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Adsorption Device Based on a Langatate Crystal Microbalance for High Temperature High Pressure Gas Adsorption in Zeolite H-ZSM-5
Published on: August 25, 2016
High-Silica RHO Zeolite-Stabilized Pd Ions Withstanding Extreme High-Temperature Hydrothermal Aging for Passive NO
Liye Bao1, Xinqian Fang1, Han Sun2
1Department of Micro/Nano Electronics, College of Electronic Information and Optical Engineering, Nankai University, Tianjin 300350, China.
Abstract:
Passive NOx adsorbers (PNAs) have emerged as a promising solution for mitigating cold-start NOx emissions from internal combustion engines. Most PNAs lose their NOx adsorption capacity after stringent hydrothermal aging tests due to either the collapse of the zeolite framework or Pd aggregation. Herein, we report a Pd-based RHO small-pore zeolite (Pd/RHO) that exhibits a nearly 100% increase in low-temperature NO adsorption after rigorous hydrothermal aging at 850 °C, in stark contrast to the severe degradation observed in conventional Pd/CHA. Combined spectroscopic characterizations and density functional theory (DFT) calculations reveal that the unique RHO framework, featuring abundant six-membered rings with aluminum pairs, facilitates the formation of stable [Z2PdII] species. These species exhibit excellent NOx storage capacity, water resistance, and hydrothermal stability, whereas the predominant [ZPdIIOH] sites in CHA zeolites are susceptible to H2O and prone to accumulation during hydrothermal aging. This work provides a general strategy for designing highly stable and efficient zeolite-based adsorption systems by precisely tailoring the local framework geometry.
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