China high quality Horizontal Reciprocating Pump with vacuum Jacketed Cold End Liquid Nitrogen Hydrogen Fueling Station Lh2 Pump with Hot selling

Product Description

Horizontal Reciprocating Pump with vaccum jacketed cold end Liquid Nitrogen Hydrogen Fueling Station LH2 Pump
Cryogenic Liquid Oxygen Nitrogen Argon Gas Cylinder Filling Station Skid Pumps: workshop
Our factory  is a technology enterprise specialized in R&D,manufacture various of air separation plant and cryogenic application equipment. Our company always insists on taking the technology as the motility, emphasizing technique and products innovation, cooperating with many scientific and research institutes, academic schools which are in the same industry range with us. It has more than 40 years of experience in research and development, design and manufacture of cryogenic products and equipment. The company has strong technical strength and has a number of national patents. Our factory passed the ISO9001:2571 quality management system certification/CE certification and obtained a number of national invention patents. Our main products:

  1. LNG/LCNG Gas Refueling Station
  2. Hydrogen Refueling Station
  3. Cryogenic Liquid Gas Filling Skid
  4. Cryogenic Liquid Pump
  5. Air Ambient Vaporizer
  6. Water Bath Vaporizer

Now our company’s cryogenic products has been exported to America, Italy, Xihu (West Lake) Dis.via, Thailand, Egypt, India, Middle East, Africa and so on.
Cryogenic Liquid Oxygen Nitrogen Argon Gas Cylinder Filling Station Skid Pumps: processing center
Cryogenic Liquid Oxygen Nitrogen Argon Gas Cylinder Filling Station Skid Pumps:cryogenic pumps spare parts
Cryogenic Liquid Oxygen Nitrogen Argon Gas Cylinder Filling Station Skid Pumps:cryogenic pump high pressure
The high pressure cryogenic pump is mainly used in various well cementing, acidification, well repair, well washing operation, well cutting operation, well head decompression and oil recovery and food industry of oil field, carbon dioxide huff and puff and food industry, supercritical extraction chemical industry, plastic foam molding, high pressure pipeline pressure test, high pressure container filling and so on.
 

Name Ultra High Pressure
Cryogenic Pump
 Larger Flow Cryogenic Liquid Pump
Working Medium  LO2/LN2/LAr/LCO2/LNG/H2O LO2/LN2/LAr/LH2/LCO2/LC2H4/NH3/PVDF/CH3/LN2O
Flow 10-10000L/H 15000-60000L/H
Inlet Pressure(Mpa) 0.02-1.6Mpa
Outlet Pressure(Mpa) 25-100Mpa 1.6-5.0Mpa
Operation Conditions Airspace filed/Oil Field Medical and chemical industry/Loading and unloading vehicle/ship/truck/boat

Cryogenic Liquid Oxygen Nitrogen Argon Gas Cylinder Filling Station Skid Pumps: cryogenic pumps skid drawing
Cryogenic Liquid Oxygen Nitrogen Argon Gas Cylinder Filling Station Skid Pumps: export to Euro
Cryogenic Liquid Oxygen Nitrogen Argon Gas Cylinder Filling Station Skid Pumps: export to Indonesia for oil pipeline testing
Cryogenic Liquid Oxygen Nitrogen Argon Gas Cylinder Filling Station Skid Pumps:70Mpa liquid nitorgen pump skid for oil industrial
Cryogenic Liquid Oxygen Nitrogen Argon Gas Cylinder Filling Station Skid Pumps: LNG refuel station pumps 
Liquid Oxygen Nitrogen Argon LNG Air Ambient Vaporizer
The air ambient vaporizer designed by our company is a new generation of heat exchanger with high efficiency, environmental protection and energy saving by heating the low temperature liquid in the heat exchange tube by using the natural convection air in the atomsphere. The perfect design and strict production control make the air temperature carburettor have enough gasification capacity and can operate normally in the cold northeast China. In a certain condition, it can run continuously without interruption.
Cryogenic Liquid Oxygen Nitrogen Argon Gas Cylinder Filling Station Skid Pumps: air heated vaporizer
Cryogenic Liquid Oxygen Nitrogen Argon Gas Cylinder Filling Station Skid Pumps: hydrogen pump skid
Welcome all the customers to visit our factory and cryogenic products production line working site.

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Usage: Hydrogen, Nitrogen, Oxygen, Ozone, CO2/Argon/LNG
Purpose: Gas Manufacturing
Parts: Filters
Customization:
Available

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Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

vacuum pump

What Is the Impact of Altitude on Vacuum Pump Performance?

The performance of vacuum pumps can be influenced by the altitude at which they are operated. Here’s a detailed explanation:

Altitude refers to the elevation or height above sea level. As the altitude increases, the atmospheric pressure decreases. This decrease in atmospheric pressure can have several effects on the performance of vacuum pumps:

1. Reduced Suction Capacity: Vacuum pumps rely on the pressure differential between the suction side and the discharge side to create a vacuum. At higher altitudes, where the atmospheric pressure is lower, the pressure differential available for the pump to work against is reduced. This can result in a decrease in the suction capacity of the vacuum pump, meaning it may not be able to achieve the same level of vacuum as it would at lower altitudes.

2. Lower Ultimate Vacuum Level: The ultimate vacuum level, which represents the lowest pressure that a vacuum pump can achieve, is also affected by altitude. As the atmospheric pressure decreases with increasing altitude, the ultimate vacuum level that can be attained by a vacuum pump is limited. The pump may struggle to reach the same level of vacuum as it would at sea level or lower altitudes.

3. Pumping Speed: Pumping speed is a measure of how quickly a vacuum pump can remove gases from a system. At higher altitudes, the reduced atmospheric pressure can lead to a decrease in pumping speed. This means that the vacuum pump may take longer to evacuate a chamber or system to the desired vacuum level.

4. Increased Power Consumption: To compensate for the decreased pressure differential and achieve the desired vacuum level, a vacuum pump operating at higher altitudes may require higher power consumption. The pump needs to work harder to overcome the lower atmospheric pressure and maintain the necessary suction capacity. This increased power consumption can impact energy efficiency and operating costs.

5. Efficiency and Performance Variations: Different types of vacuum pumps may exhibit varying degrees of sensitivity to altitude. Oil-sealed rotary vane pumps, for example, may experience more significant performance variations compared to dry pumps or other pump technologies. The design and operating principles of the vacuum pump can influence its ability to maintain performance at higher altitudes.

It’s important to note that vacuum pump manufacturers typically provide specifications and performance curves for their pumps based on standardized conditions, often at or near sea level. When operating a vacuum pump at higher altitudes, it is advisable to consult the manufacturer’s guidelines and consider any altitude-related limitations or adjustments that may be necessary.

In summary, the altitude at which a vacuum pump operates can have an impact on its performance. The reduced atmospheric pressure at higher altitudes can result in decreased suction capacity, lower ultimate vacuum levels, reduced pumping speed, and potentially increased power consumption. Understanding these effects is crucial for selecting and operating vacuum pumps effectively in different altitude environments.

vacuum pump

How Do Vacuum Pumps Assist in Freeze-Drying Processes?

Freeze-drying, also known as lyophilization, is a dehydration technique used in various industries, including pharmaceutical manufacturing. Vacuum pumps play a crucial role in facilitating freeze-drying processes. Here’s a detailed explanation:

During freeze-drying, vacuum pumps assist in the removal of water or solvents from pharmaceutical products while preserving their structure and integrity. The freeze-drying process involves three main stages: freezing, primary drying (sublimation), and secondary drying (desorption).

1. Freezing: In the first stage, the pharmaceutical product is frozen to a solid state. Freezing is typically achieved by lowering the temperature of the product below its freezing point. The frozen product is then placed in a vacuum chamber.

2. Primary Drying (Sublimation): Once the product is frozen, the vacuum pump creates a low-pressure environment within the chamber. By reducing the pressure, the boiling point of water or solvents present in the frozen product is lowered, allowing them to transition directly from the solid phase to the vapor phase through a process called sublimation. Sublimation bypasses the liquid phase, preventing potential damage to the product’s structure.

The vacuum pump maintains a low-pressure environment by continuously removing the water vapor or solvent vapor generated during sublimation. The vapor is drawn out of the chamber, leaving behind the freeze-dried product. This process preserves the product’s original form, texture, and biological activity.

3. Secondary Drying (Desorption): After the majority of the water or solvents have been removed through sublimation, the freeze-dried product may still contain residual moisture or solvents. In the secondary drying stage, the vacuum pump continues to apply vacuum to the chamber, but at a higher temperature. The purpose of this stage is to remove the remaining moisture or solvents through evaporation.

The vacuum pump maintains the low-pressure environment, allowing the residual moisture or solvents to evaporate at a lower temperature than under atmospheric pressure. This prevents potential thermal degradation of the product. Secondary drying further enhances the stability and shelf life of the freeze-dried pharmaceutical product.

By creating and maintaining a low-pressure environment, vacuum pumps enable efficient and controlled sublimation and desorption during the freeze-drying process. They facilitate the removal of water or solvents while minimizing the potential damage to the product’s structure and preserving its quality. Vacuum pumps also contribute to the overall speed and efficiency of the freeze-drying process by continuously removing the vapor generated during sublimation and evaporation. The precise control provided by vacuum pumps ensures the production of stable and high-quality freeze-dried pharmaceutical products.

vacuum pump

Can Vacuum Pumps Be Used in Food Processing?

Yes, vacuum pumps are widely used in food processing for various applications. Here’s a detailed explanation:

Vacuum pumps play a crucial role in the food processing industry by enabling the creation and maintenance of vacuum or low-pressure environments. They offer several benefits in terms of food preservation, packaging, and processing. Here are some common applications of vacuum pumps in food processing:

1. Vacuum Packaging: Vacuum pumps are extensively used in vacuum packaging processes. Vacuum packaging involves removing air from the packaging container to create a vacuum-sealed environment. This process helps extend the shelf life of food products by inhibiting the growth of spoilage-causing microorganisms and reducing oxidation. Vacuum pumps are used to evacuate the air from the packaging, ensuring a tight seal and maintaining the quality and freshness of the food.

2. Freeze Drying: Vacuum pumps are essential in freeze drying or lyophilization processes used in food processing. Freeze drying involves removing moisture from food products while they are frozen, preserving their texture, flavor, and nutritional content. Vacuum pumps create a low-pressure environment that allows frozen water to directly sublimate from solid to vapor, resulting in the removal of moisture from the food without causing damage or loss of quality.

3. Vacuum Cooling: Vacuum pumps are utilized in vacuum cooling processes for rapid and efficient cooling of food products. Vacuum cooling involves placing the food in a vacuum chamber and reducing the pressure. This lowers the boiling point of water, facilitating the rapid evaporation of moisture and heat from the food, thereby cooling it quickly. Vacuum cooling helps maintain the freshness, texture, and quality of delicate food items such as fruits, vegetables, and bakery products.

4. Vacuum Concentration: Vacuum pumps are employed in vacuum concentration processes in the food industry. Vacuum concentration involves removing excess moisture from liquid food products to increase their solids content. By creating a vacuum, the boiling point of the liquid is reduced, allowing for gentle evaporation of water while preserving the desired flavors, nutrients, and viscosity of the product. Vacuum concentration is commonly used in the production of juices, sauces, and concentrates.

5. Vacuum Mixing and Deaeration: Vacuum pumps are used in mixing and deaeration processes in food processing. In the production of certain food products such as chocolates, confectioneries, and sauces, vacuum mixing is employed to remove air bubbles, achieve homogeneity, and improve product texture. Vacuum pumps aid in the removal of entrapped air and gases, resulting in smooth and uniform food products.

6. Vacuum Filtration: Vacuum pumps are utilized in food processing for vacuum filtration applications. Vacuum filtration involves separating solids from liquids or gases using a filter medium. Vacuum pumps create suction that draws the liquid or gas through the filter, leaving behind the solid particles. Vacuum filtration is commonly used in processes such as clarifying liquids, removing impurities, and separating solids from liquids in the production of beverages, oils, and dairy products.

7. Marinating and Brining: Vacuum pumps are employed in marinating and brining processes in the food industry. By applying a vacuum to the marinating or brining container, the pressure is reduced, allowing the marinade or brine to penetrate the food more efficiently. Vacuum marinating and brining help enhance flavor absorption, reduce marinating time, and improve the overall taste and texture of the food.

8. Controlled Atmosphere Packaging: Vacuum pumps are used in controlled atmosphere packaging (CAP) systems in the food industry. CAP involves modifying the gas composition within food packaging to extend the shelf life and maintain the quality of perishable products. Vacuum pumps aid in the removal of oxygen or other unwanted gases from the package, allowing the introduction of a desired gas mixture that preserves the food’s freshness and inhibits microbial growth.

These are just a few examples of how vacuum pumps are used in food processing. The ability to create and control vacuum or low-pressure environments is a valuable asset in preserving food quality, enhancing shelf life, and facilitating various processing techniques in the food industry.

China high quality Horizontal Reciprocating Pump with vacuum Jacketed Cold End Liquid Nitrogen Hydrogen Fueling Station Lh2 Pump   with Hot selling	China high quality Horizontal Reciprocating Pump with vacuum Jacketed Cold End Liquid Nitrogen Hydrogen Fueling Station Lh2 Pump   with Hot selling
editor by CX 2024-04-09

Vacuum Pump

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