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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Enhancing the yield of H2O2 from oxygen reduction reaction performance by hierarchically porous carbon modified active carbon fiber as an effective cathode used in electro-Fenton
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Enhancing the yield of H2O2 from oxygen reduction reaction performance by hierarchically porous carbon modified active carbon fiber as an effective cathode used in electro-Fenton

机译:通过分层多孔碳改性的活性炭纤维作为用于电芬顿的有效阴极的氧还原反应性能从氧还原反应性能的产率

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The aim of this work was to study a new type of high efficiency cathode material using hierarchically porous carbon (HPC) to modify activated carbon fibers. Compared to the cathode prior to modification, the H2O2 output (up to 9.9 mg L-1) showed an increase, and the energy consumption (8.9 kWh kg(-1)) was reduced. Since it is a thin layer sheet, the synthesized HPC had many carbon particles, a high surface area, and the oxygen reduction reaction had a much higher electrocatalytic activity. In addition, the material also has a good content of sp(3)-C, defects, and fast mass transfer. These characteristics promoted the production of H2O2 when using the optimal proportion of HPC, and electricity generation of hydrogen peroxide showed a tenfold improvement. Additionally, after being reused 5 times, the modified cathode still demonstrated stable performance. A series of characterization analyses to further demonstrate the superiority of this electrode found that the presence of HPC accelerates the electron transfer rate and facilitates oxygen reduction reactions (ORRs) on the electrode surface. When this cathode is used in an electro-Fenton system, phenol can be almost completely degraded, and up to 93.8% of the organic carbon was removed, which is a 5 fold increase compared to the ACF. The use of the HPC-loaded cathode in the EF system significantly strengthened the yield of hydrogen peroxide and effectively degraded organic pollutants with a lower energy consumption.
机译:这项工作的目的是使用等级多孔碳(HPC)研究一种新型的高效阴极材料来改变活性炭纤维。与阴极相比修饰之前,H 2 O 2输出(高达9.9mg L-1)显示出增加,并且能量消耗(8.9千瓦时(-1))降低。由于它是薄层片,合成的HPC具有许多碳颗粒,高表面积,并且氧还原反应具有更高的电催化活性。此外,该材料还具有SP(3)-C,缺陷和快速传质的良好含量。当使用HPC的最佳比例时,这些特性促进了H2O2的产生,并且过氧化氢的发电显示出了十倍的改善。另外,在重复使用5次之后,改进的阴极仍然表现出稳定的性能。一系列表征分析以进一步证明该电极的优越性发现,HPC的存在加速了电子传递速率并促进电极表面上的氧还原反应(ORRS)。当该阴极用于电芬系统中时,苯酚几乎可以完全降低,并且除了与ACF相比,除去了高达93.8%的有机碳。在EF系统中使用HPC负载阴极显着强化过氧化氢的产率,有效降低了能量消耗较低的有机污染物。

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