首页> 外文会议>Conference on infrared sensors, devices, and applications >Analysis of Total Oil and Fatty Acids Composition by Near Infrared Reflectance Spectroscopy in Edible Nuts
【24h】

Analysis of Total Oil and Fatty Acids Composition by Near Infrared Reflectance Spectroscopy in Edible Nuts

机译:食用坚果中近红外反射光谱法分析油和脂肪酸的总含量

获取原文

摘要

Near Infrared (NIR) Reflectance spectroscopy has established itself as an important tool in quantifying water and oil present in various food materials. It is rapid and nondestructive, easier to use, and does not require processing the samples with corrosive chemicals that would render them non-edible. Earlier, the samples had to be ground into powder form before making any measurements. With the development of new soft ware packages, NIR techniques could now be used in the analysis of intact grain and nuts. While most of the commercial instruments presently available work well with small grain size materials such as wheat and corn, the method present here is suitable for large kernel size products such as shelled or in-shell peanuts. Absorbance spectra were collected from 400 nm to 2500 run using a NIR instrument. Average values of total oil contents (TOC) of peanut samples were determined by standard extraction methods, and fatty acids were determined using gas chromatography. Partial least square (PLS) analysis was performed on the calibration set of absorption spectra, and models were developed for prediction of total oil and fatty acids. The best model was selected based on the coefficient of determination (R~2), Standard error of prediction (SEP) and residual percent deviation (RPD) values. Peanut samples analyzed showed RPD values greater than 5.0 for both absorbance and reflectance models and thus could be used for quality control and analysis. Ability to rapidly and nondestructively measure the TOC, and analyze the fatty acid composition, will be immensely useful in peanut varietal improvement as well as in the grading process of grain and nuts.
机译:近红外(NIR)反射光谱法已成为量化各种食品原料中存在的水和油的重要工具。它快速且无损,易于使用,并且不需要使用会导致其不可食用的腐蚀性化学物质处理样品。之前,必须在进行任何测量之前将样品研磨成粉末形式。随着新软件包的开发,NIR技术现在可以用于完整谷物和坚果的分析。尽管目前可用的大多数商业仪器都适用于小粒度材料,例如小麦和玉米,但此处介绍的方法适用于大粒产品,例如带壳或带壳花生。使用NIR仪器在400nm至2500nm范围内收集吸收光谱。通过标准提取方法确定花生样品的总油含量(TOC)平均值,并使用气相色谱法测定脂肪酸。在吸收光谱的校准集上进行了偏最小二乘(PLS)分析,并开发了用于预测总油和脂肪酸的模型。根据确定系数(R〜2),标准预测误差(SEP)和残余百分比偏差(RPD)值选择最佳模型。分析的花生样品在吸光度和反射率模型中均显示RPD值大于5.0,因此可用于质量控制和分析。快速而无损地测量TOC并分析脂肪酸组成的能力,将对改善花生品种以及谷物和坚果的分级过程非常有用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号