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首页> 外文期刊>Journal of the American Oil Chemists' Society >Detection of lard mixed with body fats of chicken, lamb, and cow by fourier transform infrared spectroscopy
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Detection of lard mixed with body fats of chicken, lamb, and cow by fourier transform infrared spectroscopy

机译:傅里叶变换红外光谱法检测鸡,羔羊和牛体脂中混入猪油

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摘要

Fourier transform infrared (FTIR) spectroscopy provides a simple and rapid means of detecting lard blended with chicken, lamb, and cow body fats. The spectral bands associated with chicken, lamb, and cow body fats and their lard blends were recorded, interpreted, and identified. Qualitative differences between the spectra are proposed as a basis for differentiating between the pure animal fats and their blends. A semiquantitative approach is proposed to measure the percent of lard in blends with lamb body fat (LBF) on the basis of the frequency shift of the band in the region 3009–3000 cm−1, using the equation y=0.1616x+3002.10. The coefficient of determination (R 2) was 0.9457 with a standard error (SE) of 1.23. The percentage of lard in lard/LBF blends was also correlated to the absorbance at 1417.89 and 966.39 cm−1 by the equations y=0.0061x+0.1404 (R 2=0.9388, SE=0.018) and y=0.004x+0.1117 (R 2=0.9715, SE=0.009), respectively. For the qualitative determination of lard blended with chicken body fat (CF), the FTIR spectral bands in the frequency ranges of 3008–3000, 1418–1417, 1385–1370, and 1126–1085 cm−1 were employed. Semiquantitative determination by measurement of the absorbance at 3005.6 cm−1 is proposed, using the equation y=0.0071x+0.1301 (R 2=0.983, SE=0.012). The percentage of lard in lard/GF blends was also correlated to the absorbance at 1417.85 cm−1 (y=0.0053x+0.0821, with R 2=0.9233, SE=0.019) and at 1377.58 cm−1 (y=0.0069x+0.1327, with R 2=0.9426, SE=0.022). For blends of lard with cow body fat (CBF) bands in the range 3008–3006 cm−1 and at 1417.8 and 966 cm−1 were used for qualitative detection. The equation y=−0.005x+0.3188 with R 2=0.9831 and SE=0.0086 was obtained for semiquantitative determination at 966.22 cm−1.
机译:傅里叶变换红外(FTIR)光谱技术提供了一种简单,快速的方法来检测与鸡,羊肉和牛体脂肪混合的猪油。记录,解释和识别与鸡,羊肉和牛体脂肪及其猪油混合物相关的光谱带。光谱之间的质量差异被提议作为区分纯动物脂肪及其混合物的基础。提出了一种半定量方法,该方法基于方程y = 0.1616,在3009–3000 cm-1 范围内的频带频率偏移的基础上,测量与羊肉脂肪(LBF)混合的猪油的百分比x + 3002.10。测定系数(R 2 )为0.9457,标准误差(SE)为1.23。猪油/ LBF混合物中猪油的百分率也与y17.0.00yx + 0.1404(R 2 = 0.9388,SE = 0.018)等式相关,在1417.89和966.39 cm-1 处的吸光度相关。 y = 0.004x + 0.1117(R 2 = 0.9715,SE = 0.009)。为了定性确定猪油与鸡体脂肪(CF)的混合,使用了在3008–3000、1418–1417、1385–1370和1126–1085 cm-1 频率范围内的FTIR光谱带。提出了使用等式y = 0.0071x + 0.1301(R 2 = 0.983,SE = 0.012)通过测量3005.6 cm-1 处的吸光度进行半定量测定的方法。猪油/ GF混合物中猪油的百分比还与1417.85 cm-1 (y = 0.0053x + 0.0821,R 2 = 0.9233,SE = 0.019)和1377.58 cm处的吸光度相关。 -1 (y = 0.0069x + 0.1327,R 2 = 0.9426,SE = 0.022)。对于猪油与牛体脂肪(CBF)的混合物,定性检测的范围为3008–3006 cm-1 ,在1417.8和966 cm-1 。在966.22 cm-1 处进行半定量测定,得到方程y = -0.005x + 0.3188,R 2 = 0.9831,SE = 0.0086。

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