Water recovery apparatus and electrodialysis device

US2017313602A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2017313602-A1
Application numberUS-201615139895-A
CountryUS
Kind codeA1
Filing dateApr 27, 2016
Priority dateApr 27, 2016
Publication dateNov 2, 2017
Grant date

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Abstract

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Wastewater containing scale components, organic substances, inorganic ions, and the like, such as human effluent, generated in a closed system space, such as a nuclear shelter, a hazardous shelter, a space station or a moon-Mars mission manned spacecraft, or a lunar base is efficiently treated by a simple structural apparatus, so that water is recovered. After a hardness component is removed from water to be treated, such as human effluent, by a softening device, and heat exchange is performed between softening treated water and electrolysis treated water by a heat exchanger, by a high-temperature and high-pressure electrolysis device, organic substances, urea, ammonia, and the like are removed by electrolysis performed under high-temperature and high-pressure conditions. After the electrolysis treated water is processed by a deaeration treatment using a deaeration membrane device, a desalting treatment is performed by acid/alkali manufacturing electrodialysis devices and provided in series at two stages.

First claim

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1 . A water recovery apparatus which treats wastewater and recovers treated water as product water, the water recovery apparatus comprising: a softening device removing a hardness component in the wastewater; a high-temperature and high-pressure electrolysis device in which softening treated water in the softening device is electrolyzed by supplying a direct current at a temperature of 100° C. to the critical temperature of the softening treated water and under a pressure at which the softening treated water maintains a liquid phase so as to electrolyze an oxidizable substance in the softening treated water; an electrodialysis device in which electrolysis treated water obtained by the high-temperature and high-pressure electrolysis device is processed by a desalting treatment to obtain desalted water; and a heat exchanger which heats the softening treated water by heat exchange between the softening treated water flowing into the high-temperature and high-pressure electrolysis device and the electrolysis treated water. 2 . The water recovery apparatus according to claim 1 , wherein the electrodialysis device comprises acid/alkali manufacturing electrodialysis devices, each of which treats water to be treated and obtains desalted water, an acid solution, and an alkali solution, are connected in series at two stages or more so that desalted water of an acid/alkali manufacturing electrodialysis device at an upstream side is processed by a desalting treatment of an acid/alkali manufacturing electrodialysis device at a downstream side, wherein water having a low ion concentration as compared to that of water which is allowed to pass through an acid chamber and an alkali chamber of the acid/alkali manufacturing electrodialysis device at an upstream side is allowed to pass through an acid chamber and an alkali chamber of the acid/alkali manufacturing electrodialysis device at a downstream side, and an acid solution and an alkali solution obtained by the acid/alkali manufacturing electrodialysis device at a downstream side are allowed to pass through the acid chamber and the alkali chamber of the acid/alkali manufacturing electrodialysis device at an upstream side, respectively. 3 . The water recovery apparatus according to claim 2 , wherein an acid storage bath storing an acid solution obtained by the acid/alkali manufacturing electrodialysis device at an upstream side and the acid/alkali manufacturing electrodialysis device at a downstream side and an alkali storage bath storing an alkali solution obtained by the acid/alkali manufacturing electrodialysis device at an upstream side and the acid/alkali manufacturing electrodialysis device at a downstream side are provided, and the acid solution and the alkali solution obtained by the acid/alkali manufacturing electrodialysis device at a downstream side are allowed to pass through the acid chamber and the alkali chamber of the acid/alkali manufacturing electrodialysis device at an upstream side via the acid storage bath and the alkali storage bath, respectively. 4 . The water recovery apparatus according to claim 2 , wherein the acid/alkali manufacturing electrodialysis devices each include between an anode and a cathode, a buffer chamber defined by two chambers adjacent thereto and bipolar membranes, and the water to be treated is processed by a desalting treatment by being allowed to sequentially pass through the buffer chamber of the acid/alkali manufacturing electrodialysis device at a downstream side, the buffer chamber of the acid/alkali manufacturing electrodialysis device at an upstream side, a desalting chamber of the acid/alkali manufacturing electrodialysis device at an upstream side, and a desalting chamber of the acid/alkali manufacturing electrodialysis device at a downstream side in this order. 5 . The water recovery apparatus according to claim 1 , wherein the electrodialysis device comprises acid/alkali manufacturing electrodialysis devices, each of which treats water to be treated and obtains desalted water, an acid solution, and an alkali solution, are connected in series at two stages or more so that desalted water of an acid/alkali manufacturing electrodialysis device at an upstream side is processed by a desalting treatment of an acid/alkali manufacturing electrodialysis device at a downstream side, wherein the acid/alkali manufacturing electrodialysis devices each include between an anode and a cathode, a buffer chamber defined by two chambers adjacent thereto and bipolar membranes, and the water to be treated is processed by a desalting treatment by being allowed to sequentially pass through the buffer chamber of the acid/alkali manufacturing electrodialysis device at a downstream side, the buffer chamber of the acid/alkali manufacturing electrodialysis device at an upstream side, a desalting chamber of the acid/alkali manufacturing electrodialysis device at an upstream side, and a desalting chamber of the acid/alkali manufacturing electrodialysis device at a downstream side in this order. 6 . A water recovery apparatus which treats wastewater and recovers treated water as product water, the water recovery apparatus comprising: a softening device removing a hardness component in the wastewater; a high-temperature and high-pressure electrolysis device in which softening treated water in the softening device is electrolyzed by supplying a direct current at a temperature of 100° C. to the critical temperature of the softening treated water and under a pressure at which the softening treated water maintains a liquid phase so as to electrolyze an oxidizable substance in the softening treated water; an electrodialysis device in which electrolysis treated water obtained by the high-temperature and high-pressure electrolysis device is processed by a desalting treatment to obtain desalted water; and a deaeration device for processing a deaeration treatment on the electrolysis treated water whereby deaeration treated water of the deaeration device is treated by the electrodialysis device. 7 . The water recovery apparatus according to claim 6 , wherein the electrodialysis device comprises acid/alkali manufacturing electrodialysis devices, each of which treats water to be treated and obtains desalted water, an acid solution, and an alkali solution, are connected in series at two stages or more so that desalted water of an acid/alkali manufacturing electrodialysis device at an upstream side is processed by a desalting treatment of an acid/alkali manufacturing electrodialysis device at a downstream side, wherein water having a low ion concentration as compared to that of water which is allowed to pass through an acid chamber and an alkali chamber of the acid/alkali manufacturing electrodialysis device at an upstream side is allowed to pass through an acid chamber and an alkali chamber of the acid/alkali manufacturing electrodialysis device at a downstream side, and an acid solution and an alkali solution obtained by the acid/alkali manufacturing electrodialysis device at a downstream side are allowed to pass through the acid chamber and the alkali chamber of the acid/alkali manufacturing electrodialysis device at an upstream side, respectively. 8 . The water recovery apparatus according to claim 7 , wherein an acid storage bath storing an acid solution obtained by the acid/alkali manufacturing electrodialysis device at an upstream side and the acid/alkali manufacturing electrodialysis device at a downstream side and an alkali storage bath storing an alkali solution obtained by the acid/alkali manufacturing electrodialysis device at an upstream side and the acid/alkali manufacturing electrodialysis device at a downstream side are provided, and the acid solution and the alkali solution obtained by

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What does patent US2017313602A1 cover?
Wastewater containing scale components, organic substances, inorganic ions, and the like, such as human effluent, generated in a closed system space, such as a nuclear shelter, a hazardous shelter, a space station or a moon-Mars mission manned spacecraft, or a lunar base is efficiently treated by a simple structural apparatus, so that water is recovered. After a hardness component is removed fr…
Who is the assignee on this patent?
Kurita Water Ind Ltd
What technology area does this patent fall under?
Primary CPC classification C02F1/46104. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Thu Nov 02 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).