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从海藻酸钠前体中制备具有可控金属含量的碳载铜纳米粒子及其催化 NO 还原性能。

Facile synthesis of carbon supported copper nanoparticles from alginate precursor with controlled metal content and catalytic NO reduction properties.

机构信息

Institute of Physical Chemistry, NCSR DemokritosTerma Patriarchou Grigoriou & Neapoleos, 15310 Ag Paraskevi Attikis, Athens, Greece.

出版信息

J Hazard Mater. 2011 May 15;189(1-2):384-90. doi: 10.1016/j.jhazmat.2011.02.049. Epub 2011 Feb 23.

Abstract

A copper-nanoparticle-doped carbon was prepared from an alginate based precursor in a one step carbonisation-reduction procedure based on the modified polyol process. The ion exchange capacity of the precursor as well as the porosity, metal content, thermal properties, of the final product, were investigated. The preparation route leads to a porous carbon/copper composite with predefined metal loading reaching up to over 30% (w/w) of finely dispersed Cu nanoparticles of fairly uniform size. NO catalytic abatement evaluation showed high efficiency even at low temperatures compared to other recently reported carbon supported catalysts.

摘要

一种基于海藻酸盐的前体在一步碳化-还原过程中制备了铜纳米粒子掺杂碳,该过程基于改良的多元醇法。研究了前体的离子交换容量以及最终产物的孔隙率、金属含量和热性能。该制备路线得到了一种具有预定金属负载量的多孔碳/铜复合材料,负载量高达 30%(重量比)以上,且铜纳米颗粒分散均匀,尺寸相当。与最近报道的其他碳载催化剂相比,NO 催化减排评价表明,该催化剂在低温下也具有高效性。

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