Mid-infrared spectroscopy has been developed as a reliable and rapid tool for routine analysis of fat, protein, lactose and other components in liquid milk. However, variations within and between FTIR instruments, even within the same milk testing laboratory, present a challenge to the accuracy of measurement of particularly minor components in the milk, such as individual fatty acids or proteins. In this study we have used Analysis of variance–Simultaneous Component Analysis (ASCA), to monitor the spectral variation between and within each of four different FOSS FTIR spectrometers over each week in an independent milk testing laboratory over 4 years, between August 2017 and March 2021 (223 weeks). On everyday of each week, spectra of the same pilot milk sample were recorded approximately every hour on each of the four instruments. Overall, variations between instruments had the largest effect on spectral variation over each week, making a significant contribution every week. Within each instrument, day-to-day variations over the week were also significant for all but two of the weeks measured, however it contributed less to the variance overall. At certain times other factors not explained by weekday variation or inter-instrument variation dominated the variance in the spectra. Examination of the scores and loadings of the weekly ASCA analysis allowed identification of changes in the spectral regions affected by drifts in each instrument over time. This was found to particularly affect some of the fatty acid predictions.

Routine Monitoring of Instrument Stability in a Milk Testing Laboratory With ASCA: A Pilot Study / Nieuwoudt, M. K.; Giglio, C.; Marini, F.; Scott, G.; Holroyd, S. E.. - In: FRONTIERS IN CHEMISTRY. - ISSN 2296-2646. - 9:(2021). [10.3389/fchem.2021.733331]

Routine Monitoring of Instrument Stability in a Milk Testing Laboratory With ASCA: A Pilot Study

Marini F.;
2021

Abstract

Mid-infrared spectroscopy has been developed as a reliable and rapid tool for routine analysis of fat, protein, lactose and other components in liquid milk. However, variations within and between FTIR instruments, even within the same milk testing laboratory, present a challenge to the accuracy of measurement of particularly minor components in the milk, such as individual fatty acids or proteins. In this study we have used Analysis of variance–Simultaneous Component Analysis (ASCA), to monitor the spectral variation between and within each of four different FOSS FTIR spectrometers over each week in an independent milk testing laboratory over 4 years, between August 2017 and March 2021 (223 weeks). On everyday of each week, spectra of the same pilot milk sample were recorded approximately every hour on each of the four instruments. Overall, variations between instruments had the largest effect on spectral variation over each week, making a significant contribution every week. Within each instrument, day-to-day variations over the week were also significant for all but two of the weeks measured, however it contributed less to the variance overall. At certain times other factors not explained by weekday variation or inter-instrument variation dominated the variance in the spectra. Examination of the scores and loadings of the weekly ASCA analysis allowed identification of changes in the spectral regions affected by drifts in each instrument over time. This was found to particularly affect some of the fatty acid predictions.
2021
analysis of variance with simultaneous component analysis; ASCA; FTIR spectroscopy; instrument stability; milk testing; quality control; standardization
01 Pubblicazione su rivista::01a Articolo in rivista
Routine Monitoring of Instrument Stability in a Milk Testing Laboratory With ASCA: A Pilot Study / Nieuwoudt, M. K.; Giglio, C.; Marini, F.; Scott, G.; Holroyd, S. E.. - In: FRONTIERS IN CHEMISTRY. - ISSN 2296-2646. - 9:(2021). [10.3389/fchem.2021.733331]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1687626
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