Bulletin AGS-Spectroscopy-C
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Bulletin AGS-Spectroscopy-C - 1

Analytical Gas Systems Analytical Gas Systems Products for Spectroscopy Products for Spectroscopy Bulletin AGS-Spectroscopy-C Bulletin AGS-Spectroscopy-B aerospace climate control electromechanical filtration fluid & gas handling hydraulics pneumatics process control sealing & shieldin

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Bulletin AGS-Spectroscopy-C - 2

Parker Hannifin Corporation The Global Leader in Motion and Control Technologies We engineer success of our customers around the world, drawing upon nine core motion and control technologies. These technolgies enable virtually every machine and process to operate accurately, efficiently and dependably. As the global leader in motion and control, we partner with our distributors to increase our customers’ productivity and profitability by delivering an unmatchable breadth of engineered components and value-added services. We continue to grow with our customers by creating application-focused...

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Bulletin AGS-Spectroscopy-C - 3

Table of Contents Products for Spectroscopy FT-IR Purge Gas Generators Self-Contained FT-IR Purge Gas Generator ICP Spectrometer Nitrogen Generator High Purity Nitrogen Generators Ultra Dry Gas Generator Atomic Absorption Gas Purifier Recommended Gas Generators Additional Parker Products Voltage Appendix Gas Generator Services Offer of Sale

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FT-IR Purege Gas Generators FT-IR Purge Gas Generators The Parker Balston FT-IR Purge Gas Generator is specifically designed for use with FT-IR Spectrometers to provide a purified purge and air bearing gas from compressed air. The generator supplies carbon dioxide-free air at less than -100°F (-73°C) dew point with no suspended impurities larger than 0.01 pm. The unit is designed to operate continuously 24 hours/day, 7 days/week. The Parker Balston Purge Gas Generator completely eliminates the inconvenience and the high costs of nitrogen cylinders and dewars, and significantly reduces the...

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Principal Specifications Model Number Flow Rate for Specified Dew Point Inlet Pressure 125 psig Inlet Pressure 60 psig CO2 Concentration Dew Point Min/Max Inlet Air Pressure Max Inlet Air Temperature (1) Air Consumption for regeneration (2) Inlet/Outlet Port Size Electrical Requirements (3) Dimensions Shipping Weight FT-IR Purege Gas Generators NOTES 1 Outlet dew point will increase at higher inlet compressed air temperatures. 2 Total air consumption = regeneration flow + flow demand. 3 Units provided with universal power supply. Ordering Information for assistance, call 800-343-4048, 8 to...

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Self-Contained FT-IR Purge Gas Self-Contained FT-IR Purge Gas Generator The Parker Balston Model 74-5041NA FT-IR Purge Gas Generator is specifically designed for use with FT-IR spectrometers to provide a purified purge and air bearing gas supply from compressed air. The Parker Balston model 745041NA provides instruments with CO2-free compressed air at less than -100°F (-73°C) dew point with no suspended impurities larger than 0.01 micron 24 hours/day, 7 days/ week. The Parker Balston Self-Contained FT-IR Purge Gas Generator completely eliminates the inconvenience and the high costs of...

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Principal Specifications Self-Contained FT-IR Purge Gas Generator Maximum Flow Rate (at 80 psig) Maximum Output Pressure CO2 Concentration Dew Point Outlet Port Size Min/Max Ambient Temperature Electrical Requirements (single phase) Compressor Dimensions Shipping Weight NOTES 1 Refer to voltage appendix for electrical and plug configurations for outside North America. Self-Contained FT-IR Purge Gas Ordering Information for assistance, call 800-343-4048, 8 to 5 Eastern Time Description Model Number FT-IR Purge Gas Generator 74-5041NA Preventive Maintenance Plan 74-5041-PM Extended Support...

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ICP Spectrometer Nitrogen Generator The Parker Balston 76-97NA and 76-98NA UHP Nitrogen Generators can produce 5-12 lpm of ultra high purity nitrogen gas. These systems are completely engineered to transform standard compressed air into 99.995% to 99.9999% of pure nitrogen, exceeding the specification of UHP cylinder gas and dewars. Nitrogen is produced by utilizing a combination of state-of-the-art purification technologies and high efficiency filtration. Pressure swing absorption is utilized for the removal of 02, CO2, and water vapor. A catalyst module is incorporated in the 76- 98NA to...

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Flow Tables - Models 76-97NA and 76-98NA @ 99.9999% Purity @ 99.995% Purity ICP Spectrometer N2 Generator Principal Specifications 76-97NA 99.995% and 99.9999% See Table (above) < 1 ppm < 1 ppm < 1 ppm < 2 ppm 0.9% 60 psig/120 psig 78°F (25°C) 60°F-100°F (16°C-38°C) 3.0 scfm 1/4” NPT 1/8” NPT, convertible to 1/4” NPT 120 VAC/60 Hz 41”h x 25”w x 25”d (104cm x 64cm x 64cm) 500 lbs (227 kg) Model Nitrogen Pu rity Max Nitrogen Output Pressure CO Concentration CO2 Concentration O2 Concentration H2O Concentration Hydrocarbon Concentration (1) Argon Concentration (2) Min/Max Inlet Pressure...

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High Purity Nitrogen Generators The Parker Balston Ultra High Purity (UHP) Nitrogen Generators are engineered to transform standard compressed air in to a safe supply of 99.999% pure nitrogen. Innovative design features include integral compressors with economy mode as standard. This extends compressor life and reduces ongoing running costs. Typical applications include optical purge for ICP-OES (Inductive Coupled Plasma - Optical Emissions) high flow GC make up gas, solvents evaporation, DSC (Differential Scanning Calorimeter) and virtually any analytical instrument that requires a small...

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Nitrogen is produced by utilizing a combination of filtration and pressure swing adsorption (PSA) technology. Standard compressed air is filtered by high efficiency coalescing filters to remove all contaminants down to 0.01 micron. The air then passes through two columns filled with carbon molecular sieve (CMS) which adsorb O2, CO2 moisture and hydrocarbons. These are desorbed to atmosphere during the pressure swing cycle leaving a supply of ultra pure nitrogen. Outlet connection Min/Max Inlet Air Temperature Electrical requirements Power consumption Dimensions (HxWxD) Description Purity...

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