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Chemometric Evaluation of Repeatability Using the Autocorrelation Method in High-Performance Liquid Chromatography with Ultraviolet Detection

机译:使用紫外检测使用自相关方法的自相关方法的化学计量测量评价

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The mixed random processes of the first order autoregressive process (AR(1)) and white noise have been proved to provide a good approximation of baseline noise in a variety of analytical instruments, and may therefore be useful for estimating precision profiles. This study aims to examine a recently proposed autocorrelation method for estimating three noise parameters involved in the mixed processes (two for AR(1) and one for white noise) of HPLC, which can then be used to calculate the precision profile. This chemometric method was applied to repeatability evaluations of estriol determination using HPLC with UV detection (HPLC-UV). The relative standard deviations (RSDs) of peak area measurements for 5.0 mg/L estriol were observed to be 1.42% for the autocorrelation method and 1.63% for actual repeated measurements of real samples (n = 6). The theoretical RSDs of the autocorrelation method fell within the 95% confidence intervals of the repeated measurements. It is found that the noise parameters are obtained from real chromatographic baseline via the autocorrelation method. Moreover, the instrumental detection limit of estriol based on ISO 11843 was obtained from the precision profile (plot of RSD of measurements against concentration). This is the first paper to describe the autocorrelation method is a practically useful technique for evaluating the precision profile of HPLC-UV analyses without recourse to the repeated measurements of real samples.
机译:已经证明了第一阶自回归过程(AR(1))和白噪声的混合随机过程以提供各种分析仪器中的基线噪声的良好近似,因此可以用于估计精密轮廓。本研究旨在检查最近提出的用于估计混合过程中涉及的三个噪声参数的最近提出的自相关方法(用于AR(1)的两个噪声参数,然后可以用于计算精密曲线。使用HPLC具有UV检测(HPLC-UV)的雌醇测定的可重复性评价。峰面积测量的相对标准偏差(RSDS)为5.0mg / L雌醇的相对标准偏差(RSD)为自相关方法的1.42%,实际反复测量的真实样品(n = 6)为1.63%。自相关方法的理论RSD在重复测量的95%置信区间内下降。发现噪声参数通过自相关方法从真实的色谱基线获得。此外,基于ISO 11843的雌醇的仪器检测极限从精密曲线(测量浓度RSD的曲线图)获得。这是用于描述自相关方法的第一篇论文是一种实际上有用的技术,用于评估HPLC-UV分析的精确谱,而无需诉诸真实样本的重复测量。

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