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- W2326512478 abstract "A new type of porous kaolin/NaY composite (KL-NY) with a large specific surface area and large pore sizes was synthesized through a one-step crystallization process, and rare earth-modified KL-NY-supported Pd-Pt catalysts were studied for benzene combustion. The results indicated that the pore volume and specific surface area of KL-NY after calcination and crystallization were 0.298 cm(3)/g and 365 m(2)/g, respectively, exhibiting appropriate pore structure and good thermal stability. Catalysts with rare earth metals greatly enhanced the activity of Pd/KL-NY, and the addition of Pt and Ce into the Pd catalyst improved the catalytic activity as well as the stability. The catalyst with an optimal Ce content and Pt/Pd molar ratio (0.2%Pd-Pt (6:1)/6%Ce/KL-NY) demonstrated the best activity for the complete oxidation of benzene at 230 °C, and the catalyst above maintained the 100% benzene conversion for 960 h." @default.
- W2326512478 created "2016-06-24" @default.
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- W2326512478 date "2014-08-01" @default.
- W2326512478 modified "2023-10-18" @default.
- W2326512478 title "Rare Earth-Modified Kaolin/NaY-Supported Pd–Pt Bimetallic Catalyst for the Catalytic Combustion of Benzene" @default.
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- W2326512478 doi "https://doi.org/10.1021/am500138q" @default.
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