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We offer a complete product range of DRY Air System, PSA Oxygen Generation System, Dew Point Measurement System, Integrated Gas Generation System and OZONE Generation System

Psa Nitrogen Generator

Nitrogen is presently being used in a broad spectrum of industries, laboratories, tank farms, mines, etc. In most applications, the N2 pressure required is less than 6 bar. Despite this, high pressure N2 cylinders are commonly used as source of N2, whose handling is quite hazardous & risky. A better option would be to produce your own low pressure N2 by installing our Nitrogen Generator.

DRY Air System

Compressed air produced by a Compressor is hot, dirty & humid and cannot be used in this state by pneumatic devices or other uses like producing nitrogen oxygen, powder coating, pneumatic conveying, sand shot blasting, micronizing, etc. Our Compressed Air System is a ready-to-use package producing oil & moisture-free compressed air to the purity level required by the end-use. Standard Systems at 7 bar working pressure will give air quality of ISO-8573-1, Class 3:3:2. (Particulates < 5, Moisture PDP of - 20 C & Oil < 0.1mgM) If the end-use moisture content is not stringent (Moisture PDP of +3 C, is acceptable), a Refrigeration Air Dryer will be provided instead of Heatless Air Dryer.

PSA Oxygen Generation System

The PSA Oxygen Generation System produces oxygen suitable for many applications such as brazingsoldering, ozone generation, chemical oxidation, fermentation, waste water & sewage treatment, healthcare, glass & neon manufacture, pulp & paper, furnace air enrichment, preheating of metals, battery manufacture, metal smelting , etc .

LAB Nitrogen Generator

Nitrogen is widely used in Gas chromatography because Most gas chromatography column stationary phases are based on modified polysiloxane or polyethylene glycol materials. These materials oxidize in the presence of oxygen at elevated temperatures. This behavior, known in part as bleed, will very quickly degrade the performance of the column.

Heatless Air Dryer

Compressed air coming from the Receiver containing solid, liquid & vapour contaminants enters the Dryer through the Pre-filter (where solid & liquid contaminants are removed). It then passes through Oil Removal Filter and enters into Adsorption Tower A1 through a 3-way valve (CV-1) where it gets dried and then passes out of the Dryer through the After-filter. A part of this dry air passes through Tower A2 through the Purge Control Valve, where it picks up the moisture from the adsorbent thereby regenerating it and making it ready for the adsorption cycle. The purge air exhausts out of the Dryer through Purge Exhaust Valve (CV-2) of Tower A2.

VPSA Oxygen Generators

Oxygen is conventionally produced from air by cryogenic separation process. This is a power intensive & high pressure process which requires power of approx. 1.2 KWHNM3 of oxygen. The VPSA Process separates oxygen from air at a low pressure

Auto Drain Valves

Due to cooling of compressed air, condensation of oil & water vapour takes place in Moisture Separators, Air Receivers, Filters, etc. Regular draining of these equipment is an essential maintenance function. By installing Auto Drain Valves, you can ensure that all equipment of the Compressed Air System get drained regularly without manual dependence, except for periodic checks. Low cost timer based ADVs are commonly used, but for larger Systems, zero air loss level based ADVs are used

Dew Point Measurement System

When air is cooled, the temp at which condensation takes place is termed the Dew Point (DP). A simple method of determining the DP is to cool the air around a highly polished surface and cooling it. When the DP is reached, condensation on this surface makes it cloudy and the temp observed at this point is the DP. In our Dew Point Measurement System, cooling is done by dry ice ( solid CO2) in a polished tube and temp is measured by a Digital Temp Indicator. This system can be used whenever periodic checking of dew point is required.

Integrated Gas Generation System

Compressed air, nitrogen & oxygen are important Utility gases in all types of industries. The Compressed air system is installed in virtually all facilities, while the other gases are purchased. Recently developed processes have led to dramatically increased use of oxygen, nitrogen & ozone to improve economics & efficiency as well as satisfy environment concerns. Because of increased usage, it became more economical to produce nitrogen & oxygen rather than purchasing them. This can be done by installing our PSA Nitrogen & Oxygen Generators which produce nitrogen & oxygen from compressed air onsite, thereby reducing their costs. This cost reduction has made it possible to use oxygen and nitrogen in applications where it was earlier not economically viable.

Tube Heat Exchanger

This is a shell & tube type Heat Exchanger where compressed air in the shell is cooled by plant cooling water circulating in the. tubes. The liquids which condensed due to cooling are separated by the in- built Moisture Separator. Draining can be done manually or by Auto Drain Valve.

OZONE Generation System

The Ozone Generation System produces ozone onsite using oxygen from the PSA Oxygen Generator as feed gas. This ozone is suitable for many applications such as waste water & sewage treatment, Cooling Tower water treatment, bottled water, pulp bleaching, etc.

Gas Generator Plant

  • Features Flawlessness, Sturdy nature, Low maintenance, Easy installation
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