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首页> 外文期刊>Journal of separation science. >Development of a novel stirrerliquid/solid microextraction method for the separation and enrichment of trace levels of active compounds in traditional Chinese medicine
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Development of a novel stirrerliquid/solid microextraction method for the separation and enrichment of trace levels of active compounds in traditional Chinese medicine

机译:开发一种新型的搅拌器液/固微萃取技术,用于分离和富集中药中的痕量活性成分

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摘要

A novel stirrer-liquid/solid microextraction method was developed for the separation and enrichment of trace levels of curcumin, bisdemethoxycurcumin, and demethoxycurcumin in Rhizoma Curcumae Longae, Radix Curcumae, and Rhizoma Curcumae before their analysis by high-performance liquid chromatography with ultraviolet detection. In the proposed approach, a magnetic stirrer was immersed in decanol to coat its surface completely with decanol, which was used as an extraction platform. The stirrer coated with decanol is not only a power to agitate the sample solution to constantly update the sample on the stirrer surface but also it can adsorb and extract the target analytes. Some effective parameters, including suitable superficial area of stirrer, extraction solvent, sample phase pH, NaCl concentration, stirring rate, extraction time, sample phase volume, were analyzed and selected. Under the optimal conditions, the linearities are 0.0044-2.20 mu g/mL, detection limits are 0.3-0.6 ng/mL, and the extraction content per unit length and enrichment factors of the target analytes are 6.24-9.71/mm and 589 917, respectively. Also, the stirrer-liquid/solid microextraction mechanism for the extraction and enrichment of the target analytes was analyzed and expounded. The results showed that stirrerliquid/solid microextraction is a simple, rapid sample pretreatment approach with a high enrichment factor.
机译:开发了一种新型的搅拌器-液/固微萃取方法,用于分离和富集姜黄,姜黄和姜黄中痕量姜黄素,双去甲氧基姜黄素和去甲氧基姜黄素,然后通过高效液相色谱和紫外检测进行分析。在提出的方法中,将磁力搅拌器浸入癸醇中,以癸醇完全覆盖其表面,并将其用作萃取平台。涂有癸醇的搅拌器不仅具有搅拌样品溶液以不断更新搅拌器表面上样品的能力,而且还可以吸附和提取目标分析物。分析并选择了一些有效参数,包括合适的搅拌器表面积,萃取溶剂,样品相pH,NaCl浓度,搅拌速率,萃取时间,样品相体积。在最佳条件下,线性为0.0044-2.20μg / mL,检测限为0.3-0.6 ng / mL,目标分析物的单位长度提取量和富集因子为6.24-9.71 / mm和589917,分别。此外,分析并阐述了用于萃取和富集目标分析物的搅拌器-液/固微萃取机理。结果表明,搅拌器液体/固体微萃取是一种简单,快速且富集因子高的样品预处理方法。

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