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Measuring the Carbon Content in Fly Ash

Applications | 2023 | ShimadzuInstrumentation
TOC
Industries
Energy & Chemicals
Manufacturer
Shimadzu

Summary

Significance of the Topic


The measurement of unburned carbon in fly ash is essential for ensuring the quality and performance of concrete and cement products. Accurate carbon analysis supports durability, workability and environmental compliance, while guiding process optimization in coal-fired power plants.

Objectives and Study Overview


This application demonstrates how the TOC solid sample measurement system—comprising the TOC-L total organic carbon analyzer coupled with the SSM-5000A solid sample combustion unit—can be used to quantify total carbon (TC) and inorganic carbon (IC) in fly ash. Two fly ash samples were evaluated to compare their unburned carbon content under standardized conditions.

Methodology


The procedure follows two parallel measurement modes:
  • TC measurement: Approximately 70 mg of fly ash is weighed into a sample boat, combusted at 900 °C using oxygen carrier gas, and the evolved CO2 is detected to determine total carbon.
  • IC measurement: The same sample mass is treated with phosphoric acid in a dedicated port, heated to 200 °C, and the released CO2 is measured to quantify inorganic carbon from carbonates.

Instrumentation


  • TOC-L total organic carbon analyzer paired with SSM-5000A solid sample combustion unit
  • Carrier gas: Oxygen at 500 mL/min
  • Furnace temperatures: 900 °C for TC, 200 °C for IC
  • Calibration: One-point curves using glucose powder (40 % C) for TC and sodium carbonate powder (11.3 % C) for IC

Main Results and Discussion


The TC concentration in Fly Ash A was determined to be 5.56 %, and in Fly Ash B 1.35 %. In both cases, IC was below detection, indicating negligible carbonate content. The coefficient of variation for TC measurements was below 2 %, demonstrating high precision. These results confirm that the system reliably quantifies unburned carbon, overcoming limitations of X-ray fluorescence in detecting light elements like carbon.

Benefits and Practical Applications


  • Quick analysis: 10 minutes for TC, 8 minutes for IC per sample
  • Minimal sample preparation without complex pretreatment
  • High accuracy and precision for quality control of fly ash
  • Potential to correct elemental analysis results by providing accurate carbon values

Future Trends and Opportunities


Advancements may include inline automation for continuous monitoring of carbon in combustion residues, extension of the methodology to other solid matrices such as slags or biomasses, and integration with chemometric and AI-driven data processing for rapid decision support in industrial settings.

Conclusion


The TOC-L/SSM-5000A measurement system offers a robust, rapid and accurate approach to determining total and inorganic carbon in fly ash. Its implementation enhances quality assurance in the cement and concrete industry and provides critical data for process improvement and environmental management.

References


No external literature citations were provided in the original text.

Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.

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