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HCl Stack Gas Analyzer

  • Zero Drift (+/-) 2.0% FS
The ZSS uses a non-dispersive infrared absorbance system which is made up by an infrared semiconductor laser for a light source and a photo-diode for the photo-detection. Measure NH3, HCl, H2O, O2, CO, CO2, and CH4 gas concentrations in a stack at high speed.
Excellent Stability for Long Periods
Maintenance Free & Highly Efficient
Operates in High Temperatures & Dusty Conditions
Fast Response (2 sec. or less)
Low Interference with Other Gases
Zero Drift: (+-) 2.0% FS
High Vibration Resistance
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Wobbe Index BTU Calorimeter

  • Model No. COSA 9610
The COSA 9610 Wobbe Index Meter's measuring principle is based on the analysis of the oxygen content in the flue gas after combustion of the sample. A continuous gas sample is mixed with dry air at a precisely maintained constant ration, which depends on the BTU range of the gas to be measured. The fuel air mixture is oxidized in a combustion furnace in the presence of a catalyst at 800C, and the oxygen concentration of the combusted sample is measured by a zirconia oxide cell. The residual oxygen provides an accurate measurement for the Combustion Air Requirement (CARI) of the sample gas, which can be correlated accurately to the Wobbe Index of the gas.
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Continuous Hydrogen Analyzer

The COSAXentaur Continuous Hydrogen Analyzer (CHA), used in countless UOP Schedule A applications for many years, is built under a license to a patented UOP design. It provides petroleum refiners, petrochemical producers, and electric power generators a means to continuously and accurately monitor hydrogen concentration in gaseous streams.
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Xentaur Moisture Analyzer

  • Model No. XTDL-HTâ„¢
Optical Moisture Meter for Heat Treating Applications and Moisture in CO2 Applications. The XTDL-HT is designed with a new proprietary optical sampling system for the dirty blanket gases in your Heat Treating applications that causes other analyzers to be damaged, readings to drift and a measurement that cannot be trusted as reported by our many customers after 30 years in this business.
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Xentaur Dew Point Extractive Sampling System

Building sample systems for measuring dew point in gases is not an easy task. It requires experience and a complete understanding of the often unexpected behavior of water molecules. Selection of the proper materials, components and final system configuration will greatly influence the fidelity of the sample carried to the sensor.
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Dew Point Meter

  • Model No. HDT
The Model HDT Dew Point Meter uses a Xentaur HTF high capacitance aluminum oxide sensor with a measuring range of -100C to +20F or -60C to +20C. Customers can also request special ranges for special applications. The Xentaur dew point sensors provide a high degree of accuracy, speed, of response and stability unavailable from instruments using conventional aluminum oxide or polymer sensors.
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Dew Point Transmitter

  • Model No. XDT
The XDT transmitter electronics take full advantage of state of the art microprocessor technology and offer many advanced intelligent features. With optional dual alarms, analog and digital outputs, the Xentaur dewpoint transmitters can be used as indicators, alarm units or controllers.
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Xentaur Explosion Proof Aluminum Oxide Sensor

  • Model No. XDT
The model XDT uses a Xentaur HTF Aluminum Oxide sensor. The breakthrough HTF sensor technology represents advances in thin film and metal oxide sciences and offers significant performance advantages over all other aluminum oxide sensors.The operating principle of the HTF aluminum oxide sensors is that a hygroscopic layer of aluminum oxide adsorbs or releases water molecules within its pores, depending on the water vapor pressure in its environment. The electrical capacitance of the aluminum oxide layer changes with the surrounding water vapor pressure. The electrical capacitance is measured between the aluminum core of the sensor and a porous conductive gold layer on the outside.The advantages of the HTF sensor technology are a result of the proprietary manufacturing method in which the aluminum oxide layer is made to be hyper thin as well as extremely hygroscopic. This results in a very sensitive sensor with fast response.
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  • (COSA Xentaur Corp.)
  • Yaphank, NY 11980, United States
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