A continuous circulation adsorption air water intake device

An air water intake and circulation technology, applied in water supply installations, drinking water installations, buildings, etc., can solve the problems of power consumption, large volume of solar energy equipment, slow air intake of water intake devices, etc., to achieve great economic value and social benefits, guaranteeing Continuity and high efficiency, efficient adsorption/desorption effect

Active Publication Date: 2021-03-12
SHANGHAI MARITIME UNIVERSITY
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  • Description
  • Claims
  • Application Information

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Problems solved by technology

[0003] Most of them have very high requirements on the ambient humidity. Generally, water can only be taken when the relative humidity is above 40%. However, due to the high air temperature and low relative humidity during the day, it is not conducive to the absorption of moisture in the air by hygroscopic materials. Therefore, most of them use nighttime adsorption. Water intake in the form of desorption during the day, that is, the water intake cycle is generally one day and night, which seriously restricts the continuity and efficiency of water intake by the device
[0004] Most of them operate at night, using electric energy, waste heat or stored solar energy to heat the hygroscopic material to desorb it. Although the desorption of the hygroscopic material at night is achieved, most of the solar equipment is bulky and complex in shape and structure, so the production cost is high. , The practical applicability is poor, or it does not conform to the environmental protection concept of green energy saving due to the consumption of other energy, making it difficult to popularize and use
[0005] Most of them rely on the form of natural convection to passively supply air to the water intake device. Therefore, the intake of the water intake device is slow, and the amount of moisture that the water intake device can absorb from the air per unit time is correspondingly small, which leads to a longer adsorption cycle of the water intake device. long, seriously restricting the water intake efficiency of the water intake device
Some also use air blower and other equipment to actively supply air to the water intake device to increase the air intake, but additional power consumption is required, and the heat generated by the blower and other equipment during operation will increase the temperature of the air, which is not conducive to subsequent adsorption

Method used

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  • A continuous circulation adsorption air water intake device
  • A continuous circulation adsorption air water intake device
  • A continuous circulation adsorption air water intake device

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Embodiment Construction

[0060] A continuous circulating adsorption air pipette proposed in the present invention will be further described in further detail below with reference to the accompanying drawings and specific examples. The advantages and features of the present invention will be more apparent from the following description and appended claims. It should be noted that the figures use a very simplified form and use non-precision ratios, only for convenience, clarity to clarify the purposes of the embodiments of the present invention.

[0061] Such as figure 1 As shown, a continuous cycle adsorption air water absorbing device provided by the embodiment of the present invention includes:

[0062] Air gathering system 1, which is used to aggregate air and introduced into the intake system;

[0063] The first cooling system 15 is connected to the gas collecting system 1, and the first cooling system 15 is located at about 1.5 m underground, which utilizes the air aggregated from the ground low temp...

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Abstract

The invention discloses a continuous-circulation air-adsorption water intake device which comprises an air collection system, a first cooling system, at least one adsorption component, a second cooling system and at least one wind-power magneto-electricity system. The first cooling system and the second cooling system disclosed by the invention are located underground, and air is cooled by low temperature underground, so that adverse influences of high air temperature in the daytime on normal adsorption of the water intake device are avoided; and in addition, electric energy is generated by wind energy, and the water intake device can run normally at night, so that continuity and high efficiency of the water intake device are realized.

Description

Technical field [0001] The present invention relates to the field of fresh water acquisition techniques, and more particularly to an adsorptive air water absorbing device for continuous cycle using ground low temperature and wind energy. Background technique [0002] As the environment is deteriorated, water shortages have become a global issue. Due to the gas, liquid, solid three-state conversion and water quality of the earth, the atmosphere is the intermediate link of the three-state transformation cycle, so it has become an effective method for solving the shortage of water resources from the air. Current researchers have proposed a variety of air water absorbing devices, most of which use adsorption / desiration method to obtain fresh water from air, and it is characterized by the first use of moisture absorbing material to adsorb the moisture in the air. After the adsorption is completed, the sun is completed. Direct irradiation or relying on other energy such as electrical...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): E03B3/28
CPCE03B3/28
Inventor 张功慧冯道伦孙化栋
Owner SHANGHAI MARITIME UNIVERSITY
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