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Enrichment and Purification of Aucubin from Eucommia ulmoides Ionic Liquid Extract Using Macroporous Resins

机译:大孔树脂富集和纯化杜仲离子液体提取物中的蜂胶

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摘要

Aiming to address the shortcomings of high-concentration ethanol or methanol extraction solutions that need to be diluted and concentrated prior to use in conventional macroporous resin adsorption approaches, an efficient approach for enrichment and purification of aucubin from the ionic liquid extraction solution of samaras of Eucommia ulmoides was proposed. Among the nine kinds of macroporous resins investigated, the HPD850 resin was found to be the most suitable. Equilibrium adsorption tests were investigated and found to be better fitted by the Langmuir isotherm model. After the dynamic tests on a column packed with HPD850, the optimum operational conditions were as follows: for the absorption process, an initial aucubin concentration of 9.87 mg/L, a sample volume of 13 bed volumes (BV), and a flow rate of 2 BV/h; for the water washing process, 5 BV of deionized water and a flow rate of 3 BV/h; for the ethanol desorption process, a 10–80% ethanol volume fraction as the eluent, 2 BV for each ethanol volume fraction, and a flow rate of 3 BV/h. The 40–80% ethanol volume fraction eluent was collected and concentrated to produce the final products, resulting in an aucubin purity and recovery of 79.41% and 72.92%, respectively.
机译:旨在解决在常规大孔树脂吸附方法中使用之前必须先稀释和浓缩的高浓度乙醇或甲醇提取溶液的缺点,这是一种从杜仲果的离子液体提取溶液中富集和纯化紫胶的有效方法提出了ulmoides。在所研究的9种大孔树脂中,发现HPD850树脂是最合适的。对平衡吸附测试进行了研究,发现该模型更适合Langmuir等温模型。在装有HPD850的色谱柱上进行动态测试后,最佳操作条件如下:对于吸收过程,初始洋红霉素浓度为9.87 mg / L,样品体积为13床体积(BV),流速为2 BV / h;对于水洗过程,使用5 BV的去离子水和3 BV / h的流速;对于乙醇解吸过程,使用10-80%乙醇体积分数作为洗脱液,每个乙醇体积分数2 BV,流速3 BV / h。收集乙醇体积分数为40-80%的洗脱液并进行浓缩,以产生最终产物,从而产生了一种洋红色的纯度,回收率分别为79.41%和72.92%。

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