首页> 外文期刊>Journal of Nanostructures >Preparation and performance analysis of γ-Al2O3 supported Cu-Ru bimetallic catalysts for the selective Wet Air Oxidation of Aqueous Ammonia to Nitrogen.
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Preparation and performance analysis of γ-Al2O3 supported Cu-Ru bimetallic catalysts for the selective Wet Air Oxidation of Aqueous Ammonia to Nitrogen.

机译:γ-Al2O3支持的Cu-Ru双金属催化剂的制备和性能分析,用于氮的选择性湿空气氧化。

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Series of Copper Ruthenium (Cu-Ru) bimetallic catalysts supported on γ-Al2O3 with different metal loading are prepared and investigated for catalytic wet air oxidation of ammonia to nitrogen. The ammonia decomposition activity was studied at three different temperatures i.e. 150oC, 200oC, and 230 oC and it is found that catalytic activity increases with the increase in temperature along with the high selectivity towards nitrogen production. The results also revealed that the bimetallic Cu-Ru/ γ-Al2O3 are much more efficient especially stable than the corresponding monometallic Cu and Ru catalysts. Up to 99 % ammonia decomposed to N2 without any undesirable nitrites and nitrates at 230 oC by optimizing catalysts to ammonia ratio. So, it can be considered as a potential method to remove a large amount of ammonia from wastewater. Furthermore, the catalysts characterization results strongly suggested that there is a strong relationship between catalytic activity and Ru and Cu contents in bimetallic catalysts. The presences of both metals (Cu and Ru) affect the reactivity and coverage of oxygen species, as well as protecting each other from leaching. The combination of all effects including the strong interaction between metals, synergistic effect, proper oxygen coverage and resistance against leaching could be attributed to the enhancement of the catalytic activity of Cu-Ru/ γ-Al2O3 catalyst.
机译:制备具有不同金属负载的γ-Al2O3上负载的铜钌(Cu-Ru)双金属催化剂的系列,并研究催化湿空气氧化至氮。在三种不同的温度下研究了氨分解活性,即150℃,200oC和230℃,发现催化活性随着温度的增加而增加,以及对氮产生的高选择性。结果还显示双金属Cu-Ru /γ-Al 2O3特别稳定的比相应的单金属Cu和Ru催化剂更稳定。通过优化催化剂至氨比,高达99%的氨在没有任何不希望的亚硝酸盐和硝酸盐中,通过优化催化剂与氨比。因此,可以被认为是从废水中去除大量氨的潜在方法。此外,催化剂表征结果强烈建议催化活性与二氧化硅催化剂中的催化活性和Ru和Cu含量之间有良好的关系。金属(Cu和Ru)的含量影响氧气物种的反应性和覆盖,以及保护彼此免受浸出。所有效果的组合包括金属之间的强相互作用,协同作用,适当的氧覆盖和抗浸出的抗性可能归因于增强Cu-Ru /γ-Al2O3催化剂的催化活性。

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