A5T

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A5T

The Direct Air Water Capture (DAWC) System, a large-scale 10,000-ton-class technology utilizing advanced adsorption materials to harvest water from air, represents the world's lowest-cost water-source-free solution. As an integrated water generation unit combining MOFs-based hygroscopic components, multi-stage heat exchange, and heat pump waste heat recovery, it operates efficiently under dual working modes. A single containerized unit can continuously capture over 2,000–10,000+ tons of purified water annually in extreme low-temperature/low-humidity environments (as low as 5°C, 20% RH)

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  • Description

Ultra-low Cost

The current cost of electricity per kilowatt-hour for water production is stable at 100-130 KWH/ton, and it will continue to be optimized towards 50kWh/ ton in the future, approaching or even lower than the cost of seawater desalination

Distributed Supply

The initial investment is low, and the location is not restricted. There is no need for a water supply network system, thus saving investment in water conservancy transportation pipelines

Multi-scenario Adaptation

It is applicable to various scenarios such as dry and dry water shortage and underground water source pollution, without being restricted by water source and water quality

Multi-energy Compatibility

It is compatible with conventional power sources, photovoltaic systems, electrochemical energy storage, etc., and is more convenient for outdoor multi-scenario deployment

A5T IOT system

InternetSIM Card/International Wireless Router
Background ManagementPC/ Mobile App
Operation Data StatisticsWater Production Volume/Electricity Consumption/Working Time
Data ApplicationAutomatically Record Data
Generate Reports And Export
LanguageEnglish (Switchable)

Technical Indicators

Properties Parameters Unit Test conditions
Gel density 1.23 g/cm³ @25°C, below LCST
Saturated water absorption 35 g/g below LCST
Continuous cooling capacity 600 Hr/(mm/w/m²) @25°C, 50%RH
Coefcient of thermal expansion 0.002 K−1 @25°C, below LCST
Water loss rate @ Hightemperature 20 mg cm−2 h−1 @50°C, 60%RH
Water replenishment rate in normal state S mg cm−2 h−1 @25°C, 60%RH
Coefficient of variation of equilibrium thickness 0.16–0.32 %RH−1 @25°C, 40–95%RH
Balance weight variation coefficient 0.12–0.37 g cm−3%RH−1 @25°C, 40–95%RH
Gel tensile strength 0.25 MPa @25°C, below LCST
Elastic yield elongation 220 % @25°C, below LCST
Gel compression modulus 0.88 MPa @25°C, below LCST
Tear strength 0.9 kN/m @25°C, below LCST
Creep resistance No stress relaxation @25°C, below LCST
Acid and alkalineresistance excellent @25°C, below LCST
High temperature resistance excellent
Storage stability > 2 years Indoor temperature and humidity preservation

Application Scenario

Centralized Direct Air Water Captur (C-DAWC) HurRain has developed a system for capturingwater from the air using adsorption of new material technology calledCentralised Direct Air Water Capture (C-DAWC). A single container shell equipment can continuously capture more than 2,000 to 1,500,000 tonnes/year of pure water at low temperature and low humidity (as low as 5°C and 20% RH), withthe characteristics of convenient application (container-type delivery), lowcost (long-term cost will be as low as 1.5 to 2 U.S. dollars per tonne ofwater), high stability and standard of water quality (the standard waterquality of TDS is less than 35 ppm), etc.

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