首页> 外文期刊>Journal of dairy science >Evaluation of the MilkoScan FT 6000 Milk Analyzer for Determining the Freezing Point of Goat's Milk Under Different Analytical Conditions
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Evaluation of the MilkoScan FT 6000 Milk Analyzer for Determining the Freezing Point of Goat's Milk Under Different Analytical Conditions

机译:评估MilkoScan FT 6000牛奶分析仪在不同分析条件下测定山羊牛奶凝固点的评估

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The aim of this research was to evaluate the MilkoScan FT 6000 (Foss Electric, Hiller0d, Denmark) for determining the freezing point (FP) of goat's milk under different analytical conditions. The FP was determined in duplicate in 1,800 milk aliquots obtained from 45 bulk tank milk samples from 10 Murciano-Granadina goat herds, using the MilkoScan method and a reference thermistor cryoscopy method (Advanced Instrument Inc., Norwood, MA). Five different preservation strategies—no preservative, preservation with azidiol (0.006 or 0.018 g of sodium azide/100 mL), and preservation with bronopol (0.020 or 0.040 g/100 mL)—were then used to preserve the milk. For each preservation strategy, 8 different amounts of water were added (0, 1, 2, 3, 4, 5, 6, or 7% total volume). The results obtained with each method under these 40 analytical conditions were examined by comparison of means, comparison of the standard deviations of repeatability (s_r and its relative value s_r%), and a regression analysis. Under most analytical conditions, the FP was recorded as lower by the MilkoScan method, with a mean difference of 1.5 m℃ compared with the reference method. Both methods showed similar repeatabilities (the overall s_r% was 0.22% for the MilkoScan method and 0.20% for the reference method). In comparisons of the 2 methods, the highest regression coefficients were obtained with aliquots containing >3% added water. The best regression coefficients (0.85 to 1.02) were obtained for milk samples preserved with bronopol at 0.020 g/100 mL. These results allow the MilkoScan method to be used with goat's milk for screening purposes. The factors of added water, preservative, analytical method, lactose concentration, and the effect of the bulk tank milk sample within each lactose group contributed significantly to the observed variation in FP. For practical purposes, either of the bronopol concentrations could be used when determining the FP of goat's milk with the methods tested. However, the increase in the concentration of sodium azide in the azidiol formula contributed to an important reduction in the FP recorded. Thus, the type and concentration of preservative should be taken into account when interpreting FP values.
机译:这项研究的目的是评估MilkoScan FT 6000(Foss Electric,Hiller0d,丹麦),以确定在不同分析条件下羊奶的凝固点(FP)。使用MilkoScan方法和参考热敏电阻冷冻检查法(Advanced Instrument Inc.,马萨诸塞州诺伍德),从10个Murciano-Granadina山羊群的45个散装罐装牛奶样品中提取的1800份牛奶样品一式两份测定FP。然后,使用了五种不同的保存策略:无防腐剂,用叠氮二醇(0.006或0.018 g的叠氮化钠/ 100 mL)保存和用bronopol(0.020或0.040 g / 100 mL)保存。对于每种保存策略,添加8种不同量的水(总体积为0、1、2、3、4、5、6或7%)。通过比较均值,比较重复性的标准偏差(s_r及其相对值s_r%)和回归分析,检查了在这40种分析条件下每种方法获得的结果。在大多数分析条件下,通过MilkoScan方法记录的FP均较低,与参考方法相比,平均差为1.5 m℃。两种方法均显示出相似的重复性(MilkoScan方法的总s_r%为0.22%,参考方法的总s_r%为0.20%)。在比较这两种方法时,使用添加水> 3%的等分试样可获得最高的回归系数。对于用0.020 g / 100 mL的溴硝酚保存的牛奶样品,获得了最佳回归系数(0.85至1.02)。这些结果使MilkoScan方法可与山羊奶一起用于筛选目的。添加水的因素,防腐剂,分析方法,乳糖浓度以及每个乳糖组中大罐牛奶样品的影响均显着影响了所观察到的FP变化。出于实际目的,使用测试方法测定山羊奶的FP时,可以使用两种溴硝酚浓度。但是,叠氮二醇配方中叠氮化钠浓度的增加导致记录的FP显着降低。因此,在解释FP值时应考虑防腐剂的类型和浓度。

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