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首页> 外文期刊>Food Chemistry >Fresh, freeze-dried or cell wall samples: Which is the most appropriate to determine chemical, structural and rheological variations during apple processing using ATR-FTIR spectroscopy?
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Fresh, freeze-dried or cell wall samples: Which is the most appropriate to determine chemical, structural and rheological variations during apple processing using ATR-FTIR spectroscopy?

机译:新鲜,冻干或细胞壁样品:使用ATR-FTIR光谱测定苹果加工期间的化学,结构和流变变化最合适的是最合适的?

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Attenuated total reflectance Fourier transform spectroscopy (ATR-FTIR) was applied on fresh (NF), freeze-dried (FD) and cell wall materials (AIS) of raw and processed apples. These samples prepared from 36 apple sets and the corresponding 72 purees, issued from different varieties, agricultural practices, storage periods and processing conditions, were used to build models including exploratory analysis, supervised classification and multivariate calibration. Fresh and freeze-dried samples presented similar fingerprint spectral variations due to processing. ATR-FTIR directly on fresh purees satisfactorily predicted textural properties such as particle average size and volume (RPD 3.0), while freeze-drying improved assessment of chemical (RPD 3.2) and rheological (RPD 3.1) parameters using partial least-squares regression. The assessment of texture and macrocomponents of purees can be obtained with a limited sample preparation. For research applications because of a need of sample preparation, changes of cell wall composition during fruit processing could be assessed in relationship with pectin degradation.
机译:衰减的总反射率傅里叶变换光谱(ATR-FTIR)施加在原料和加工苹果的新鲜(NF),冷冻干燥(FD)和细胞壁材料(AIS)上。这些样品由36份苹果套和相应的72​​个泥浆,农业实践,储存期和加工条件发出,用于构建包括探索性分析,监督分类和多元校准的模型。新鲜和冻干样品呈现由于加工引起的类似指纹光谱变化。 ATR-FTIR直接在新鲜的纯净斯上令人满意地预测粒度平均尺寸和体积(RPD> 3.0),而使用局部最小二乘(RPD> 3.2)和流变(RPD> 3.1)参数的冷冻干燥改善评估回归。可以通过有限的样品制备获得纯净质地和宏观组分的评估。对于由于需要样品制备而研究应用,可以在与果胶降解的关系中评估果实加工过程中细胞壁组合物的变化。

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