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Carbon nanotube modified glassy carbon electrode for electrochemical oxidation of alkylphenol ethoxylate

机译:用于电化学氧化烷基酚乙氧基化物的碳纳米管改性玻璃电极

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摘要

Electrochemical oxidation of an emerging pollutant, 2-(4-methylphenoxy) ethanol (MPET), from water has been studied by cyclic voltammetry (CV). Multiwall carbon nanotubes glassy carbon electrodes (MWCNT-GCE) were used as working electrode due to their extraordinary properties. The oxidation process is irreversible, since no reduction peaks were observed in the reverse scan. The electrocatalytic effect of MWCNT was confirmed as the oxidation peak intensity increases in comparison to bare-GCE. The effect of functional groups on MWCNT was also studied by MWCNT functionalized with NH2 (MWCNT-NH2) and COOH (MWCNT-COOH) groups. The oxidation peak current decreases in the following order: MWCNT MWCNT-NH2 MWCNT-COOH. Taking into account the normalized peak current, MWCNT-NH2 exhibits the best results due to its strong interaction with MPET. Under optimal conditions (pH = 5.0 and volume of MWCNT = 10 mu L), degradation was studied for MWCNT-GCE and MWCNT-NH2-GCE. A complete MPET removal was observed using MWCNT-GCE after four CV cycles, for a volume/area (V/A) ratio equal to 19. In the case of MWCNT-NH2-GCE, the maximum MPET removal was close to 90% for V/A = 37, higher than that obtained for MWCNT-GCE at the same conditions (approximate to 80%). In both cases, no organic by-products were detected.
机译:通过循环伏安法(CV)研究了新出现的污染物,2-(4-甲基苯氧基)乙醇(MPET)的电化学氧化。多壁碳纳米管玻璃碳电极(MWCNT-GCE)由于其非凡的性质而用作工作电极。氧化过程是不可逆转的,因为在反向扫描中没有观察到还原峰。与裸GCE相比,氧化峰强度增加,MWCNT的电催化效果增加。通过用NH 2(MWCNT-NH2)和COOH(MWCNT-COOH)基团官能化的MWCNT研究了官能团对MWCNT的影响。氧化峰值电流以下列顺序降低:MWCNT> mwcnt-nh2& MWCNT-COOH。考虑到归一化峰值电流,MWCNT-NH2由于其与MPET的强互动而具有最佳结果。在最佳条件下(pH = 5.0和MWCNT =10μl的体积),研究了MWCNT-GCE和MWCNT-NH2-GCE的降解。在四个CV循环后使用MWCNT-GCE观察到完全的MPET去除,对于等于19的体积/区域(v / a)比例。在MWCNT-NH2-GCE的情况下,最大MPET去除接近90% v / a = 37,高于在相同条件下为mwcnt-gce获得的(近似为80%)。在这两种情况下,检测到没有有机副产物。

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