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New background correction method for liquid chromatography with diode array detection, infrared spectroscopic detection and Raman spectroscopic detection

机译:具有二极管阵列检测,红外光谱检测和拉曼光谱检测的液相色谱背景校正新方法

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A new method to eliminate the background spectrum (EBS) during analyte elution in column liquid chromatography (LC) coupled to spectroscopic techniques is proposed. This method takes into account the shape and also intensity differences of the background eluent spectrum. This allows the EBS method to make a better estimation of the background eluent spectrum during analyte elution. This is an advantage for quantification as well as for identification of analytes. The EBS method uses a two-step procedure. First, the baseline spectra are modeled using a limited number of principal components (PCs). Subsequently, an asymmetric least squares (asLS) regression method is applied using these principal components to correct the measured spectra during elution for the background contribution. The asymmetric least squares regression needs one parameter, the asymmetry factor p. This asymmetry factor determines relative weight of positive and negative residuals. Simulations are performed to test the EBS method in well-defined situations. The effect of spectral noise on the performance and the sensitivity of the EBS method for the value of the asymmetry factor p is tested. Two applications of the EBS method are discussed. In the first application, the goal is to extract the analyte spectrum from an LC-Raman analysis. In this case, the EBS method facilitates easy identification of unknown analytes using spectral libraries. In a second application, the EBS method is used for baseline correction in LC-diode array detection (DAD) analysis of polymeric standards during a gradient elution separation. It is shown that the EBS method yields a good baseline correction, without the need to perform a blank chromatographic run. (C) 2004 Elsevier B.V. All rights reserved.
机译:提出了一种在耦合色谱技术的柱液相色谱(LC)中消除分析物洗脱过程中背景光谱(EBS)的新方法。该方法考虑了背景洗脱液光谱的形状和强度差异。这使EBS方法可以在分析物洗脱期间更好地估算背景洗脱液光谱。这对于定量以及鉴定分析物是有利的。 EBS方法使用两步过程。首先,使用有限数量的主成分(PC)对基线光谱进行建模。随后,使用这些主成分应用不对称最小二乘(asLS)回归方法,以校正洗脱过程中测得的光谱以达到背景贡献。不对称最小二乘回归需要一个参数,即不对称因子p。这个不对称因素决定了正负残差的相对权重。执行模拟以在定义明确的情况下测试EBS方法。测试了频谱噪声对EBS方法的性能和灵敏度的影响,其中EBS方法对于不对称因子p的值。讨论了EBS方法的两个应用。在第一个应用中,目标是从LC拉曼分析中提取分析物光谱。在这种情况下,EBS方法有助于使用光谱库轻松识别未知分析物。在第二个应用中,EBS方法用于梯度洗脱分离过程中聚合物标准品的LC二极管阵列检测(DAD)分析中的基线校正。结果表明,EBS方法可进行良好的基线校正,而无需执行空白色谱运行。 (C)2004 Elsevier B.V.保留所有权利。

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