Research on an energy model for X-ray measurement of paper ash content using COMSOL, TAPPI Journal May 2025

 


Application: This study focuses on continuous X-ray measurement of paper ash content. Using COMSOL software, we simulated the measurement process and developed an X-ray energy attenuation simulation model for measuring paper ash content. The reliability and accuracy of ash content measurement were significantly improved.

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Author: Lianhau Hu and Wenbo Chen
Research on an energy model for X-ray measurement of paper a
ABSTRACT: Ash content is one of the critical quality parameters in papermaking production. Traditional 55Fe radioactive sources used for online ash content measurement have a short lifespan and high costs, while offline methods such as the combustion method or chemical analysis are time-consuming. Using an X-ray tube as the radiation source, continuous X-ray measurement offers advantages such as being rapid, non-destructive, and cost-effective. In this study, COMSOL software was employed to simulate the measurement process and establish an energy attenuation model for X-ray measurement of paper ash content. The model simulates the energy attenuation of X-rays before and after transmission through four materials: calcium carbonate (CaCO3), titanium dioxide (TiO2), wood-based plant fibers, and paper samples filled with CaCO3. The absorption coefficients of paper samples with varying ash content were investigated using the model and compared with experimental results obtained from continuous X-ray measurements. The results indicate that the proposed energy simulation model can reduce the measurement error of paper ash content by 1%, significantly enhancing the reliability and accuracy of ash content measurement.
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