IP Library Granted Patent US 10,179,745
Granted Patent B2
US 10,179,745 · App. 14/760,635 · Granted Jan 15, 2019

Water recovery system for use in confined spaces

Inventors: Yukitaka Matsumoto (Tokyo, JP); Nobuhiro Orita (Tokyo, JP); Hideki Kobayashi (Tokyo, JP)
Assignee: KURITA WATER INDUSTRIES LTD.
C02F9/00B01D61/44B01D61/58C02F1/42C02F1/4674C02F1/4693C02F1/46109C02F1/68C25B1/26C02F1/20C02F1/4618C02F1/4672C02F1/66C02F1/725C02F2001/425C02F2001/46133C02F2001/46147C02F2101/16C02F2101/38C02F2201/001C02F2201/46115C02F2303/16C02F2303/22
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Quick Facts
Patent No.
US 10,179,745
App. No.
14/760,635
Granted
Jan 15, 2019
Kind
B2
Abstract

A water recovery system can treat water in a confined space. The wastewater treatment system includes a cation-exchange device in which water to be treated, such as wastewater originating in a space station, water discharged by the human body, water produced by condensing water vapor contained in the air, is directly introduced to a cation-exchange resin and thereby treated by cation exchange; a diamond-electrode electrolysis device in which organic substances, urea, and other nitrogen compounds contained in water discharged from the cation-exchange device are decomposed; a catalytic decomposition device in which the residual organic component is brought into contact with a catalyst to be decomposed; an electrodialysis device in which water discharged from the catalytic decomposition device is treated by electrodialysis to produce desalted water as well as an acid and an alkali; and a mineral adding device in which a mineral is added to the desalted water.

Claims (29)

1. A water recovery system in a confined space, comprising:

a cation-exchange device in which wastewater originating in a confined space is treated by cation exchange with a Na-type weakly acidic cation-exchange resin;

an organic-component decomposing device in which an organic component contained in water discharged from the cation-exchange device is decomposed, comprising a diamond-electrode electrolysis device including conductive diamond serving as an electrode, and a catalytic decomposition device;

an electrodialysis device in which water discharged from the organic-component decomposing device is treated by electrodialysis, thereby producing an acid and an alkali;

a regeneration unit in which the cation-exchange resin is regenerated using the acid and the alkali produced in the electrodialysis device;

a mineral adding unit in which a mineral component is added to a treated water discharged from the electrodialysis device;

a first tank that stores the acid and supplies the acid to the cation-exchange device to regenerate the cation-exchange resin; and

a second tank that stores the alkali and supplies the alkali to the cation-exchange device to regenerate the cation-exchange resin.

2. The water recovery system according to claim 1 , wherein the wastewater is urine, which is treated by the cation-exchange device, and

condensed water produced by condensing water vapor contained in air in the confined space is merged into the water from the cation-exchange device prior to the organic component is decomposed.

3. The water recovery system according to claim 1 , wherein electrodialysis device comprises

an anode,

a cathode, and

an acid compartment, an anion-exchange membrane, a desalting compartment, a cation-exchange membrane, a bipolar membrane, another acid compartment, another anion-exchange membrane, another desalting compartment, and another cation-exchange membrane disposed in order between the anode and the cathode.

4. A combination, comprising:

a confined space; and

a water recovery system in the confined space,

wherein the water recovery system comprises

a cation-exchange device in which wastewater originating in the confined space is treated by cation exchange with a Na-type weakly acidic cation-exchange resin;

an organic-component decomposing device in which an organic component contained in water discharged from the cation-exchange device is decomposed, comprising a diamond-electrode electrolysis device including conductive diamond serving as an electrode, and a catalytic decomposition device;

an electrodialysis device in which water discharged from the organic-component decomposing device is treated by electrodialysis, thereby producing an acid and an alkali;

a regeneration unit in which the cation-exchange resin is regenerated using the acid and the alkali produced in the electrodialysis device;

a mineral adding unit in which a mineral component is added to a treated water discharged from the electrodialysis device;

a first tank that stores the acid and supplies the acid to the cation-exchange device to regenerate the cation-exchange resin; and

a second tank that stores the alkali and supplies the alkali to the cation-exchange device to regenerate the cation-exchange resin.

5. The combination according to claim 4 , wherein the wastewater is urine, which is treated by the cation-exchange device, and

condensed water produced by condensing water vapor contained in air in the confined space is merged into the water from the cation-exchange device prior to the organic component is decomposed.

6. The water recovery system according to claim 1 , wherein the alkali is supplied to the cation-exchange device after the acid is supplied and used for regeneration of the cation-exchange resin.

7. The combination according to claim 4 , wherein the alkali is supplied to the cation-exchange device after the acid is supplied and used for regeneration of the cation-exchange resin.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 13, 2015
From: MATSUMOTO, YUKITAKA; ORITA, NOBUHIRO; KOBAYASHI, HIDEKI
To: KURITA WATER INDUSTRIES LTD.
Reel/Frame 036071/0605 →
Priority Claims (1)
JP 2013-009380 · Jan 22, 2013 · national
Continuity (1)
Related Publication 20150353401A1 · Dec 10, 2015