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GAS XLNC SOFTWARE

Brožury a specifikace | 2016 | PACInstrumentace
Software
Zaměření
Průmysl a chemie
Výrobce
PAC

Souhrn

Importance of the Topic


Gas analysis underpins safety, quality control and economic value in the energy and petrochemical industries. Accurate, reproducible measurements of gas composition and properties are essential for process optimization, regulatory compliance and trade between suppliers and consumers. Software tools that streamline data acquisition, processing and reporting directly impact laboratory efficiency and analytical confidence.

Objectives and Overview of the Article


This article introduces GAS XLNC software designed to simplify, standardize and automate gas chromatography analysis. Key goals include support for multiple international test methods, customization of calculations, full traceability of calibration and sample data, and generation of flexible, audit-ready reports.

Methodology and Instrumentation


The software interfaces with gas chromatographs via instrument status and control modules. Users define sequences, templates for samples and calibrations, and LIMS identifiers. Calibration management supports single-point, multilevel and bracketing modes with validation, trend analysis and expiration tracking. A component library holds physical properties editable by the user.

Main Results and Discussion


GAS XLNC automates complex calculations such as oxygen correction, uncertainty propagation, molar mass, compressibility, heating values, densities and Wobbe index under various standard conditions. Advanced peak identification and unknown handling improve sample evaluation. The calibration browser offers graphical plots and approval workflows, ensuring locked, reproducible data. Trend analysis tools help laboratories maintain QC compliance over time.

Benefits and Practical Applications


Implementing GAS XLNC delivers:
  • Standardized workflows aligned with ISO, EN, ASTM and GPA methods
  • Customizable calculations tailored to specific gas streams and reporting needs
  • Enhanced precision and accuracy through automated error tracking and uncertainty analysis
  • Full traceability of calibration and sample results for audit and regulatory requirements
  • Streamlined reporting with export to files or LIMS integration

Future Trends and Possibilities


Ongoing developments in gas analysis software may include cloud-based data sharing, real-time process monitoring, integration of machine learning for pattern recognition and predictive maintenance. Expansion of method libraries to emerging fuel gases and renewable gas streams will further broaden applicability.

Conclusion


GAS XLNC provides a comprehensive, user-friendly platform for laboratories and process facilities conducting gas chromatography. By combining high-level automation, broad method coverage and rigorous data management, it enhances analytical throughput and confidence in results.

References


  • ISO 6974-2, ISO 6974-3, ISO 6976, ISO 8973
  • EN 15984 / DIN 51666, EN 589
  • ASTM D3588, ASTM D2598
  • GPA 2172, GPA 2261, GPA 2286

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