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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >The catalytic degradation of nitrobenzene by the Cu-Co-Fe-LDH through activated oxygen under ambient conditions
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The catalytic degradation of nitrobenzene by the Cu-Co-Fe-LDH through activated oxygen under ambient conditions

机译:Cu-Co-Fe-LDH在环境条件下通过活化氧的硝基苯催化降解

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Efficient and low-cost catalysts for catalytic wet air oxidation (CWAO) under ambient conditions are of great significance for the degradation of hydrophobic organic contaminants. In this study, four LDH catalysts were prepared and their catalytic performance was studied by the degradation of nitrobenzene. The CuCoFe-LDH shows the best catalytic activity with an NB removal efficiency of 41.2%. The CuCoFe-LDH exhibited a typical layer structure, with a specific surface area of 167.32 m(2) g(-1), and Cu2+, Co2+ and Fe3+ were evenly dispersed on the crystal. The NB removal efficiency was increased by 12.5% through adding formic acid. After five recycling processes, the NB removal efficiency was 18.9% because 3.8 mg g(-1) of Co was leached out of the LDH. In the CWAO process, H2O2, OH, O-2(-) and O-1(2) were successfully formed through activated oxygen by the CuCoFe-LDH catalyst under ambient conditions. This work further broadens the application scope of layered double hydroxides (LDHs) in the degradation of organic pollutants by CWAO under ambient conditions.
机译:在环境条件下催化湿式氧化(CWAO)高效和低成本的催化剂是用于疏水性有机污染物的降解具有重要意义。在这项研究中,制备了4种LDH催化剂,并通过硝基苯的降解研究了它们的催化性能。所述CuCoFe-LDH示出了具有41.2%的NB去除效率最好的催化活性。所述CuCoFe-LDH显示出典型的层结构,具有的167.32米(2)克(-1)的比表面积,和Cu2 +和Co2 +与Fe3 +的均匀地分散在晶体。的NB去除效率通过加入甲酸增加了12.5%。经过五个循环过程中,NB去除效率为18.9%,因为3.8毫克克(-1)的Co中的LDH的浸出。在CWAO过程中,H 2 O 2,OH,O-2( - )和O-1(2)成功地通过活性氧通过在环境条件下的CuCoFe-LDH催化剂形成。这项工作进一步拓宽了有机污染物的通过CWAO环境条件下的降解层状双氢氧化物(水滑石)的应用范围。

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