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Potentiometric Sensor Based on Carbon Paste Electrode for Monitoring Total Residual Chlorine in Electrolytically-Treated Ballast Water

机译:基于碳浆料电极的电位传感器,用于监测电解处理压载水中的总残留氯

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摘要

A new potentiometric sensor based on modified carbon paste electrode (CPE) was prepared for the sensitive and selective detection of total residual chlorine (TRC) in simulated electrolytically-treated ballast water (BW). The modified CPE was prepared using ferrocene (Fc) as the sensing species and paraffin oil as the binder. It is revealed that the addition of Fc can significantly shorten the response time and improve the reproducibility, selectivity, and stability of the sensor. The open circuit potential of the Fc-CPE is in linear proportion to the logarithm of TRC within the TRC concentration range from 1 mg∙dm−3 to 15 mg∙dm−3. In addition, the Fc-CPE sensor exhibits good selectivity to TRC over a wide concentration range of the possible co-exiting interference ions in seawater. The Fc-CPE electrode can be used as a convenient and reliable sensor for the continuous monitoring of TRC during the electrolytic treatment of BW.
机译:制备基于改性碳糊电极(CPE)的新电位传感器用于模拟电解处理的压载水(BW)中的总残留氯(TRC)的敏感和选择性检测。使用二茂铁(Fc)作为传感物种和石蜡作为粘合剂制备改性的CPE。据透露,添加FC可以显着缩短响应时间,提高传感器的再现性,选择性和稳定性。 FC-CPE的开路电位与TRC内的TRC内的对数为1mg≥DM-3至15mg∙DM-3的线性比例。此外,FC-CPE传感器在海水中可能的共同出境干涉离子的宽浓度范围内对TRC表现出良好的选择性。 FC-CPE电极可用作方便可靠的传感器,用于在BW的电解处理期间连续监测TRC。

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