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提取温度对车前子壳黏液原溶液依数性、流体动力学及流变学性质的影响

The Effect of the Extraction Temperature on the Colligative, Hydrodynamic and Rheological Properties of Psyllium Husk Mucilage Raw Solutions.

作者信息

Ptaszek Anna, Liszka-Skoczylas Marta, Goik Urszula

机构信息

Centre for Innovation and Research on Prohealthy and Safe Food, University of Agriculture in Krakow, Balicka 104, 30-149 Krakow, Poland.

Department of Engineering and Machinery in Food Industry, Faculty of Food Technology, University of Agriculture in Krakow, Balicka 122, 30-149 Krakow, Poland.

出版信息

Molecules. 2025 Jul 31;30(15):3219. doi: 10.3390/molecules30153219.

Abstract

The aim of the research was to analyse the effect of different extraction temperatures on the colligative, hydrodynamic, and rheological properties of a water-soluble AXs fractions. The research material consisted of raw water extracts of arabinoxylans obtained from the husk at the following temperatures: 40 °C (AX40), 60 °C (AX60), 80 °C (AX80), and 100 °C (AX100). These were characterised in terms of their hydrodynamic, osmotic, and rheological properties, as well as the average molecular mass of the polysaccharide fractions. An increase in extraction temperature resulted in an increase in weight-average molecular mass, from 2190 kDa (AX40) to 3320 kDa (AX100). The values of the osmotic average molecular mass were higher than those obtained from GPC, and decreased with increasing extraction temperature. The dominance of biopolymer-biopolymer interactions was evident in the shape of the autocorrelation function, which did not disappear as the extraction temperature and concentration increased. Furthermore, the values of the second virial coefficient were negative, which is indicative of the tendency of biopolymer chains to aggregate. The rheological properties of the extracts changed from being described by a power-law model (AX40 and AX60) to being described by the full non-linear De Kee model (AX80 and AX100).

摘要

该研究的目的是分析不同提取温度对水溶性阿拉伯木聚糖(AXs)组分的依数性、流体动力学和流变学性质的影响。研究材料为由谷壳在以下温度下获得的阿拉伯木聚糖的原水提取物:40℃(AX40)、60℃(AX60)、80℃(AX80)和100℃(AX100)。对这些提取物的流体动力学、渗透压和流变学性质以及多糖组分的平均分子量进行了表征。提取温度的升高导致重均分子量增加,从2190 kDa(AX40)增加到3320 kDa(AX100)。渗透压平均分子量的值高于凝胶渗透色谱法(GPC)测得的值,并随提取温度的升高而降低。自相关函数的形状表明生物聚合物-生物聚合物相互作用占主导地位,且不会随着提取温度和浓度的增加而消失。此外,第二维里系数的值为负,这表明生物聚合物链有聚集的趋势。提取物的流变学性质从由幂律模型描述(AX40和AX60)转变为由完全非线性的德凯模型描述(AX80和AX100)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a0f/12348874/72f9eb187392/molecules-30-03219-g0A1.jpg

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