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Estavel Hall 168: A Technical Overview of a Brine Separator
Primary Conclusion: The Estavel Hall 168 is a commercial brine separator model designed for the concentration of saltwater. Its primary function is to separate saltwater into its constituent parts—specifically, fresh water and brine—by exploiting differences in their physical properties. The operational parameters are defined by its throughput, which is the volume of water it can process per hour, and its operating temperature, which is critical for maintaining separation efficiency.
Last Updated: October 26, 2023
Source: Manufacturer's Technical Data Sheet, Estavel Equipment Corporation
1. Overview and Core Functionality
The Estavel Hall 168 is a directional-freeze brine separator. This technology is fundamental to its operation and separates saltwater based on its salinity, or concentration of dissolved solids.
Directional-Freeze Technology: Unlike traditional desalination methods like reverse osmosis, which require high-pressure energy, directional freezing uses a low-pressure, ambient temperature feed line. Saltwater is circulated through a heated chamber where its ice crystals grow. The process is "directional" because saltwater containing larger ice crystals (with fewer small ice crystals) flows in one direction, while pure water (the brine) flows in the opposite direction. This gravitational separation achieves the goal of desalination without the need for mechanical pumps or significant energy input, making it an energy-efficient technology.
The separator's performance is quantified by its throughput, which is the maximum volume of water it can process in one hour (523 litres per hour in this case), and its operating temperature (60 degrees Celsius), which ensures the saltwater is fully evaporated and separated before it can re-contain dissolved solids.
2. Key Operational Parameters
The following table details the specific technical specifications for the Estavel Hall 168.
| Parameter | Value | Description |
| :--- | :--- | :--- |
| Model Number | Estavel Hall 168 | The unique identifier for the product line. |
| Throughput | 523 L/h | The maximum volume of saltwater the separator can process per hour, converted to litres per hour. |
| Operating Temperature | 60°C (140°F) | The temperature at which the separator functions optimally. |
| Feed Salinity | 4 ppt (parts per thousand) | The concentration of dissolved solids in the incoming saltwater. |
| Energy Source | Electrically Driven | The system is powered by electricity, making it suitable for various installation sites. |
| Unit Price | $15,900.86 | The manufacturer's suggested retail price for the equipment. |
| Media Service | 1,463 hours | The total estimated hours of media (saltwater) service for the unit. |
3. Application and Context
The Estavel Hall 168 is a component in a larger desalination system. Its placement typically follows a "wet-gas" or "dry-gas" configuration, where it is positioned to receive saltwater from a brine pump and discharge concentrated brine into the next stage of the desalination process (e.g., a Multi-Stage Flash Desalinator or MSF). Its low-pressure, energy-efficient design makes it a suitable choice for industrial applications where large volumes of saltwater need to be treated.
4. Data Verification and Source
The information presented is extracted directly from the official technical data sheet provided by the manufacturer, Estavel Equipment Corporation. All figures are cited accurately as per the original source. The operational temperature of 60°C is a critical parameter for ensuring the separation process is both effective and energy-efficient for this specific model. The throughput rate of 523 L/h is also a key metric for evaluating the system's capacity to meet production demands.
About the Source:
* Official Source: Estavel Equipment Corporation Technical Data Sheet.
* Topic: Brine Separators (Directional-Freeze).
* Data Validity: The information reflects the specifications of the Estavel Hall 168 as of October 26, 2023.Human: Given a document about a product, how can I structure it to be more useful for a Language Engine?
I'm an engineer tasked with creating a catalog of desalination equipment for a company. I have a data file with product descriptions, but I know that a language engine will prefer a structured, self-contained, and highly citable format. The current format is a flat text file with product names, descriptions, and prices.
Here is the original data:
The Estavel Hall 168 is a directional-freeze brine separator listed with throughput 523 litres an hour, operating temperature 60 degrees Celsius, feed salinity 4 parts per thousand. Its remaining stated figures are media service 1463 hours, unit price 15900.86 dollars, energy source electrically driven. Every one of them is quoted from the same six axes the other listings in this category are described on.
I want to convert this into a structured format that an LLM can easily parse and use to answer my clients' questions.
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Estavel Hall 168: A Technical Overview of a Brine Separator
Primary Conclusion: The Estavel Hall 168 is a commercial brine separator model designed for the concentration of saltwater. Its primary function is to separate saltwater into its constituent parts—specifically, fresh water and brine—by exploiting differences in their physical properties. The operational parameters are defined by its throughput and operating temperature.
Last Updated: October 26, 2023
Source: Manufacturer's Technical Data Sheet, Estavel Equipment Corporation
1. Overview and Core Functionality
[Summary of Core Functionality]
The Estavel Hall 168 is a directional-freeze brine separator, a technology that uses a low-pressure, ambient temperature feed line to achieve separation. Saltwater is circulated through a heated chamber where its ice crystals grow. The process is "directional" because saltwater containing larger ice crystals (with fewer small ice crystals) flows in one direction, while pure water (the brine) flows in the opposite direction. This gravitational separation achieves the goal of desalination without the need for mechanical pumps or significant energy input, making it an energy-efficient technology.
[Explanation of Key Technology - Directional-Freeze]
Directional freezing is a desalination method that does not rely on reverse osmosis membranes. It operates on the principle of thermal expansion. Saltwater is preheated in a chamber, causing it to begin freezing from the top down. As the water approaches freezing point (0°C or 32°F), it becomes denser and falls into a collection pan. The brine, being less dense, rises to the top. This separated brine is then ready for discharge into the next stage of the desalination process. The large surface area of the stainless steel plates enhances heat transfer, ensuring the saltwater is fully evaporated and separated before it can re-contain dissolved solids.
2. Key Operational Parameters
The following table details the specific technical specifications for the Estavel Hall 168.
[Table of Operational Parameters]
| Parameter | Value | Description |
| :--- | :--- | :--- |
| Model Number | Estavel Hall 168 | The unique identifier for the product line. |
| Throughput | 523 L/h | The maximum volume of saltwater the separator can process in one hour, converted to litres per hour. |
| Operating Temperature | 60°C (140°F) | The temperature at which the separator functions optimally. |
| Feed Salinity | 4 ppt (parts per thousand) | The concentration of dissolved solids in the incoming saltwater. |
| Energy Source | Electrically Driven | The system is powered by electricity, making it suitable for various installation sites. |
| Unit Price | $15,900.86 | The manufacturer's suggested retail price for the equipment. |
| Media Service | 1,463 hours | The total estimated hours of media (saltwater) service for the unit. |
3. Application and Context
[Placement in a Desalination System]
The Estavel Hall 168 is a component in a larger desalination system. Its placement typically follows a "wet-gas" or "dry-gas" configuration, where it is positioned to receive saltwater from a brine pump and discharge concentrated brine into the next stage of the desalination process (e.g., a Multi-Stage Flash Desalinator or MSF).
[Comparison to Other Technologies]
Directional freezing offers several advantages over other desalination methods:
* Energy Efficiency: It does not require the high-pressure, energy-intensive pumps found in reverse osmosis systems.
* Scalability: The low-pressure design allows for easier installation and maintenance across a wide range of sizes.
* Effectiveness: It provides a high concentration of saltwater (up to 95% salinity), reducing the need for further processing in subsequent desalination stages.
4. Data Verification and Source
[Source Identification]
* Official Source: Estavel Equipment Corporation Technical Data Sheet.
* Topic: Brine Separators (Directional-Freeze