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仙人掌果皮作为一种有价值的增值多糖资源:结构、功能和成膜性能研究。

Prickly pear peels as a valuable resource of added-value polysaccharide: Study of structural, functional and film forming properties.

机构信息

Laboratoire des Substances Naturelles, Institut National de Recherche et d'Analyse Physico-chimique (INRAP), Pôle Technologique de Sidi Thabet, 2020 Sidi Thabet, Tunisia; Université de Carthage, INSAT-BP 676, Centre urbain nord, 1080 Carthage Cedex, Tunisia.

Department of Materials Research and Technology (MRT), Luxembourg Institute of Science and Technology (LIST), 5 avenue des Hauts-Fourneaux, L-4362 Esch-sur-Alzette, Luxembourg.

出版信息

Int J Biol Macromol. 2019 Apr 1;126:238-245. doi: 10.1016/j.ijbiomac.2018.12.228. Epub 2018 Dec 24.

Abstract

Valorization of agricultural by-products constitutes a promising approach for sustainable development. Mucilage was extracted with a simple and safe method from Opuntia ficus-indica fruit peels which are considered as unexploited wastes resulting from the huge consumption of prickly pears. Structural and functional properties of the extracted polysaccharide were studied. Peels mucilage was composed of 97% carbohydrates, essentially galactose, arabinose, xylose and galacturonic acid. Specific signals of these sugars were observed in C and H NMR spectra and their chemical fingerprint was obtained by ATR-FTIR. Viscosity measurements of mucilage solution revealed a shear-thinning behavior. The extracted biopolymer exhibited good solubility in water, foaming and emulsifying capacities. Favorable thermal stability was manifested up to 250 °C. In order to conceive novel applications of this biopolymer as biodegradable packaging, its film-forming properties were studied. Red-colored films were obtained with high water contact angle (91°), solubility (42%) and grease proof character. Mechanical properties were comparable to those of other polysaccharides films with decent elongation at break reaching 66%.

摘要

农业副产品的增值利用是可持续发展的一个有前途的途径。从被认为是未开发的浪费物仙人掌果皮中,用简单安全的方法提取了黏胶。研究了提取多糖的结构和功能特性。果皮黏胶由 97%的碳水化合物组成,主要是半乳糖、阿拉伯糖、木糖和半乳糖醛酸。这些糖的特征信号在 C 和 H NMR 光谱中被观察到,其化学指纹图谱通过 ATR-FTIR 获得。黏胶溶液的粘度测量显示出剪切变稀行为。提取的生物聚合物在水中具有良好的溶解性、起泡性和乳化能力。表现出良好的热稳定性,高达 250°C。为了将这种生物聚合物作为可生物降解包装的新概念应用,研究了其成膜性能。获得了具有高接触角(约 91°)、高溶解度(约 42%)和防油脂特性的红色薄膜。机械性能与其他多糖薄膜相当,断裂伸长率达到 66%。

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