 0.3% to 1.5% by weight of the zeolite.

Assignments (3)
CHANGE OF NAME Recorded Sep 5, 2017
From: MITSUBISHI RAYON CO., LTD.
To: MITSUBISHI CHEMICAL CORPORATION
Reel/Frame 043750/0834 →
MERGER Recorded Aug 31, 2017
From: MITSUBISHI PLASTICS, INC
To: MITSUBISHI RAYON CO., LTD.
Reel/Frame 043746/0912 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 16, 2014
From: CHEN, HAIJUN; TAKEWAKI, TAKAHIKO
To: MITSUBISHI PLASTICS, INC.
Reel/Frame 032686/0971 →