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Effect of homogenizer performance on accuracy and repeatability of mid-infra red predicted values for major milk components1

机译:均质机性能对主要牛奶成分的中红外预测值的准确性和可重复性的影响1

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摘要

Our objective was to determine the effect of mid-infrared (MIR) homogenizer efficiency on accuracy and repeatability of Fourier transform MIR predicted fat, true protein, and anhydrous lactose determination given by traditional filter and partial least squares (PLS) prediction models. Five homogenizers with different homogenization performance based on laser light-scattering particle size analysis were used. Repeatability and accuracy were determined by conducting 17 sequential readings on milk homogenized externally to the instrument (i.e., control) and unhomogenized milk. Milk component predictions on externally homogenized milks were affected by variation in homogenizer performance, but the magnitude of effect were small (i.e., <0.025%) when milks were pumped through both efficient and inefficient homogenizers within a MIR milk analyzer. Variation in the in-line MIR homogenizer performance on unhomogenized milks had a much larger effect on accuracy of component testing than on repeatability. The increase of particle size distribution [d(0.9)] from 1.35 to 3.03 μm (i.e., fat globule diameter above which 10% of the volume of fat is contained) due to poor homogenization affected fat tests the most; traditional filter based fat B (carbon hydrogen stretch; -0.165%), traditional filter-based fat A (carbonyl stretch; -0.074%), and fat PLS (-0.078%) at a d(0.9) of 3.03 μm. Variation in homogenization efficiency also affected traditional filter-based true protein test (+0.012%), true protein PLS prediction (-0.107%), and traditional filter-based anhydrous lactose test (+0.027%) at a d(0.9) of 3.03 μm. Effects of variation in homogenization on anhydrous lactose PLS predictions were small. The accuracy of both traditional filter models and PLS models were influenced by poor homogenization. The value of 1.7 μm for a d(0.9) used by the USDA Federal Milk Market laboratories as a criterion to make the decision to replace the homogenizer in a MIR milk analyzer appears to be a reasonable limit, given the magnitude of effect on the accuracy of fat tests. In the future, as new PLS models are developed to measure other components in milk, the sensitivity of the accuracy of the predictions of these models to factors such as variation of homogenizer performance should be determined as part of the ruggedness testing during PLS model development.
机译:我们的目标是确定传统过滤器和偏最小二乘(PLS)预测模型给出的中红外(MIR)均质器效率对傅立叶变换MIR预测的脂肪,真实蛋白质和无水乳糖测定的准确性和可重复性的影响。根据激光散射粒度分析,使用了五台均质性能不同的均质机。通过在仪器外部均质的牛奶(即对照)和未均质的牛奶上进行17次连续读数来确定可重复性和准确性。均质机性能的变化会影响外部均质乳的奶成分预测,但是当将牛奶通过MIR牛奶分析仪中的高效和低效率均质机泵送时,影响程度很小(即<0.025%)。在线MIR均质器对未均质牛奶的性能变化对组件测试准确性的影响远大于对重复性的影响。由于均质性差而使粒度分布[d(0.9)]从1.35μm增加到3.03μm(即,脂肪球直径大于10%的脂肪体积)增加,对脂肪测试的影响最大;传统过滤器基脂肪B(碳氢拉伸; -0.165%),传统过滤器基脂肪A(羰基拉伸; -0.074%)和脂肪PLS(-0.078%),d(0.9)为3.03μm。均质效率的变化还影响了传统的基于过滤器的真蛋白测试(+ 0.012%),真实蛋白的PLS预测(-0.107%)和传统的基于过滤器的无水乳糖测试(+ 0.027%)在ad(0.9)为3.03μm时。均质化变化对无水乳糖PLS预测的影响很小。传统过滤器模型和PLS模型的准确性均受均质性差的影响。考虑到对MIR牛奶分析仪精度的影​​响程度,USDA联邦牛奶市场实验室使用的ad(0.9)的1.7μm值作为决定替换MIR牛奶分析仪中的均化器的标准似乎是一个合理的限制。脂肪测试。将来,随着开发新的PLS模型以测量牛奶中的其他成分,这些模型的预测准确性对诸如均质器性能变化等因素的敏感性应作为PLS模型开发过程中耐用性测试的一部分来确定。

著录项

  • 来源
    《Journal of dairy science》 |2016年第12期|9471-9482|共12页
  • 作者单位

    Northeast Dairy Food Research Center, Department of Food Science, Cornell University, Ithaca, NY 14853;

    Northeast Dairy Food Research Center, Department of Food Science, Cornell University, Ithaca, NY 14853;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    mid-infrared; homogenization; testing accuracy;

    机译:中红外均质化测试精度;
  • 入库时间 2022-08-17 23:23:24

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