Water collecting device

TWI938160BActive Publication Date: 2026-09-01NANYA PLASTICS CORP
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Patent Information

Application Number
TW115105109
Authority / Receiving Office
TW · TW
Patent Type
Patents
Current Assignee / Owner
Filing Date
2026-02-10
Publication Date
2026-09-01
Estimated Expiration
2046-02-09

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Abstract

This invention discloses a water collection device, comprising a device body, a cover inclinedly disposed on the device body, an adsorption body, and a collection unit. The top of the device body has an opening, and at least one side plate of the device body has multiple air holes. The cover is used to cover the opening. The cover is a light-transmitting structure, having a convex surface facing inwards towards the device body, and the convex surface defines a focusing area. The adsorption body is positioned corresponding to the focusing area. The adsorption body is located inside and abuts against the multiple air holes, and can be exposed to the external environment through the multiple air holes to adsorb water vapor. The adsorption body is made of a metal-organic framework material. A confluence channel is formed between at least another side plate of the device body and the adsorption body. The collection unit is connected to the confluence channel.
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Claims

1. A water collection device, comprising: A device body having an opening at its top, and at least one side plate of the device body having a plurality of air holes; A cover is inclinedly disposed on the device body along an inclined direction, and the cover is used to cover the opening; the cover has a first side and a second side opposite to each other in the inclined direction, and the height of the first side relative to the device body is greater than the height of the second side relative to the device body; wherein, the cover is a light-transmitting structure that allows light to pass through, the cover has at least one convex surface facing the interior of the device body, and the at least one convex surface of the cover defines a focusing area; an adsorption body is disposed within the device body and spaced apart from the cover, and the position of the adsorption body corresponds to the focusing area; the adsorption body is located inside and abuts against the plurality of pores, and the adsorption body can be exposed to the external environment through the plurality of pores to adsorb water vapor; the adsorption body is a metal organic framework (MEA). MOF material having a desorption temperature between 60°C and 90°C; wherein a confluence channel is formed between at least one other side plate of the device body and the adsorption body along the second side; and a collection unit is disposed at the bottom of the device body and the collection unit is connected to the confluence channel.

2. The water collection device as described in claim 1, wherein, The device body has a first side plate and a second side plate that are opposite to each other in the inclined direction. The height of the first side plate is greater than the height of the second side plate. The first side plate of the device body is provided with a plurality of air holes. A confluence channel is formed between the second side plate of the device body and the adsorption body.

3. The water collection device as described in claim 1, wherein, The device body, the cover, and the adsorption body together define a spaced region that is not connected to the plurality of pores, and the spaced region is connected to the confluence channel.

4. The water collection device as described in claim 3, wherein, The water collection device further includes a thermally conductive structure disposed on the adsorption body, comprising: a base segment disposed at the bottom of the adsorption body; a connecting segment connected at one end to the base segment and embedded in the adsorption body; and a thermally conductive segment connected at the other end of the connecting segment and exposed to the interval region; wherein the position of the thermally conductive segment corresponds to the focusing region.

5. The water collection device as described in claim 4, wherein, The thermally conductive structure is selected from at least one of the following: silver, copper, gold, and aluminum.

6. The water collection device as claimed in claim 1, wherein, The number of at least one of the convex surfaces is further limited to a plurality; the plurality of convex surfaces of the cover each define a plurality of focusing regions, and the position of the adsorption body corresponds to at least one of the focusing regions.

7. The water collection device as claimed in claim 1, wherein, When the light passes through the cover, the adsorption body forms a heating area corresponding to the focusing area, which has a temperature between 60°C and 90°C.

8. The water collection device as claimed in claim 1, wherein, The adsorption body comprises multiple adsorption particles, each having a particle size between 2 millimeters (mm) and 6 millimeters.

9. The water collection device as claimed in claim 1, wherein, The number of at least one of the convex surfaces is further limited to one, and the cover further has a plane opposite to the convex surface, which is exposed to the external environment.

10. The water collection device as claimed in claim 1, wherein, At least one of the convex surfaces has a radius of curvature between 8 cm and 20 cm.

Citation Information

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