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Oxygen-Nitrogen Plants
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BDM Cylinder Fillling Station
Liquid oxygen pump pumps Liquid Oxygen through heat exchanger no. II and I, where liquid Oxygen gets gasified before filling in Cylinders in the FILLING MANIFOLD. The pure bone dry Oxygen gas at ambient temperature and high pressure is filled into OXYGEN CYLINDERS through manifold valves by means of the highly efficient reciprocating LIQUID OXYGEN PUMP.
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Oxygen-Nitrogen Gas Plants
We manufacture Oxygen/Nitrogen Plants from 15m3/Hr to 500m3/Hr for filling high pressure oxygen/nitrogen gas in cylinders and in the following combinations. 1. Oxygen Gas Plants: Capacities ranging from 20Cum/Hr to 500Cum/hr for filling high pressure cylinders upto 150 bar (200 bar optional). Purity 99.6%. (Nitrogen gas available as by product) 2. Oxygen Liquid Plants: Capacities ranging from 15Ltrs/Hr upto 600Ltrs/Hr. Purity 99-99.6%. (Nitrogen gas available as by product) 3. Nitrogen gas Plants: Capacities ranging from 20Cum/Hr to 500Cum/hr for filling high pressure cylinders upto 150
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Control Panel For Gas Plants
Electrical Panel for supply of electricity to individual motors. With overall size 1200 W x 300 D x 1550 Ht. It has a bank of on/off switches and fuses. This enables the Operator to control all the Motors from one point (optional).
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Gas Nitrogen Plant
Gas Nitrogen Plant STAGE 1 – Compression of Air The free saturated air is drawn from atmosphere through a highly efficient dry-type Suction Filter into the first stage of the horizontally balanced opposed, lubricated reciprocating air compressor. The air is compressed over a multistage process to the desired air pressure (30-40 bar) and is then sent to the process skid for further use. STAGE 2- Purification of Air The compressed air is passed into an after cooler where the temperature is reduced to around 35 degree centigrade after which it is chilled in a Chilling Unit to
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Liquid Nitrogen Plant
Liquid Nitrogen Plant STEP I: Air is sucked by a multi stage air compressor and passed through the following stages. STEP II: COMPRESSION OF AIR This is performed by the multistage highly efficient air compressor. STEP III: PURIFICATION OF AIR This is performed by the Process Skid. STEP IV: COOLING & LIQUIFICATION OF AIR This is performed by a highly efficient expansion engine and also by a refrigeration unit (for 100% liquid output). STEP V: AIR SEPARATION (RECTIFICATION) This is performed by the special AIR SEPARATION UNIT consisting
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Liquid Oxygen Plant
Liquid Oxygen Plant PROCESS DESCRIPTION: STEP I: Air is sucked by a multi stage air compressor and passed through the following stages. STEP II: COMPRESSION OF AIR This is performed by the multistage highly efficient air compressor. STEP III: PURIFICATION OF AIR This is performed by the Process Skid. STEP IV: COOLING & LIQUIFICATION OF AIR This is performed by a highly efficient expansion engine and also by a refrigeration unit (for 100% liquid output). STEP V: AIR SEPARATION (RECTIFICATION) This is performed by the special AIR SEPARA
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Oxygen Gas Plants
Oxygen Gas Plants Technical Specifications
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Low Pressure Turbo Series Oxygen-Nitrogen Plants
Low Pressure Turbo Series Oxygen-Nitrogen Plants BDM Cryofusion & Mandressi ITALIA is one of the Leading Manufacturers of Air Separation Plants with Société Générale de Surveillance (SGS) quality approval and ISO 9001:2000 certification. We are manufacturers of Latest Low Pressure Air Separation Plants of the Brand Cryofusion and Mandressi Italia and employ the latest Low Pressure Turbo Technology Series Air Separation Plants of Cryofusion and Mandressi operating at a working pressure of 6 to 8 bar. Our company uses Rotary Screw type Air Compressors of Atlas Co
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Acetylene Gas Plant
Acetylene Gas Plant Acetylene Series Plants Acetylene (C2H2), a compound of carbon and hydrogen, is a colorless, highly flammable gas. It is slightly lighter than air and has a garlic-like odor. Acetylene is stored in high pressure cylinders filled with a porous material and contains acetone, into which the acetylene is dissolved. Unless it is dissolved in a solvent, acetylene will dissociate at pressures above 15 psig and form lamp black and hydrogen. Heat is generated with dissociation, which in turn, produces a danger of explosion. Acetylene is manufactured by the reaction of
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