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首页> 外文期刊>Journal of near infrared spectroscopy >Analysis of sorghum content in corn-sorghum flour bioethanol feedstock by near infrared spectroscopy
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Analysis of sorghum content in corn-sorghum flour bioethanol feedstock by near infrared spectroscopy

机译:近红外光谱法分析玉米高粱粉生物乙醇原料的高粱含量

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In the sorghum-growing regions of the U.S., some bioethanol plants use mixtures of corn and sorghum grains as feedstocks depending on price and availability. For regulatory purposes and for optimizing the ethanol manufacturing process, knowledge of the grain composition of the milled feedstock is important. Thus, a near infrared spectroscopy method was developed to determine the content of sorghum in corn-sorghum flour mixtures. Commercial corn and sorghum grain samples were obtained from a bioethanol plant over an 18-month period and across two crop seasons. An array of corn-sorghum flour mixtures having 0-100% sorghum was prepared and scanned using a near infrared spectrometer in the 950-1650 nm wavelength range. A partial least squares regression model was developed to estimate sorghum content in flour mixtures. A calibration model with R(2)of 0.99 and a root mean square error of cross validation of 3.91% predicted the sorghum content of an independent set of flour mixtures withr(2) = 0.97, root mean square error of prediction = 5.25% and bias = -0.49%. Fourier-transform infrared spectroscopy was utilized to examine spectral differences in corn and sorghum flours. Differences in absorptions were observed at 2930, 2860, 1710, 1150, 1078, and 988 cm(-1)suggesting that C-H antisymmetric and symmetric, C=O and C-O stretch vibrations of corn and sorghum flours differ. The regression coefficients of the near infrared model had major peaks around overtone and combination bands of C-H stretch and bending vibrations at 1165, 1220, and 1350 nm. Therefore, the above results confirmed that sorghum content in corn sorghum flour mixtures can be determined using near infrared spectroscopy.
机译:在美国的高粱生长区域,一些生物乙醇植物根据价格和可用性使用玉米和高粱谷物的混合物作为原料。对于监管目的并优化乙醇制造过程,了解碾磨原料的晶粒组成是重要的。因此,开发了近红外光谱法以确定玉米高粱面粉混合物中高粱含量。商业玉米和高粱谷物样品是从18个月的生物乙醇植物获得,在18个月的时间内和两个作物季节。制备具有0-100%高粱的玉米高粱面粉混合物阵列并使用950-1650nm波长范围内使用近红外光谱仪扫描。开发了一种局部最小二乘回归模型以估计面粉混合物中的高粱含量。具有0.99的R(2)和交叉验证的均方根误差为3.91%的校准模型预测了独立面粉混合物的高粱含量(2)= 0.97,预测的根均线误差= 5.25%偏见= -0.49%。傅里叶变换红外光谱分析用于检查玉米和高粱面粉的光谱差异。在2930,2860,1710,1150,1078和988cm(-1)中观察到吸收的差异,表明C-H抗体和对称,C = O和C-O拉伸振动的玉米和高粱面粉不同。近红外模型的回归系数在1165,1220和1350nm处的C-H伸展和弯曲振动周围的主要峰。因此,上述结果证实,可以使用近红外光谱测定玉米高粱面粉混合物中的高粱含量。

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