airmOzone Ozone Monitoring System

A Comprehensive Solution for Monitoring Ozone Precursors (PAMS 56) and Toxics

The airmOzone system is a fully integrated solution designed to monitor ozone precursors (PAMS 56) and toxic compounds in ambient air. Supplied worldwide, the airmOzone system combines two automated gas chromatographs (autoGC) equipped with flame ionization detectors (FID): the airmoVOC C2–C6 and the airmoVOC C6–C12. This combination enables simultaneous analysis of both light and heavy volatile organic compounds (VOCs), meeting the stringent technical requirements of current environmental standards.

 

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Key Features

The airmOzone system offers several outstanding advantages:

  • Comprehensive Monitoring:
    Utilizing the airmoVOC C2–C6 and airmoVOC C6–C12 with FID, the system can monitor 56 compounds as per the USEPA list and expand to 88 compounds with the addition of TO 14 molecules. This allows for precise analysis of both light and heavy VOCs without interference from 10 compounds that could potentially affect other systems (in accordance with EN 14 662-3).

  • High Sensitivity:
    The use of an FID in combination with H₂ as the carrier gas provides excellent separation and sensitivity, achieving detection limits down to the ppt level to ensure trace-level monitoring.

  • Automation and Internal Calibration:
    The system features an automatic calibration function (airmoCAL) using primary gas standards with an accuracy of ±2%, ensuring high consistency and reliability of the analytical results.

  • Advanced Control Software:
    The VISTACHROM software enables remote system control, data storage, and chromatogram display through the Peak Viewer. It also supports data transfer to a data logger via communication protocols such as MODBUS RTU, JBUS, or the German standard protocol.

  • Standalone Integrated System:
    The airmOzone system operates as an independent unit with integrated H₂ and air generators along with built-in calibration housed within the cabinet, providing a complete solution for on-site VOC analysis.

  • International Certifications and Standards:
    The equipment meets mCERTs requirements, is approved for BTEX, and complies with EN 15267-1:2009, EN 15267-2:2009, and EN 14662-3:2015. Furthermore, in field trials conducted by the United States Environmental Protection Agency (US EPA), airmOzone achieved top performance and is recognized as a unique, autonomous, and integrated solution for field applications.

Operating Principle and System Integration

The airmOzone system operates on an automated sampling mechanism combined with gas chromatographic analysis using FID. Its main components include:

  • Sampling and Analysis:
    The system employs two autoGC units (airmoVOC C2–C6 and airmoVOC C6–C12) equipped with FID, enabling simultaneous analysis of both light and heavy VOCs, with the capacity to separate compounds down to ppt levels.

  • Automatic Calibration:
    The airmoCAL function provides internal calibration, ensuring accurate analytical results with an error margin of ±2% according to primary gas standards.

  • Control and Communication:
    The VISTACHROM software facilitates remote control, data storage, and chromatogram display, while also enabling data transfer via communication protocols such as MODBUS RTU, JBUS, or the German standard, supporting integration with on-site data logging systems.

  • Standalone Operation:
    Integrated with H₂ and air generators and featuring built-in calibration within the cabinet, the airmOzone system is a fully independent and complete solution for on-site VOC analysis.

Product Name airmOzone
Function Monitoring ozone precursors (PAMS 56) and toxic compounds
Integrated Solution Combines two autoGC units with FID: airmoVOC C2–C6 and airmoVOC C6–C12
Application Worldwide monitoring of ozone precursors in ambient air
Analytical Range Utilizes airmoVOC C2–C6 and airmoVOC C6–C12 with FID to monitor:

– 56 compounds as per the USEPA list

– 88 compounds with the addition of TO 14 molecules

Analyzes both light and heavy VOCs without interference from 10 compounds that could affect other systems (per EN 14 662-3)

Measurement Method Employs an FID detector and H₂ as the carrier gas, offering excellent separation and sensitivity down to ppt levels
Certifications and Standards Meets mCERTs; approved for BTEX; complies with EN 15267-1:2009, EN 15267-2:2009, and EN 14662-3:2015
Linearity Linear analysis from 0 to 100 ppb (0–325 µg/m³ range); validated with linearity and repeatability tests on airmoBTX / airmoVOC C6–C12
Automation and Calibration Fully automated system with internal calibration (airmoCAL) calibrated using primary gas standards with ±2% accuracy
Control Software VISTACHROM – enables remote control, data storage, and chromatogram display via Peak Viewer
Data Communication Supports data transfer to a data logger through MODBUS RTU, JBUS, or the German standard protocol
Stand-Alone Integration Operates independently with integrated H₂ and air generators, along with internal calibration housed within the cabinet – a complete on-site VOC analysis solution
Field Evaluation Achieved top performance in field trials by the US EPA, recognized as a unique, autonomous, and integrated solution for field applications

TSP airmoVOC C2-C6

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TSP airmoVOC C6-C12

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TSP airmoVOC C6-C20+

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MCERTS Certificate airmoVOC

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