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Treatment of phenol by catalytic wet air oxidation: a comparative study of copper and nickel supported on γ-alumina, ceria and γ-alumina–ceria

机译:催化湿式空气氧化法处理苯酚:γ-氧化铝,二氧化铈和γ-氧化铝-二氧化铈上负载的铜和镍的比较研究

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Cu, Ni, CuO and NiO catalysts, prepared by wet impregnation with urea and supported on γ-Al _(2) O _(3) , CeO _(2) , and Al _(2) O _(3) –CeO _(2) , were evaluated for Catalytic Wet Air Oxidation (CWAO) of phenol in a batch reactor under a milder condition (120 °C and 10 bar O _(2) ). The synthesized samples, at their calcined and/or their reduced form, were characterized by XRD, H _(2) -TPR, N _(2) adsorption–desorption, SEM-EDS and DR-UV-Vis to explain the differences observed in their catalytic activity towards the studied reaction. The influence of the support on the efficiency of CWAO of phenol at 120 °C and 10 bar of pure oxygen has been examined and compared over nickel and copper species. The SEM-EDS results reveal that the spherical crystalline Cu and Ni were successfully deposited on the surface of γ-Al _(2) O _(3) , CeO _(2) , Al _(2) O _(3) –CeO _(2) within 16–90 nm and that they were highly homogeneously dispersed. It was found that catalysts prepared from impregnation solutions of Cu(NO _(3) ) _(2) ·3H _(2) O and Ni(NO _(3) ) _(2) ·6H _(2) O with urea addition had different textural characteristics and degrees of dispersion of Cu and Ni species. The urea addition in the traditional wet impregnation method was essential to improve the reducibility and degree of dispersion in Ni, and to a lesser extent, in Cu. According to the characterization analysis of H _(2) -TPR and UV-VIS RD a structure–activity relationship can be determined. The chemical oxygen demand (COD) and GC analyses confirmed the effect of calcined and reduced species for Cu and Ni applied to the catalytic oxidation of phenol, showing their significant impact in the final performance of the catalyst.
机译:通过尿素湿法浸渍并负载在γ-Al_(2)O _(3),CeO _(2)和Al _(2)O _(3)–CeO上制备的Cu,Ni,CuO和NiO催化剂在较温和的条件下(120°C和10 bar O _(2)),在间歇反应器中评估_(2)的苯酚的催化湿式氧化(CWAO)。通过XRD,H _(2)-TPR,N _(2)吸附-脱附,SEM-EDS和DR-UV-Vis对合成样品的煅烧和/或还原形式进行表征。它们对所研究反应的催化活性。在镍和铜物种上,已经检查并比较了载体对120°C和10 bar纯氧的苯酚CWAO效率的影响。 SEM-EDS结果表明,球形晶体Cu和Ni成功沉积在γ-Al_(2)O _(3),CeO _(2),Al _(2)O _(3)– CeO _(2)在16-90 nm之间,并且它们高度均匀分散。发现由Cu(NO _(3))_(2)·3H _(2)O和Ni(NO _(3))_(2)·6H _(2)O的浸渍溶液制备的催化剂尿素的添加具有不同的质地特征以及铜和镍物种的分散程度。传统的湿法浸渍法中添加尿素对于提高Ni的还原性和分散度至关重要,而Cu的扩散程度较小。根据H _(2)-TPR和UV-VIS RD的特征分析,可以确定结构-活性关系。化学需氧量(COD)和GC分析证实了煅烧和还原的Cu和Ni物种对苯酚催化氧化的影响,显示了它们对催化剂最终性能的重大影响。

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