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Free Lime Determination in Clinker

Applications | 2020 | Thermo Fisher ScientificInstrumentation
X-ray, XRD
Industries
Energy & Chemicals
Manufacturer
Thermo Fisher Scientific

Summary

Significance of the Topic


Monitoring free lime in clinker is essential for ensuring cement quality and kiln performance All phases in clinker influence product properties and energy consumption

Objectives and Study Overview


This study evaluates an innovative integrated XRF XRD instrument for accurate quantification of free lime The device enables simultaneous chemical and mineralogical analysis reducing the need for separate wet chemistry and diffraction equipment

Methodology and Instrumentation


Clinker standards with known free lime content were prepared by grinding pressing and measured under identical conditions A calibration curve was established by recording the diffraction peak intensity at a specific plane d2 41 Angstrom

Used Instrumentation


The instrument combines a ThermoScientific ARL 9900 X ray fluorescence spectrometer with an integrated diffraction system Key features include an IntelliPower generator crystal discriminator and Moire fringe positioning ensuring high angular repeatability

Main Results and Discussion


Free lime sensitivity achieved 600 cps per percent Ten times greater than conventional diffractometers Limit of detection around 156 parts per million Calibration error below 0 08 percent short term RSD approximately 1 percent and stable performance over 50 hours with 0 02 percent variation

Benefits and Practical Applications


  • Simultaneous XRF and XRD analysis on a single sample lowers hardware costs and streamlines workflows
  • Accurate monitoring of free lime C3S C2S C3A C4AF and calcite supports quality control and regulatory compliance
  • Improved kiln optimization energy savings and reduced grinding requirements
  • Common software simplifies data treatment for both chemical and phase analysis

Future Trends and Potential Applications


  • Growing use of limestone additions to reduce CO2 footprint in cement
  • Expansion of integrated systems to other industrial materials and phases
  • Advanced data analytics and real time process control via digital integration
  • Development of higher sensitivity detectors and faster scanning methods

Conclusion


The integrated XRF XRD approach in a single ARL 9900 instrument delivers high sensitivity reliability and stability for free lime analysis This streamlined solution replaces separate methods enhances efficiency and is widely adopted in cement plants worldwide

References


No explicit references were provided in the source document

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