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The construction of a green and efficient system for the separation of polyprenols from Ginkgo biloba leaves

机译:从银杏叶片分离聚丙烯叶片的绿色有效系统

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The aim of this work was to construct a new type of system for the green extraction and efficient separation of Ginkgo biloba leaf polyprenols (GBP). First, cell disruption technologies (enzymolysis, ultrasound, microwave and ball milling) coupled with deep eutectic solvents (DES) were used to extract polyprenyl acetates (PA) from Ginkgo biloba leaves. Results showed that ball milling was the best assisted extraction method, and the amount of PA was 89.88 mg/g. Then, a novel silver-loaded material with selectivity for PA was synthesized, characterized and utilized to absorb PA from the DES extraction solution. The purity of the PA quickly reached 71.28 % after being separated by the silver-loaded material. Finally, saponification and molecular distillation were adopted to remove non-GBP ingredients, and a high-purity GBP (99.80 %) was obtained by optimizing its processing conditions. This study provides a technical support for the development of a green and efficient GBP separation method and lays the foundation for the fabrication of GBP-based drugs, health products and cosmetics.
机译:这项工作的目的是为Ginkgo Biloba叶聚丙烯(GBP)的绿色提取和有效分离构建一种新型系统。首先,使用与深共晶溶剂(DES)偶联的细胞破坏技术(酶解,超声波,微波和球磨)从银杏叶中提取聚丙烯酰乙酸盐(PA)。结果表明,球磨是最好的辅助提取方法,PA的量为89.88 mg / g。然后,合成了一种具有选择性的新型银载材料,其特征在于和利用,吸收来自DES提取溶液的PA。 PA的纯度快速达到71.28%,在加载的材料分离后达到71.28%。最后,采用皂化和分子蒸馏除去非GBP成分,通过优化其加工条件,获得高纯度GBP(99.80%)。本研究为开发绿色有效的GBP分离方法提供了技术支持,并为制造基于GBP的药物,保健品和化妆品的制造基础。

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