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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Total peak shape analysis: detection and quantitation of concurrent fronting, tailing, and their effect on asymmetry measurements
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Total peak shape analysis: detection and quantitation of concurrent fronting, tailing, and their effect on asymmetry measurements

机译:总峰值形状分析:检测和定量并发前置,拖尾及其对不对称测量的影响

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摘要

Most peak shapes obtained in separation science depart from linearity for various reasons such as thermodynamic, kinetic, or flow based effects. An indication of the nature of asymmetry often helps in problem solving e.g. in column overloading, slurry packing, buffer mismatch, and extra-column band broadening. However, existing tests for symmetry/asymmetry only indicate the skewness in excess (tail or front) and not the presence of both. Two simple graphical approaches are presented to analyze peak shapes typically observed in gas, liquid, and supercritical fluid chromatography as well as capillary electrophoresis. The derivative test relies on the symmetry of the inflection points and the maximum and minimum values of the derivative. The Gaussian test is a constrained curve fitting approach and determines the residuals. The residual pattern graphically allows the user to assess the problematic regions in a given peak, e.g., concurrent tailing or fronting, something which cannot be easily done with other current methods. The template provided in MS Excel automates this process. The total peak shape analysis extracts the peak parameters from the upper sections (>80% height) of the peak rather than the half height as is done conventionally. A number of situations are presented and the utility of this approach in solving practical problems is demonstrated. (C) 2017 Elsevier B.V. All rights reserved.
机译:分离科学中获得的大多数峰形状出现了各种原因的线性,如热力学,动力学或流动的效果。关于不对称性质的指示通常有助于解决问题的问题。在柱式过载,浆料包装,缓冲器不匹配和额外柱带扩大。然而,对称/不对称的现有测试仅表明过量(尾部或前部)的偏差,而不是两者的存在。提出了两种简单的图形方法以分析通常在气体,液体和超临界流体色谱中观察到的峰形状以及毛细管电泳。衍生物测试依赖于拐点的对称性和衍生物的最大值和最小值。高斯测试是一个受约束的曲线配合方法,并确定残差。剩余图案以图形方式允许用户在给定峰值中评估有问题的区域,例如,并发拖尾或前部,其不能用其他电流方法容易地完成。 MS Excel中提供的模板自动化此过程。总峰值形状分析从峰值的上部(> 80%高度)提取峰值参数而不是通常的半高度。提出了许多情况,并证明了这种方法在解决实际问题方面的效用。 (c)2017年Elsevier B.V.保留所有权利。

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