Hiden Analytical Released Carbon Monoxide Analyzer
The new analyzer allows for quantitative carbon monoxide measurements in complex gas mixtures.
Updated on Sept. 23, 2026 in Chemistry

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Hiden Analytical has launched a new carbon monoxide analyzer designed to provide accurate readings within complex gas environments. This instrument integrates directly with the company's existing HPR-20 and QGA 2.0 mass spectrometry systems.
Why it matters
The system enables precise carbon monoxide quantification in scenarios where components like nitrogen, carbon dioxide, or methane typically complicate mass spectrometry analysis. It allows users to monitor CO alongside other gases simultaneously.
The device features a measurement range spanning from 0-2,000 ppm up to 0-100% CO. Internal testing showed a maximum variance of only 0.01 percentage points between calculated and measured concentrations.
The players
Hiden Analytical
Hiden Analytical is a manufacturer of mass spectrometers and gas analysis equipment used by researchers in fields including chemistry and materials science.
The details
The analyzer synchronizes data acquisition and display with existing Hiden mass spectrometer software. This integration ensures that dedicated carbon monoxide data is processed alongside other gas component readings in a single workflow.
Timeline
Hiden Analytical announced the analyzer availability on September 23, 2026.
The Big Picture
This release follows the technical pattern of the Hiden HPR-20 mass spectrometry systems. The introduction marks a shift toward specialized, integrated modules that address specific limitations in multi-component gas analysis.
Researchers working with complex gases can expect improved quantitative accuracy and streamlined data processing for CO monitoring. These improvements could lead to more precise experimental outcomes in industrial and laboratory chemistry applications.
The takeaway
The analyzer provides a dedicated solution for complex gas analysis that simplifies multi-component monitoring. Researchers can implement this tool to eliminate the margin of error when nitrogen or methane interfere with standard spectrometry measurements.
Further reading
For more information on innovations in gas analysis, visit the Chemistry section.
Source note: This article includes information reported by Selectscience.
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