Abstract
Hydroxylamine nitrate (HAN) and hydrazine nitrate (HN) are commonly found in radioactive waste solutions in nuclear fuel reprocessing, and their efficient removal is essential for waste treatment processes. In this study, six activated carbon carriers were selected to prepare Ru/AC catalysts for the simultaneous catalytic decomposition of HAN and HN, with the aim of exploring the effect of carrier properties on catalytic performance. The catalyst’s activity was evaluated in a batch reaction unit, and its structural properties were characterized using N2 physical adsorption, XRD, SEM, and TEM techniques. The results revealed that the catalyst’s activity was primarily determined by the carrier’s particle size and specific surface area. Additionally, corrosion-induced damage to the pore structure and Ru loss were identified as the main factors responsible for catalyst deactivation. This study highlights the importance of optimizing carrier structure to enhance the activity and stability of Ru/AC catalysts.
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CITATION STYLE
Cao, Z., Yu, D., He, T., Li, T., Zuo, C., Li, B., … Zheng, W. (2025). The Effect of Activated Carbon Support on Ru/AC Catalysts Used for the Catalytic Decomposition of Hydroxylamine Nitrate and Hydrazine Nitrate. Processes, 13(3). https://doi.org/10.3390/pr13030641
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