全面二维气相色谱恢复

Jiazheng Shi, S. Reichenbach
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引用次数: 1

摘要

综合二维气相色谱(GCtimesGC)是一种强大的化学分离新技术。需要GCtimesGC恢复来分离coelating(即重叠)峰。GCtimesGC过程建模为一个二维线性,移位变系统,基于化学化合物和气相色谱的性质。该模型可以解释非均匀峰形状和两个仪器柱的可分离性。恢复问题的制定是为了最小化观测到的GCtimesGC数据与理想分离之间的差异,并受到物理上有意义的约束:非负性、体积保留和单峰性。本文提出了一种求解恢复问题的约束交替最小二乘(CALS)方法。基于仿真和真实GCtimesGC数据的实验结果表明,该模型和CALS方法能够很好地恢复GCtimesGC
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Restoration for comprehensive two-dimensional gas chromatography
This paper develops an approach for restoration of data from comprehensive two-dimensional gas chromatography (GCtimesGC), a powerful new technology for chemical separations. GCtimesGC restoration is required to separate coeluting (i.e., overlapping) peaks. The GCtimesGC process is modeled as a two-dimensional linear, shift-variant system, based on the properties of chemical compounds and gas chromatography. The model can account for nonhomogeneous peak shapes and separability of the two instrument columns. The restoration problem is formulated to minimize the difference between observed GCtimesGC data and an ideal separation, subject to the physically meaningful constraints: nonnegativity, volume preservation, and unimodality. The paper develops a constrained alternating least-squares (CALS) method for solving the restoration problem. Experimental results based on simulation and real GCtimesGC data indicate that the proposed model and CALS method perform well for GCtimesGC restoration
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