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The beneficial role of use of ultrasound in heterogeneous Fenton-like system over supported copper catalysts for degradation of p-chlorophenol

机译:在负载型铜催化剂上使用非均相Fenton样系统中的超声对降解对氯苯酚的有益作用

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摘要

A heterogeneous sono-catalytic system with addition of hydrogen peroxide (US_(H2O2+Cat.)) was employed for the degradation of 200 ppm of p-chlorophenol (4-CP) at 25 °C and 100 W of ultrasound power. One thousand and six hundred parts per million of initial hydrogen peroxide (H2O2) concentration and 1 g/L of catalyst loading over three heterogeneous copper catalysts, CuO, Cu/Al2O3 (Cu/Al) and CuO centre dot ZnO/Al2O3 (Cu/Zn) was used. The benefits of ultrasound in a heterogeneous catalytic system were evaluated. A considerable synergistic effect of the US_(H2o2+Cat.) system was only achieved with supported catalysts (Cu/Al and Cu/Zn) possibly due to good dispersion of catalysts as a result of catalyst size reduction during ultrasound irradiation. Moreover, between the two supported copper catalysts, the Cu/Al provided promising catalytic performance by giving higher 4-CP and TOC removal accompanied with efficient H2O2 consumption. Experiments with a homogeneous copper catalyst revealed that use of ultrasound in a homogeneous system shows an adverse effect on decomposition of 4-CP.
机译:使用添加过氧化氢(US_(H2O2 + Cat。))的异质声催化系统在25°C和100 W超声功率下降解200 ppm对氯苯酚(4-CP)。三种非均相铜催化剂CuO,Cu / Al2O3(Cu / Al)和CuO中心点ZnO / Al2O3(Cu /使用Zn)。评价了超声在非均相催化系统中的益处。仅在负载型催化剂(Cu / Al和Cu / Zn)上获得US_(H2o2 + Cat。)体系的显着协同作用,这可能是由于超声辐照过程中催化剂尺寸减小而导致的催化剂良好分散。此外,在两种负载型铜催化剂之间,Cu / Al通过提供更高的4-CP和TOC去除率以及有效的H2O2消耗,提供了有希望的催化性能。用均相铜催化剂进行的实验表明,在均相系统中使用超声对4-CP的分解显示不利影响。

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