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Characterization of evolution of reactive transport param 2025 Nuclear Engin

Haiying Fu, Shuai Wang

2026enuranium miningin situ leachingporous mediareactive transportpore structureCT imaging

Abstract

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During the in-situ leaching process of sandstone uranium ore deposits, the dynamic evolution of reactive transport parameters, including permeability, tortuosity, and specific surface area (SSA), plays a crucial role in solution flow and solute transport. Characterizing the evolution of these parameters is essential for understanding the leaching process. However, the heterogeneous pore structure of sandstone renders porosity alone insufficient to capture changes in these parameters. This study combines porosity and lacunarity to comprehensively characterize these parameters. For this purpose, leaching experiments were conducted on sandstone uranium ore samples, and CT imaging was performed at different leaching time points. The evolution of reactive transport parameters was analyzed by studying cubic subsamples from the images. The results indicate that both porosity and lacunarity are significant factors influencing the reactive transport parameters. However, neither parameter alone adequately characterizes their evolution. In contrast, combining them accurately characterizes the evolution of reactive transport parameters. Porosity reflects pore quantity, while lacunarity represents pore heterogeneity. Combining these measures facilitates a comprehensive understanding of the evolution of reactive transport parameters and the influence of pore microstructure on macroscopic reactive transport parameters. This research provides valuable insights for optimizing the leaching process in sandstone uranium ore deposits.

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Cite This Work

@article{6381ad43-8829-4f0b-833e-49429aa759ac,
  title={Characterization of evolution of reactive transport param 2025 Nuclear Engin},
  author={Haiying Fu and Shuai Wang},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - Characterization of evolution of reactive transport param 2025 Nuclear Engin
AU  - Haiying Fu
AU  - Shuai Wang
PY  - 2026
LA  - en
ER  -

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