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Electrocatalytic degradation of 2,4-dichlorophenol by granular graphite electrodes

机译:粒状石墨电极电催化降解2,4-二氯苯酚

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摘要

A reactor using granular graphite as an electrode material was used to electrochemically degrade 2,4-dichlorophenol. The degradation efficiency reached more than 95% after 24h at all experimental conditions. Adsorption of 2,4-dichlorophenol by the granular graphite can be described with the Freundlich isotherm. The degradation kinetics are pseudo-first-order. The degradation rate increased linearly with both applied current density and flow rate. The pseudo-first-order surface reaction rate constants, ka, at a flow rate of 5mL/min increased from 0.0015L/hm~2 at an applied current density of 0.41mA/m~2 to 0.0028L/hm~2 at an applied current density of 2.21mA/m~2. The ka values at a current density of 1.14mA/m~2 increased from 0.0021L/hm~2 at a flow rate of 5mL/min to 0.0068L/hm~2 at a flow rate of 50mL/min. Charge efficiency, ranging from less than 1 to 60μg/C, increased with the concentration of 2,4-dichlorophenol and decreased with the applied current density. Hence, using a low applied current density could be more economical than a high applied current density when applying this technique.
机译:使用粒状石墨作为电极材料的反应器用于电化学降解2,4-二氯苯酚。在所有实验条件下24h后,降解效率均达到95%以上。粒状石墨对2,4-二氯苯酚的吸附可以用弗氏等温线描述。降解动力学是伪一级的。退化率随施加的电流密度和流速线性增加。流速为5mL / min时的拟一阶表面反应速率常数ka从施加电流密度为0.41mA / m〜2时的0.0015L / hm〜2增加到施加电流密度为0.41mA / m〜2时的0.0028L / hm〜2。施加的电流密度为2.21mA / m〜2。电流密度为1.14mA / m〜2时的ka值从流量为5mL / min时的0.0021L / hm〜2增加到流量为50mL / min时的0.0068L / hm〜2。充电效率从1到60μg/ C不等,随2,4-二氯苯酚浓度的增加而增加,随施加电流密度的增加而降低。因此,当应用此技术时,使用低施加电流密度可能比高施加电流密度更经济。

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