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Crystallization of low saturated lipid blends of palm and canola oils with sorbitan monostearate and fully hydrogenated palm oil

机译:棕榈油和低芥酸菜子油与脱水山梨糖醇单硬脂酸酯和完全氢化的棕榈油的低饱和脂质混合物的结晶

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摘要

Several scientific investigations have focused on providing new strategies for supporting the development of low saturated and zero trans lipid materials, as healthier fat alternatives for food application. This work evaluated the consistency, crystallization behavior, microstructure and polymorphism of six blends composed of palm and canola oils at different concentrations (100:0, 80:20, 60:40, 40:60, 20:80 and 0:100, in w/w%) added with 5.0% of fully hydrogenated palm oil (FHPO) or with a mixture of 2.5% of FHPO and 2.5% of sorbitan monostearate (SMS). The results were compared with the non-structured blends (standard samples). Through microstructure images, the formation of a more homogeneous and denser packed crystal network was observed for samples added with both crystallization modifiers (FHPO/SMS) compared to the corresponding standard samples, after stabilization at 25 °C during 3 h. In particular, enhanced crystallization modifications were observed for the 40:60 blend, in which the crystal form β′ emerged after the addition of FHPO/SMS. Moreover, the 40:60 blend structured with FHPO/SMS showed increased consistency (from 30 to 658 gF/cm2) and induced onset crystallization in a higher temperature (from 13.1 to 23.9 °C) compared with the non-structured one, due to the specific crystallization effects provided by both added structurants.Electronic supplementary materialThe online version of this article (10.1007/s13197-017-3026-5) contains supplementary material, which is available to authorized users.
机译:数项科学研究已集中于提供新的策略来支持低饱和和零反式脂质材料的开发,作为食品应用中更健康的脂肪替代品。这项工作评估了由棕榈油和低芥酸菜子油组成的六种不同浓度(100:0、80:20、60:40、40:60、20:80和0:100)的混合物的稠度,结晶行为,微观结构和多态性。 w / w%)加入5.0%的完全氢化棕榈油(FHPO)或2.5%的FHPO和2.5%的脱水山梨糖醇单硬脂酸酯(SMS)的混合物。将结果与非结构化共混物(标准样品)进行比较。通过微结构图像,在25°C稳定3小时后,与相应的标准样品相比,同时添加了两种结晶改进剂(FHPO / SMS)的样品观察到形成了更均质和致密的堆积晶体网络。特别地,对于40:60的共混物观察到增强的结晶改性,其中在添加FHPO / SMS之后出现β'晶型。此外,与FHPO / SMS构成的40:60掺混物相比,在更高的温度(从13.1至23.9°C)下显示出更高的稠度(从30至658 gF / cm 2 ),并引发了起始结晶。电子补充材料本文的在线版本(10.1007 / s13197-017-3026-5)包含补充材料,授权用户可以使用该非结构化材料。

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