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首页> 外文期刊>Nanoscale >Sandwich-like PdO/CeO2 nanosheet@HZSM-5 membrane hybrid composite for methane combustion: self-redispersion, sintering-resistance and oxygen, water-tolerance
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Sandwich-like PdO/CeO2 nanosheet@HZSM-5 membrane hybrid composite for methane combustion: self-redispersion, sintering-resistance and oxygen, water-tolerance

机译:一张PdO / CeO2 nanosheet@HZSM-5膜甲烷燃烧的混合组合:self-redispersion sintering-resistance和氧、耐水性

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PdO/CeO2 nanosheets encapsulated by a monolayer of a continuous and dense HZSM-5 zeolite membrane were prepared by a facile in situ hydrothermal growth process and used as a highly efficient and thermally stable catalyst for methane combustion. Uncoated PdO/CeO2 suffered severe sintering at high temperature or high oxygen concentration. However, the encapsulation of HZSM-5 significantly improved sintering resistance by the suppressing effects of the HZSM-5 coating for the agglomeration of PdOx nanoparticles, resulting in the outstanding thermal stability of PdO/CeO2. Furthermore, the synthesized hybrid materials also exhibited good oxygen-and water-tolerance for methane combustion due to the oxygen or water barrier. In addition, a reactivation behavior was observed due to the self-redispersion of PdOx on CeO2 nanosheets in the reaction atmosphere at high temperature.
机译:PdO / CeO2 nanosheets封装的单层连续和密度HZSM-5沸石膜是由一个灵巧的原位水热吗作为一个高效和生长过程和使用热稳定的甲烷燃烧催化剂。裸PdO / CeO2遭受了严重的烧结高温或高氧浓度。然而,HZSM-5的封装显著提高烧结阻力HZSM-5涂层的抑制效应PdOx纳米颗粒的聚集,导致的出色的热稳定性PdO / CeO2。也表现出良好的氧气和材料容水率对甲烷燃烧造成的氧气和水障碍。重新激活的行为是由于观察到的PdOx self-redispersion CeO2 nanosheets在高温下反应气氛。

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