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首页> 外文期刊>Journal of Porous Materials >Activated carbon from waste biomass as catalyst support: formation of active phase in copper and cobalt catalysts for methanol decomposition
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Activated carbon from waste biomass as catalyst support: formation of active phase in copper and cobalt catalysts for methanol decomposition

机译:废物生物质中的活性炭作为催化剂载体:在铜和钴催化剂中形成活性相用于甲醇分解

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摘要

Activated carbons (AC) from various waste agriculture precursors with different texture and surface characteristics were obtained by different preparation procedures. These AC were used as a host matrix of mono- and bi-component copper and cobalt nanoparticles. The effect of carbon properties on the formation of copper/cobalt phases was studied by Boehm method, XRD, nitrogen physisorption, UV–Vis, FTIR, TPR–TG analysis and methanol decomposition as a catalytic test. The elucidation of activated carbons from waste biomass as catalyst support was based on the comparative study with similar materials supported on mesoporous silica KIT-6. It was demonstrated that contrary to KIT-6, the reduction properties of AC support hinders the formation of spinel CuCo2O4 phase in the bi-component materials, but provides formation of mixture of finely dispersed and highly active and selective in methanol decomposition Cu2O and CoO nanoparticles.
机译:通过不同的制备方法获得了具有不同质地和表面特性的各种废弃农业前体的活性炭(AC)。这些AC用作单组分和双组分铜和钴纳米颗粒的基质。通过Boehm方法,XRD,氮物理吸附,UV-Vis,FTIR,TPR-TG分析和甲醇分解作为催化试验,研究了碳性质对铜/钴相形成的影响。从废生物质作为催化剂载体的活性炭的阐明是基于在介孔二氧化硅KIT-6上负载相似材料的比较研究得出的。结果表明,与KIT-6相反,AC载体的还原性能阻碍了双组分材料中尖晶石CuCo2O4相的形成,但提供了在甲醇分解Cu2O和CoO纳米颗粒中形成细分散,高活性和选择性的混合物的形成。 。

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