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Improving the Voltammetric Quantification of Ill-Defined Peaks Using Second Derivative Signal Transformation: Example of the Determination of Platinum in Water and Sediments

机译:使用二阶导数信号转换改善病态峰的伏安定量:水和沉积物中铂的测定示例

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The determination of trace elements using stripping voltammetry may be seriously affected by the presence of intensive matrix background or interfering peaks, leading to poorer detection limits and/or inaccurate quantitative results. In this work, we have tested the use of signal transformation (e.g., second derivative) in the analysis of platinum in seawater and sediment digests by means of catalytic adsorptive stripping voltammetry. In natural waters, the limit of detection of Pt is affected by a broad background wave due to the formazone complex used in the sample matrix for its determination, while in sediment digests, the Pt peak may be interfered with due to the presence of elevated concentrations of Zn, affecting the accuracy of the determination. Results applying second derivative signal transformation revealed a significant improvement (2-3-fold) of the detection limit in water due to the minimization of background effects, therefore allowing shorter accumulation times and faster determinations. In the presence of interfering peaks, the inaccuracy resulting from erroneous baseline selection in the original signal is eliminated when the second derivative is used. Signal processing should be considered as a useful tool for other voltammetric methodologies where more accurate or faster determinations are needed.
机译:强烈的基质背景或干扰峰的存在可能会严重影响使用溶出伏安法测定痕量元素的结果,从而导致较差的检测限和/或定量结果不准确。在这项工作中,我们测试了通过催化吸附溶出伏安法在分析海水和沉积物消化物中的铂中信号转换(例如二阶导数)的使用。在天然水域中,Pt的检测限受到宽广的背景波的影响,这是由于样品基质中使用的甲霜灵配合物来测定的,而在沉积物消化液中,Pt峰可能会由于浓度升高而受到干扰锌的含量,影响测定的准确性。应用二阶导数信号变换的结果显示,由于背景效应的最小化,水中的检出限有了显着提高(2-3倍),因此可以缩短累积时间并加快测定速度。在存在干扰峰的情况下,当使用二阶导数时,可以消除原始信号中错误的基线选择所导致的不准确性。对于需要更准确或更快速确定的其他伏安法,信号处理应被视为有用的工具。

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