IP Library Granted Patent US 9,440,187
Granted Patent B2
US 9,440,187 · App. 14/331,614 · Granted Sep 13, 2016

Device for water collection from atmospheric moisture

Inventors: Saeed Alhassan Alkhazraji (Abu Dhabi, AE); Sara Mohamed Aldhaheri (Abu Dhabi, AE); Fatima Mohamed Alhameli (Abu Dhabi, AE)
Assignee: THE PETROLEUM INSTITUTE
B01D53/261B01D53/0407B01D53/28B01J20/261E03B3/28B01D2253/202
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Quick Facts
Patent No.
US 9,440,187
App. No.
14/331,614
Granted
Sep 13, 2016
Kind
B2
Abstract

A device for collecting water from atmospheric moisture comprises water absorbing material, a protection wall and a water container. The protection wall is in a porous form. The water absorbing material is made of the temperature responsive polymer with a phase separation temperature, including Poly(N-isopropylacrylamide) (PNIPAM), Poly(vinylphosphonate) and etc. when its temperature is below phase separation temperature, the temperature responsive polymer is in a swollen hydrated state, forming hydrogen bond with water molecules; so as to absorb water from the air. When its temperature is above said phase separation temperature, the temperature responsive polymer is in a shrunken dehydrated state, forming hydrogen bond with other temperature responsive polymer molecules; so as to expel the water to the water container.

Claims (97)

1. A device for collecting water from atmospheric moisture, comprising

a water absorbing material;

a protection wall;

a water container;

said water absorbing material absorbing water from the atmospheric moisture;

said protection wall protecting said water absorbing material and said water collector from being contaminated or damaged;

said protection wall allowing air to pass through with no hindrance; and

said water container being connected to said water absorbing material so as to collect the water from said water absorbing material

said water absorbing material being a temperature responsive polymer with a phase separation temperature;

said temperature responsive polymer undergoing water solubility change when its temperature goes from above said phase separation temperature to below said phase separation temperature;

said temperature responsive polymer undergoing water solubility change when its temperature goes from below said phase separation temperature to above said phase separation temperature;

when its temperature is below said phase separation temperature, said temperature responsive polymer being in a swollen hydrated state, and said temperature responsive polymer forming hydrogen bond with water molecules;

when its temperature is below said phase separation temperature, said temperature responsive polymer absorbing water from atmospheric moisture;

when its temperature is above said phase separation temperature, said temperature responsive polymer being in a shrunken dehydrated state, and said temperature responsive polymer forming hydrogen bond with side groups of adjacent temperature responsive polymer molecule; and

when its temperature is above said phase separation temperature, said temperature responsive polymer expelling water from its structure, and

said temperature responsive polymer being selected from the group consisting of hydroxypropylcellulose, poly(vinylcaprolactame) and polyvinyl methyl ether.

2. The device for collecting water from atmospheric moisture of claim 1 , comprising

said protection wall being in a porous form to allow air with moisture to pass through; and

said protection wall being made of a material that does not absorb moisture from air.

3. The device for collecting water from atmospheric moisture of claim 1 , comprising

said water container being made of a material that does not absorb moisture from air; and

said water container comprising means to prevent the water contained in said container from evaporating to air.

4. The device for collecting water from atmospheric moisture of claim 1 , comprising

said phase separation temperature being 32° C.

5. A device for collecting water from atmospheric moisture, comprising

a water absorbing material;

a protection wall;

a water container;

said water absorbing material absorbing water from the atmospheric moisture;

said protection wall protecting said water absorbing material and said water collector from being contaminated or damaged;

said protection wall allowing air to pass through with no hindrance; and

said water container being connected to said water absorbing material so as to collect the water from said water absorbing material

said water absorbing material being a temperature responsive polymer with a phase separation temperature;

said temperature responsive polymer undergoing water solubility change when its temperature goes from above said phase separation temperature to below said phase separation temperature;

said temperature responsive polymer undergoing water solubility change when its temperature goes from below said phase separation temperature to above said phase separation temperature;

when its temperature is below said phase separation temperature, said temperature responsive polymer being in a swollen hydrated state, and said temperature responsive polymer forming hydrogen bond with water molecules;

when its temperature is below said phase separation temperature, said temperature responsive polymer absorbing water from atmospheric moisture;

when its temperature is above said phase separation temperature, said temperature responsive polymer being in a shrunken dehydrated state, and said temperature responsive polymer forming hydrogen bond with side groups of adjacent temperature responsive polymer molecule; and

said temperature responsive polymer being Poly(vinylphosphonate).

6. The device for collecting water from atmospheric moisture of claim 1 , comprising

said phase separation temperature being adjustable from 5° C. to 90° C.; and

said phase separation temperature being adjusted via altering type of said temperature responsive polymer, concentration of said temperature responsive polymer, or modifying said temperature responsive polymer's structure.

7. The device for collecting water from atmospheric moisture of claim 1 , comprising

said temperature responsive polymer being a standing alone component of said device, or

said temperature responsive polymer being grafted on a surface of a supporting element.

8. A device for collecting water from atmospheric moisture, comprising

a water absorbing material;

a protection wall;

a water container;

said water absorbing material absorbing water from the atmospheric moisture;

said protection wall protecting said water absorbing material and said water collector from being contaminated or damaged;

said protection wall allowing air to pass through with no hindrance;

said water container being connected to said water absorbing material so as to collect the water from said water absorbing material;

said protection wall being in a porous form to allow air with moisture to pass through;

said protection wall being made of a material that does not absorb moisture from air;

said water container being made of a material that does not absorb moisture from air; and

said water container comprising means to prevent the water contained in said container from evaporating to air;

said water absorbing material being a temperature responsive polymer with a phase separation temperature,

said temperature responsive polymer undergoing water solubility change when its temperature goes from above said phase separation temperature to below said phase separation temperature;

said temperature responsive polymer undergoing water solubility change when its temperature goes from below said phase separation temperature to above said phase separation temperature;

when its temperature is below said phase separation temperature, said temperature responsive polymer being in a swollen hydrated state, and said temperature responsive polymer forming hydrogen bond with water molecules;

when its temperature is below said phase separation temperature, said temperature responsive polymer absorbing water from atmospheric moisture;

when its temperature is above said phase separation temperature, said temperature responsive polymer being in a shrunken dehydrated state, and said temperature responsive polymer forming hydrogen bond with side groups of adjacent temperature responsive polymer molecule; and

when its temperature is above said phase separation temperature, said temperature responsive polymer expelling water from its structure,

said temperature responsive polymer being selected from the group consisting of hydroxypropylcellulose, poly(vinylcaprolactame), polyvinyl methyl ether, and Poly(vinylphosphonate).

9. The device for collecting water from atmospheric moisture of claim 8 , comprising

said phase separation temperature being 32° C.

10. The device for collecting water from atmospheric moisture of claim 8 , comprising

said phase separation temperature being adjustable from 5° C. to 90° C.; and

said phase separation temperature being adjusted via altering type of said temperature responsive polymer, concentration of said temperature responsive polymer, or modifying said temperature responsive polymer's structure.

11. A device for collecting water from atmospheric moisture, comprising

a water absorbing material;

a protection wall;

a water container;

said water absorbing material absorbing water from the atmospheric moisture;

said protection wall protecting said water absorbing material and said water collector from being contaminated or damaged;

said protection wall allowing air to pass through with no hindrance;

said water container being connected to said water absorbing material so as to collect the water from said water absorbing material;

said protection wall being in a porous form to allow air with moisture to pass through;

said protection wall being made of a material that does not absorb moisture from air;

said water container being made of a material that does not absorb moisture from air;

said water container comprising means to prevent the water contained in said container from evaporating to air;

said water absorbing material being a temperature responsive polymer with a phase separation temperature;

said temperature responsive polymer undergoing water solubility change when its temperature goes from above said phase separation temperature to below said phase separation temperature;

said temperature responsive polymer undergoing water solubility change when its temperature goes from below said phase separation temperature to above said phase separation temperature;

when its temperature is below said phase separation temperature, said temperature responsive polymer being in a swollen hydrated state, and said temperature responsive polymer forming hydrogen bond with water molecules;

when its temperature is below said phase separation temperature, said temperature responsive polymer absorbing water from atmospheric moisture;

when its temperature is above said phase separation temperature, said temperature responsive polymer being in a shrunken dehydrated state, and said temperature responsive polymer forming hydrogen bond with side groups of adjacent temperature responsive polymer molecule;

when its temperature is above said phase separation temperature, said temperature responsive polymer expelling water from its structure; and

said temperature responsive polymer being a standing alone component of said device, or

said temperature responsive polymer being grafted on a surface of a supporting element; and

said temperature responsive polymer being selected from the group consisting of hydroxypropylcellulose, poly(vinylcaprolactame), polyvinyl methyl ether, and Poly(vinylphosphonate).

12. The device for collecting water from atmospheric moisture of claim 11 , comprising

said phase separation temperature being 32° C.

13. The device for collecting water from atmospheric moisture of claim 11 , comprising

said phase separation temperature being adjustable from 5° C. to 90° C.; and

said phase separation temperature being adjusted via altering type of said temperature responsive polymer, concentration of said temperature responsive polymer, or modifying said temperature responsive polymer's structure.

Assignments (2)
CHANGE OF NAME Recorded Jul 19, 2021
From: THE PETROLEUM INSTITUTE
To: KHALIFA UNIVERSITY OF SCIENCE AND TECHNOLOGY
Reel/Frame 056909/0419 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 22, 2014
From: ALKHAZRAJI, SAEED ALHASSAN, DR.; ALDHAHERI, SARA MOHAMED; ALHAMELI, FATIMA MOHAMED
To: THE PETROLEUM INSTITUTE
Reel/Frame 034003/0349 →
Continuity (2)
Provisional Application 61856744 · Jul 21, 2013
Related Publication 20150020687A1 · Jan 22, 2015