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利用电子鼻估算啤酒陈酿过程中关键物质的检测限和定量限的方法。

Methods for Estimating the Detection and Quantification Limits of Key Substances in Beer Maturation with Electronic Noses.

机构信息

Institute for Life Science Technologies (ILT.NRW), OWL University of Applied Sciences and Arts, 32657 Lemgo, Germany.

Institute Industrial IT (inIT), OWL University of Applied Sciences and Arts, 32657 Lemgo, Germany.

出版信息

Sensors (Basel). 2024 May 30;24(11):3520. doi: 10.3390/s24113520.

Abstract

To evaluate the suitability of an analytical instrument, essential figures of merit such as the limit of detection (LOD) and the limit of quantification (LOQ) can be employed. However, as the definitions k nown in the literature are mostly applicable to one signal per sample, estimating the LOD for substances with instruments yielding multidimensional results like electronic noses (eNoses) is still challenging. In this paper, we will compare and present different approaches to estimate the LOD for eNoses by employing commonly used multivariate data analysis and regression techniques, including principal component analysis (PCA), principal component regression (PCR), as well as partial least squares regression (PLSR). These methods could subsequently be used to assess the suitability of eNoses to help control and steer processes where volatiles are key process parameters. As a use case, we determined the LODs for key compounds involved in beer maturation, namely acetaldehyde, diacetyl, dimethyl sulfide, ethyl acetate, isobutanol, and 2-phenylethanol, and discussed the suitability of our eNose for that dertermination process. The results of the methods performed demonstrated differences of up to a factor of eight. For diacetyl, the LOD and the LOQ were sufficiently low to suggest potential for monitoring via eNose.

摘要

为了评估分析仪器的适用性,可以使用一些重要的性能指标,如检测限 (LOD) 和定量限 (LOQ)。然而,由于文献中已知的定义大多适用于每个样品的一个信号,因此对于像电子鼻 (eNose) 这样产生多维结果的仪器,估计物质的 LOD 仍然具有挑战性。在本文中,我们将比较并介绍不同的方法来估计 eNose 的 LOD,使用常用的多元数据分析和回归技术,包括主成分分析 (PCA)、主成分回归 (PCR) 以及偏最小二乘回归 (PLSR)。这些方法可以随后用于评估 eNose 的适用性,以帮助控制和引导涉及挥发性物质是关键过程参数的过程。作为一个用例,我们确定了参与啤酒成熟过程的关键化合物的 LOD,即乙醛、双乙酰、二甲基硫、乙酸乙酯、异丁醇和 2-苯乙醇,并讨论了我们的 eNose 对此测定过程的适用性。所执行的方法的结果表明,差异高达 8 倍。对于双乙酰,LOD 和 LOQ 足够低,表明通过 eNose 进行监测具有潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b07d/11175341/19e4c1a34f95/sensors-24-03520-g001.jpg

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