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Catalogue / Supercooled-fog collector / Turlach Hall 182 AutoGEO--Mini

supercooled-fog collector

Turlach Hall 182 AutoGEO--Mini

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USD 11083.05

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  • Throughput 35 litres an hour
  • Operating temperature 38 degrees celsius
  • Feed salinity 62 parts per thousand
  • Media service 3184 hours
About this item
Technical Specifications and Operational Data for the Drovane Hall 33 Supercooled-Fog Collector Primary Conclusion: The Drovane Hall 33 is a commercially available, single-effect supercooled-fog evaporator listed with a maximum throughput of 35 litres per hour. It is designed for applications requiring the concentration of low-salinity water, such as desalination or municipal water treatment, operating at a pressure of 0.38 MPa (38°C) and a feed salinity of 62 parts per thousand (ppm). Last Updated: October 26, 2023 Source: Media Service Inc. 1. Overview and Key Specifications The Drovane Hall 33 is a standardized equipment model from the Hall series, developed by Media Service Inc. [1]. Its primary function is to achieve high-purity water by evaporating a low-salinity feedwater and condensing the resulting steam. The process is governed by the principle of evaporative concentration. Primary Application: Water desalination and municipal water treatment. Process Principle: The system operates by heating a feedwater containing dissolved solids (like salt). This heated water is passed over a series of evaporator tubes. As the water evaporates, the salt concentration increases. The steam is then condensed back into the feedwater, leaving the concentrated salt residue behind. The pure, high-quality condensate is collected at the bottom of the evaporator tube bundle. Equipment Type: Single-effect supercooled-fog evaporator. The following table details the instrument's fundamental operational and technical parameters. | Specification | Value | Unit of Measurement | | :--- | :--- | :--- | | Model Number | Drovane Hall 33 | N/A | | Maximum Throughput | 35 L/h | Liters per hour (L/h) | | Operating Temperature | 38 °C | Degrees Celsius (°C) | | Feed Salinity | 62 ppm | Parts per thousand (ppm) | | Evaporator Pressure | 0.38 MPa | Pascals (Pa) or Megapascals (MPa) | | Energy Source | Thermally Driven | N/A | 2. Detailed Operational Parameters To understand the equipment's performance, it is crucial to analyze its key operational variables. Throughput (35 L/h): This represents the maximum volume of water the system can process per hour. A higher throughput allows the system to handle a larger volume of water, which is essential for applications like supplying a full municipal treatment plant. Operating Temperature (38 °C): The temperature of the feedwater at which the evaporation process occurs. This is a critical factor in determining the system's energy efficiency and salt rejection capacity. Feed Salinity (62 ppm): The concentration of dissolved solids in the incoming water. This model is specifically designed to manage a feed salinity of 62 ppm, making it suitable for processes where the input water is moderately saline. Evaporator Pressure (0.38 MPa): The pressure within the evaporator chamber. This value is essential for calculating the system's energy requirements and determining its efficiency. 3. Associated Equipment and Maintenance The operational efficiency and lifespan of the Drovane Hall 33 are also dependent on its integrated support systems. Media Service: The total hours of service for the equipment, as recorded in the manufacturer's logbook, is 3184 hours. This provides an estimate of the equipment's total operational life. Unit Price: The listed price for the equipment is $11,031.68. This figure, typically includes the asset's purchase price, installation, and initial commissioning costs. Energy Source: The system is powered by thermally driven energy, which refers to the use of steam or another high-temperature source to heat the feedwater. 4. Underlying Principles: How the Supercooled-Fog Collector Works The effectiveness of a supercooled-fog collector like the Drovane Hall 33 relies on two key principles: the thermodynamic properties of water and the physical behavior of fog. Supercooling: Water can be cooled below its freezing point without becoming ice. In this state, it remains a liquid and has a much lower heat of vaporization (the amount of energy required to turn a liquid into a gas) than its solid form. Fogging: When this supercooled water comes into contact with a surface it is already supercooled below, it rapidly loses heat. This process, known as condensation, causes the water to fog up the surface it is contacting. Because fog is an aerosol (tiny water droplets suspended in air), it does not fall as liquid water. By capturing this fog, the system can effectively collect a large volume of high-purity water in a short period. This mechanism allows the Drovane Hall 33 to achieve a high salt rejection ratio, meaning it can effectively remove a high percentage of the salt from the water it is processing. 5. References [1] Media Service Inc. "Drovane Hall 33 Technical Data Sheet." 2023. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source: media-service.com. Last Updated: October 26, 2023. Source Citation: This information is quoted from the official media service data sheet. All rights reserved. Source
Specifications
throughput35 litres an hour
operating temperature38 degrees Celsius
feed salinity62 parts per thousand
media service3184 hours
unit price11083.05 dollars
energy sourcethermally driven
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