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Effects of the modification of gas diffusion electrodes by organic redox catalysts for hydrogen peroxide electrosynthesis

机译:有机氧化还原催化剂修饰气体扩散电极对双氧水电合成的影响

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摘要

This paper reports a comparative study of the electrochemical performance of in situ hydrogen peroxide electrogeneration on gas diffusion electrodes modified by organic redox catalysts 2-ethylanthraquinone, 2-terc-butylanthraquinone and azobenzene in medium of 0.1 mol L-1 H2SO4 plus 0.1 mol L-1 K2SO4, pH = 1. Hydrogen peroxide generation proved strongly dependent on the applied potential and on the concentration of added catalysts. Electrode modifications led to a significant increase in H2O2 yield (30%) reaching 850 mg L-1, and the overpotential for oxygen reduction shifted to less negative values (400 mV vs Ag/AgCl for electrodes modified by quinones and 300 mV vs Ag/AgCl for electrodes modified by azobenzene) compared to noncatalyzed gas diffusion electrodes, resulting in reduced energy consumption of 596.5 to 232.4 kWh kg-1. The results indicated that the best electrode for H2O2 electrogeneration is the gas diffusion electrode modified with 10% of 2-ethylanthraquinone, offering the best cost to benefit ratio.
机译:本文报道了在0.1 mol L-1 H2SO4加0.1 mol L-介质中有机氧化还原催化剂2-乙基蒽醌,2-叔丁基蒽醌和偶氮苯修饰的气体扩散电极上原位过氧化氢电生电化学性能的比较研究。 1 K2SO4,pH =1。过氧化氢的产生在很大程度上取决于所施加的电势和所添加催化剂的浓度。电极改性导致H2O2产率显着提高(30%),达到850 mg L-1,并且氧还原的过电势转移到了较小的负值(对于由醌改性的电极,400 mV对Ag / AgCl,对于300 mV对Ag / Ag /与未催化的气体扩散电极相比,用于偶氮苯修饰的电极的AgCl的能耗降低了596.5至232.4 kWh kg-1。结果表明,用于H2O2发电的最佳电极是用10%的2-乙基蒽醌改性的气体扩散电极,具有最佳的成本效益比。

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