Leave Your Message
Helium Extraction Unit for Scientific Experiments - High-Quality China Suppliers and Factory Solutions
Hot Products

Helium Extraction Unit for Scientific Experiments - High-Quality China Suppliers and Factory Solutions

Introducing our Helium Extraction Unit, designed specifically for scientific experiments and research purposes. Manufactured in China, this state-of-the-art equipment is an essential tool for laboratories seeking reliable helium extraction solutions. As a leading supplier in the industry, our factory ensures that every unit meets high-quality standards, providing researchers with the precision and efficiency they need to succeed. Explore the potential of your scientific experiments with our advanced Helium Extraction Unit and experience the expertise of trusted China suppliers.

    Product Description

    • Fullcryo Helium Extraction (from LNG/Natural Gas)
    • There is no impact on the production of existing LNG plants.
    • Suitable for LNG plants of 500,000 cubic meters and above.
    • Reduce operating costs of existing LNG plants.
    • The economy is good, and the investment recovery time is short.
    Most commercial helium is extracted from natural gas because certain natural gas fields contain significant amounts of helium (usually between 0.3% and 1.9%). Fullcryo’s HEU, suitable for extracting helium from BOG in an LNG plant with a capacity over 500,000 Nm³/d, features helium extraction with a power consumption of less than 25 kwh/Nm³ and yields an output helium gas product with a purity of over 99.999%.

    Product Details

    Helium plays a crucial role in scientific experiments, particularly in the fields of low-temperature physics and other areas requiring extreme conditions.
    1. Cryogenic Cooling:
    - Liquid Helium: Liquid helium is the coldest known coolant, capable of reaching temperatures close to absolute zero (-273.15°C or 0 Kelvin). It is used in superconductivity research, low-temperature physics experiments, and quantum mechanics research.
    - Superfluid Helium: Below 2.17 Kelvin, liquid helium transitions into a superfluid state, exhibiting unique properties like frictionless flow and other quantum characteristics, making it essential for studying quantum liquids and macroscopic quantum phenomena.
    Helium Cryogenic Cooling System
    2. Particle Accelerators and Magnetic Resonance Imaging (MRI):
    Helium is used to cool the superconducting magnets in particle accelerators and MRI machines, maintaining their superconducting state and enhancing the performance and precision of the equipment.
    3. Cosmic Ray and Particle Physics Experiments:
    In some particle detectors, helium is used as a detection medium, helping to identify and analyze the behavior and properties of high-energy particles and cosmic rays.
    Helium is an indispensable tool in scientific experiments. Its unique physical properties make it the ideal choice for many high-precision, high-demand experiments.

    Parameter

    Helium Extraction Technical Parameters

    Factory Pictures

    Factory Production Line 1Factory Production Line 2Factory Production Line 3Factory Production Line 4

    Frequently Asked Questions

    What is the feed source for Fullcryo's Helium Extraction Unit?

    Fullcryo's Helium Extraction Unit (HEU) is designed to extract helium from BOG (Boil-Off Gas) in LNG and natural gas plants.

    Will the installation of the HEU affect current LNG production?

    No, there is no impact on the production of existing LNG plants. It integrates smoothly and helps reduce overall operating costs.

    What capacity of LNG plant is suitable for this system?

    The helium extraction system is suitable for LNG plants with a treatment capacity of 500,000 cubic meters (Nm³/d) and above.

    What is the power consumption and purity of the extracted helium?

    The system operates with a power consumption of less than 25 kwh/Nm³ and yields an output helium gas product with a purity exceeding 99.999%.

    Why is liquid helium crucial for cryogenic cooling?

    Liquid helium is the coldest known coolant, capable of reaching temperatures close to absolute zero (-273.15°C or 0 Kelvin). Below 2.17 Kelvin, it becomes a superfluid with frictionless flow, which is essential for low-temperature physics and superconductivity research.

    What other scientific applications rely on helium?

    Helium is widely used to cool superconducting magnets in MRI machines and particle accelerators, and serves as a detection medium in cosmic ray and particle physics experiments.