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乙醇酊剂提取后废料的 valorization:在聚合物基基质中的应用。 注:“valorization”这个词比较生僻,可能是特定专业领域术语,可根据上下文进一步确定其准确含义,这里直接保留英文未翻译,若有更准确的中文对应词可替换。

Valorization of Wastes after Extraction of the Ethanol Tincture: Application in Polymer-Based Matrices.

作者信息

Flórez-Fernández Noelia, Ferreira-Anta Tania, Torres María Dolores, Domínguez Herminia

机构信息

Departamento de Enxeñería Quimica, Campus Ourense, Universidade de Vigo, Edificio Politécnico, As Lagoas, 32004 Ourense, Spain.

CINBIO, Departamento de Ingeniería Química, Campus Ourense, Universidade de Vigo, 32004 Ourense, Spain.

出版信息

Polymers (Basel). 2021 Sep 16;13(18):3121. doi: 10.3390/polym13183121.

Abstract

The waste solids remaining after the ethanolic extraction of arnica were proposed as raw material for the recovery of the remaining phenolic fraction. Greener processes based on intensification extraction, with microwave (MHG) and ultrasound (UAE) assistance and pressurized hot water extraction under subcritical conditions (AH), were studied. The entire process provided approximately 28% of phenolics for the sequence when MHG was used, 22% in the sequence where AH was employed, and the extracts showed up to 60% the ABTS radical scavenging capacity of Trolox. However, the cytotoxic effects on the cell growth of tumoral cells were only moderate. Therefore, considering a possible external topical application, extracts containing selected arnica extracts were further used to develop polymer-based gelled matrices formulated with either chitosan or polyvinyl alcohol. Rheological testing indicated that all proposed matrices exhibited relatively high mechanical features, even better than those determined with matrices prepared with their counterpart commercial arnica tinctures. Overall, the shear-thinning behavior of gelled matrices loaded with arnica extracts obtained by MHG or AH stages was enhanced compared to those containing ethanolic extracts, whereas the viscoelastic features became smoother for polymeric matrices incorporated with arnica extracts recovered at the highest MHG irradiation powers or at the highest set point temperatures of AH treatments.

摘要

山金车乙醇提取后剩余的固体废弃物被提议作为回收剩余酚类部分的原料。研究了基于强化萃取的更绿色工艺,包括微波辅助萃取(MHG)、超声辅助萃取(UAE)以及亚临界条件下的加压热水萃取(AH)。当使用MHG时,整个工艺流程中酚类物质的回收率约为28%;采用AH时,回收率为22%,且提取物对ABTS自由基的清除能力最高可达Trolox的60%。然而,其对肿瘤细胞生长的细胞毒性作用仅为中等程度。因此,考虑到可能的外部局部应用,含有选定山金车提取物的提取物被进一步用于开发以壳聚糖或聚乙烯醇配制的聚合物基凝胶基质。流变学测试表明,所有提议的基质都表现出相对较高的机械性能,甚至优于用相应商业山金车酊剂制备的基质。总体而言,与含有乙醇提取物的凝胶基质相比,通过MHG或AH阶段获得的负载山金车提取物的凝胶基质的剪切变稀行为增强,而对于在最高MHG辐照功率或AH处理的最高设定温度下回收的含有山金车提取物的聚合物基质,其粘弹性特征变得更平滑。

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