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Medical And Industrial Gases

We offer a complete product range of liquid oxygen, Liquid Argon, liquid nitrogen gas, liquid argon gas and calibration gas mixtures

Liquid Oxygen

Oxygen is a colorless, odorless and tasteless gas that supports life and combustion. All elements, except rare gases, react with oxygen, over a wide range of temperatures, to form oxides. Oxygen is 1.1 times heavier than air and is slightly soluble in water.

Oxygen is present in the atmosphere at a concentration of 21.0%. Oxygen is recovered from air in an Air Separation Unit (ASU) where it is drawn off as a cryogenic liquid at about -298F. Oxygen can then be distributed as a cryogenic liquid or as a gas in cylinders. Oxygen can also be generated onsite, using various techniques.

The major uses of oxygen are based on its combustion-sustaining, oxidizing and life-supporting attributes. Whether used directly or to enrich combustion air, oxygen is widely used with fuel gases in furnaces, smelters, kilns, welding and metal cutting. Oxygen is used in chemical production as a raw material and in pulp manufacturing as a bleaching agent. Most importantly, oxygen is used for medical reasons to save and protect life.

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Liquid Argon

Argon is a colorless, odorless, tasteless and nontoxic gas. Argon, along with helium, neon, krypton, xenon and radon is also known as a rare gas. Argon forms no known chemical compounds. The gas is 1.38 times heavier than air and is slightly soluble in water.

Argon is present in the atmosphere at a concentration of 0.93%. Argon is recovered from air in an Air Separation Unit (ASU) where it is drawn off as a cryogenic liquid at about -303F. Argon can then be distributed as a cryogenic liquid or as a gas in cylinders.

Applications for argon often utilize its inert properties for protection against the oxidizing effect of air. Argon is widely used as a blanketing or shielding gas in metallurgy and arc welding and cutting. Argon is also used to fill incandescent and fluorescent lamps.

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Liquid Nitrogen Gas

  • Weight in Kg 1.0
Nitrogen is colorless, odorless and tasteless. It is nonflammable, will not support combustion and is not life-supporting. The gas is slightly lighter than air and is only slightly soluble in water. When liquid nitrogen is vaporized and then heated it consumes a large amount of heat, making it an ideal coolant.
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Liquid Argon Gas

  • Weight in Kg 1.0
Argon is a colorless, odorless, tasteless and nontoxic gas. Argon, along with helium, neon, krypton, xenon and radon is also known as a rare gas. Argon forms no known chemical compounds. The gas is 1.38 times heavier than air and is slightly soluble in water.Argon is present in the atmosphere at a concentration of 0.93%. Argon is recovered from air in an Air Separation Unit (ASU) where it is drawn off as a cryogenic liquid at about -303F. Argon can then be distributed as a cryogenic liquid or as a gas in cylinders.
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Calibration Gas Mixtures

We handle over 80 different types of gases and liquid chemicals to produce varieties of Gas Liquid mixtures to serve the ever increasing need of Industries and Institutions.
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Calibration Gas

We handle over 80 different types of gases and liquid chemicals to produce varieties of Gas / Liquid mixtures to serve the ever increasing need of Industries and Institutions

The gas mixtures are made to any concentration within the permissible limits of Physics and Chemistry. Which are non-explosive, non-reactive, stable mixture of gases in wide range of packaging.

Gravimetric filling uses ultra-high precision balances, calibrated & traceable NPL body periodically to weigh each component into the cylinder. This ensures that the expected tolerance requirements are always fulfilled.

To achieve minimum Blend tolerance and to minimize uncertainty we use

High purity raw materials through Linde A.G. Technology Plant

Properly prepared cylinders with good internal surface

Sophisticated Equipments to handle ppb level mixtures

Right blending methods

Accurate Instruments and Accurate Standards

Our calibration mixtures are prepared and certified to meet the most stringent metrological standards. Precise manufacturing of calibration gas mixtures involves many critical steps-Raw material purity

  1. Impurity characterization
  2. Calculation of phase behavior for the calibration gas mixture
  3. Cylinder Preparation
  4. Precise blending
  5. Independent confirming analysis of the final calibration gas mixture
  6. Traceability
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