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Energy-saving environment humidity control and air water production method and system

A technology of environmental humidity and air water production, applied in air conditioning systems, space heating and ventilation, heating methods, etc., can solve problems such as inability to recycle, high energy consumption of dehumidification systems, etc., achieve small footprint and reduce equipment volume , the effect of compact equipment structure

Active Publication Date: 2022-01-14
余青霓 +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Traditional environmental humidity control uses the following methods for dehumidification: cooling dehumidification, compression dehumidification, chemical dehumidification, etc. In the above dehumidification methods, the high-value phase change latent heat of gaseous water into liquid water becomes the energy load of the dehumidification system. Unable to recycle, resulting in huge energy consumption of the dehumidification system

Method used

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  • Energy-saving environment humidity control and air water production method and system
  • Energy-saving environment humidity control and air water production method and system
  • Energy-saving environment humidity control and air water production method and system

Examples

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Effect test

Embodiment 1

[0063]An energy-saving environmental humidity control and air water production method and system, the environmental humidity control and air water production system includes a set of air circulation control components, a set of water vapor adsorption and desorption and latent heat recovery integrated device 2, a set of catalytic oxidation reaction device 82, a set of air compressor 81, a set of measurement and control system 11, and a set of water quality depth filtration and purification components 85. The measurement and control system 11 is used to monitor the specific desorption time of the water vapor adsorption and desorption and latent heat recovery integrated device 2, and the water vapor adsorption The cavity of the desorption and latent heat recovery integrated device 2 is provided with a heater 21, a tube condenser 22, an inner filter 23, an outer filter 24 and a water-absorbing material 26, and the heater 21 is fixedly installed on one side of the tube condenser 22. ...

Embodiment 2

[0066] Example 2: Please refer to Figure 7 A flow chart of drinking water preparation used in parallel with one set of environmental humidity control and air water production system;

[0067] A set of specific steps for the use of the environmental humidity control and air water production system are:

[0068] Step 1 (1): The air flow enters the water vapor adsorption, desorption and latent heat recovery integrated device 2 through the control valve 83, and the water-absorbing material 26 absorbs the moisture in the air flow; the control valve 83 includes a control valve V1 and a control valve V3, wherein:

[0069] Turn on the intake fan 3, the control valve V1 and the control valve V3, the intake fan 3 drives the air flow through the control valve V1 to enter the water vapor adsorption, desorption and latent heat recovery integrated device 2, the water vapor flow enters the pipeline where the air compressor 81 is located, and the water-absorbing material 26 Absorb the moist...

Embodiment 3

[0074] Example 3: Please refer to Figure 8 Flow chart of drinking water preparation using two sets of water vapor adsorption and desorption and latent heat recovery integrated devices 2 in parallel for medium environment humidity control and air water production system;

[0075] A set of environmental humidity control and air water production system includes a set of air circulation control components, two sets of water vapor adsorption and desorption and latent heat recovery integrated devices 2, two sets of catalytic oxidation reactors 82, a set of air compressors 81, and a set of coolers 84. A set of measurement and control system 11 and a set of water quality depth filtration and purification components 85. The measurement and control system 11 is used to monitor the specific desorption time of the integrated device 2 for water vapor adsorption, desorption and latent heat recovery, and strive for an integrated device for water vapor adsorption, desorption and latent heat r...

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Abstract

The invention discloses an energy-saving environment humidity control and air water production method and system, and belongs to the cross technical field of environment humidity control, energy recovery and water quality purification. The environment humidity control and air water production system comprises an air inlet fan, a water vapor adsorption and desorption and latent heat recovery integrated device, a catalytic oxidation reactor, an air compressor, an air circulation control assembly, a measurement and control system and a water quality deep filtration and purification assembly. The water vapor adsorption and desorption and latent heat recovery integrated device comprises a heater, a pipe bundle condenser, an inner filter screen, an outer filter screen, a water absorption material and a vacuum heat preservation shell, wherein the heater is fixedly mounted on one side of the tube nest condenser, the pipe bundle condenser is fixedly mounted in an inner cavity of the outer filter screen, the inner filter screen is fixedly mounted on the inner side of the pipe bundle condenser, the outer filter screen is fixedly mounted on the outer side of the pipe bundle condenser, and a water absorption material is arranged in an inner cavity between the outer filter screen and the inner filter screen.

Description

technical field [0001] An energy-saving environmental humidity control and air-based water production method and system, which belong to the interdisciplinary technical field of environmental humidity control, energy recovery and water purification, and take into account the sterilization function of drinking water preparation. Background technique [0002] Traditional environmental humidity control adopts the following methods for dehumidification: cooling dehumidification, compression dehumidification, chemical dehumidification, etc. In the above dehumidification methods, the high-value phase change latent heat of gaseous water into liquid water becomes the energy load of the dehumidification system. Unable to recycle, resulting in huge energy consumption of the dehumidification system. [0003] The dehumidification function used in the present invention integrates the adsorption and desorption of water-absorbing materials and the phase-change latent heat recovery function...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E03B3/28F24F3/14F24F11/89
CPCE03B3/28F24F3/14F24F11/89F24F2003/144
Inventor 余青霓赵成坚郭树升
Owner 余青霓
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