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首页> 外文期刊>Journal of Applied Polymer Science >Humic Acid/Polypyrrole on a Paraffin-Impregnated Graphite Electrode and Its Use in Arsenic Extraction
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Humic Acid/Polypyrrole on a Paraffin-Impregnated Graphite Electrode and Its Use in Arsenic Extraction

机译:石蜡浸渍石墨电极上的腐殖酸/聚吡咯及其在砷萃取中的应用

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摘要

A novel and simple electrode with rapid preparation was developed with humic acid (HA) and polypyrrole (PPy) films. The method for modified electrode preparation embraced the abrasive transfer technique on a paraffin-impregnated graphite electrode (PIGE) followed by the electrochemical incorporation of a PPy polymeric film upon bare PIGE and PIGE/HA electrodes. Cyclic voltammetry, electrochemical impedance spectroscopy, and chronoamperometry were used for the study of the modified electrodes. Morphological characterization was performed by scanning electron microscopy. The obtained results demonstrated that the presence of HA did not affect the electrical properties of the system but indeed provoked changes in the polymer morphology, turning it more granular. Next, PIGE/HA/PPy was tested in arsenic Solutions [As(V)] because arsenic contamination of water is an important worldwide environmental issue because of the sources of arsenic contamination of water come from both natural processes and anthropogenic activities. The modified electrode displayed good and reversible extraction properties toward the analyte in acid medium and was 18% more efficient than a previously reported PPy-modified electrode (PIGE/PPy). From an environmental standpoint, this novel application of conductive polymer properties with the chelating capacity of humic substances constitutes a first step in the development of more efficient technologies for the removal of contaminants present in soil-water media.
机译:用腐殖酸(HA)和聚吡咯(PPy)膜开发了一种快速制备的新型简单电极。修饰电极的制备方法包括在石蜡浸渍的石墨电极(PIGE)上进行磨料转移技术,然后在裸露的PIGE和PIGE / HA电极上电化学掺入PPy聚合物膜。循环伏安法,电化学阻抗谱和计时电流法用于研究修饰电极。通过扫描电子显微镜进行形态表征。获得的结果表明,HA的存在不会影响系统的电性能,但确实会引起聚合物形态的变化,从而使其更加颗粒化。接下来,在砷溶液[As(V)]中对PIGE / HA / PPy进行了测试,因为水的砷污染源于自然过程和人为活动,是世界范围内重要的环境问题。修饰电极对酸性介质中的分析物显示出良好且可逆的萃取性能,比以前报道的PPy修饰电极(PIGE / PPy)效率高18%。从环境的角度来看,导电聚合物特性与腐殖质物质的螯合能力的这种新颖应用构成了开发更有效技术以去除土壤-水介质中存在的污染物的第一步。

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