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智能岩藻聚糖薄膜对增塑剂和提取条件的刺激具有物理化学、光学、阻隔和机械性能响应。

Smart ulvan films responsive to stimuli of plasticizer and extraction condition in physico-chemical, optical, barrier and mechanical properties.

机构信息

Laboratoire de Valorisation, Analyses et Sécurité des Aliments, École Nationale d'Ingénieurs de Sfax, Route de Soukra, 3038 Sfax, Tunisia.

Laboratoire de Valorisation, Analyses et Sécurité des Aliments, École Nationale d'Ingénieurs de Sfax, Route de Soukra, 3038 Sfax, Tunisia.

出版信息

Int J Biol Macromol. 2020 May 1;150:714-726. doi: 10.1016/j.ijbiomac.2020.02.111. Epub 2020 Feb 18.

Abstract

Smart films were produced with ulvan extracted from the green seaweed Ulva. lactuca at different extraction conditions, by varying the glycerol or sorbitol in specific plasticizer concentration. Chemical composition and molecular weight characteristics of ulvans were carried out by GLC and HPSEC analysis, respectively. Regardless of the extraction procedure, the investigation revealed that ulvans were selected as reproducible and suitable materials of stimuli-responsive due to its peculiar chemical composition and self-aggregation molecular behavior. When using the terminology of stimuli-responsive system, we declare that the physico-chemical, barrier, optical, and mechanical characteristics of ulvan films system are strongly responsive to extraction conditions and to plasticizer type and concentration. As plasticizer concentration increased, thickness, moisture content (MC), water solubility, water vapor permeability (WVP), transparency, elongation at break (EAB), usually UV and visible light protection of ulvan films increased, while, their tensile strength (TS) decreased significantly. The films prepared with glycerol exhibited better solubility, transparency and mechanical properties, than those with sorbitol. However, the films formed with sorbitol had the greatest moisture resistance and more effective vapor, visible and UV light barrier as well as the lowest solubility. The FTIR spectra evidenced the expected outcome of the chemical interaction and miscibility kind between polysaccharides and plasticizers.

摘要

采用不同的提取条件,从绿藻浒苔中提取出岩藻聚糖,并利用特定增塑剂浓度中的甘油或山梨糖醇来制备智能薄膜。通过 GLC 和 HPSEC 分析分别对岩藻聚糖的化学组成和分子量特征进行了研究。无论采用哪种提取方法,研究都表明,岩藻聚糖因其独特的化学组成和自聚集分子行为而被选为可重复使用且适合响应型刺激的材料。当使用响应型系统的术语时,我们宣称岩藻聚糖薄膜系统的物理化学、阻隔、光学和机械特性对提取条件以及增塑剂类型和浓度具有很强的响应性。随着增塑剂浓度的增加,岩藻聚糖薄膜的厚度、水分含量 (MC)、水溶性、水蒸气透过率 (WVP)、透明度、断裂伸长率 (EAB)、通常的紫外线和可见光保护性能通常会增加,而其拉伸强度 (TS) 则会显著降低。与山梨糖醇相比,用甘油制备的薄膜具有更好的溶解性、透明度和机械性能。然而,用山梨糖醇形成的薄膜具有最佳的耐湿性以及更有效的蒸汽、可见光和紫外线阻隔性,同时其溶解度也最低。FTIR 光谱证实了多糖和增塑剂之间化学相互作用和混合种类的预期结果。

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