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Electrochemical determination of tannic acid using graphite electrodes sourced from waste zinc-carbon batteries

机译:废锌碳电池石墨电极采用石墨电极的电化学测定

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A cost-effective and environment-friendly electrochemical sensor based on waste-battery graphite electrodes is developed. The electrodes were extracted from different brands of waste zinc?carbon batteries and were used as the working electrode in differential pulse voltammetry (DPASV) for the electrochemical determination of tannic acid (TA). The bare graphite electrodes were pretreated using cyclic voltammetry and the surface morphology of the electrodes was studied using scanning electron microscopy coupled with energy dispersive X-ray spectroscopy. A linear TA concentration range from 2 parts per billion (ppb) to 60?ppb (Rsup2/sup?=?0.998) was obtained at optimized DPASV parameters. The limit of detection and limit of quantification were found to be 3.13?ppb and 9.49?ppb, respectively. The electrode was successfully utilized for the quantification of TA in commercially available Merlot wines. The most sensitive waste-battery electrode was sourced from Panasonic, and the Merlot wine procured from France yielded the highest tannic acid concentration.
机译:开发了一种基于浪费 - 电池石墨电极的经济有效和环保的电化学传感器。电极从不同品牌的废锌滤成碳电池中提取,用作差分脉冲伏安法(DPASV)的工作电极,用于鞣酸酸(TA)。使用循环伏安法预处理裸石墨电极,使用扫描电子显微镜与能量分散X射线光谱耦合的扫描电子显微镜进行研究。在优化的DPASV参数下,在优化的DPASV参数中获得从每十亿百左右(PPB)至60〜60°(R 2 =Δ0.998)的线性TA浓度范围。发现检测极限和定量限制分别为3.13?PPB和9.49?PPB。在市售的Merlot葡萄酒中成功地用于定量Ta的定量电极。最敏感的垃圾电池电极来自松下,从法国采购的梅洛葡萄酒产生了最高的单宁酸浓度。

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