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Effect of electrochemical treatments on the surface chemistry of activated carbon

机译:电化学处理对活性炭表面化学性质的影响

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摘要

The effect of the electrochemical treatment (galvanostatic electrolysis in a filter-press electrochemical cell) on the surface chemistry and porous structure of a granular activated carbon (GAC) has been analyzed by means of temperature-programmed desorption and N2 (at 77 K) and CO2 (at 273 K) adsorption isotherms. The anodic and cathodic treatments, the applied current (between 0.2 and 2.0 A) and the type of electrolyte (NaOH, H2SO4 and NaCl) have been studied as electrochemical variables. Both anodic and cathodic treatments lead to an increase in the surface oxygen groups. A suitable choice of the electrochemical variables allows a selective modification of the amount and the nature of the surface oxygen groups of the GAC. In general, the electrochemical treatment does not modify significantly the textural properties of the GAC. However, an increase in the porosity of the activated carbon occurs during the cathodic treatment in oxygen-saturated solutions. This result is interpreted as a consequence of carbon gasification driven by reaction with peroxide species generated by electroreduction of oxygen. The anodic treatment in NaCl produces oxidation degrees comparable to those achieved by classical chemical oxidations.
机译:通过程序升温脱附和N2(77 K)和CO2(273 K)吸附等温线分析了电化学处理(压滤电化学电池中的静电流电解)对颗粒活性炭(GAC)表面化学和多孔结构的影响。阳极和阴极处理、施加的电流(在 0.2 和 2.0 A 之间)和电解质类型(NaOH、H2SO4 和 NaCl)已被研究为电化学变量。阳极和阴极处理都会导致表面氧基团的增加。电化学变量的适当选择允许选择性地修改GAC表面氧基团的量和性质。一般来说,电化学处理不会显著改变GAC的质地特性。然而,在氧饱和溶液的阴极处理过程中,活性炭的孔隙率会增加。该结果被解释为与氧电还原产生的过氧化物反应驱动的碳气化的结果。NaCl 中的阳极处理产生的氧化度与经典化学氧化所达到的氧化度相当。

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