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Pressurized hot water extraction of 10-deacetylbaccatin III from yew for industrial application

机译:从紫杉中加压热水萃取10-脱乙酰浆果赤霉素III的工业应用

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Abstract In this study a systematic and model-based approach for a process development focusing on pressurized hot water extraction (PHWE) is investigated, considering potential thermal degradation of high-value compounds. For extraction of 10-deacetylbaccatin {III} (10-DAB) from yew as a representative test system, water at 120?°C provided the best compromise between extraction yield and thermal degradation. A yield of almost 100% with regard to the overall amount of 10-DAB was reached in only 20?min. Each experiment for model parameter determination was carried out with 1.9?g of plant material at a flowrate of 1?mL/min and an applied pressure of 11?bar. All experimental values are assessed by a physico-chemical (rigorous) extraction model with experimental values and simulation results showing high conformity. In order to demonstrate the usability of the extraction model and model parameter determination a scale-up prediction was calculated. The scale-up experiments were predicted precisely and thus the model validated. The experiments and the simulation results for a column with a volume of 104?mL and a mass of 22?g yew needles were consistent with the milli-scale used for model parameter determination.
机译:摘要在这项研究中,考虑到高价值化合物的潜在热降解,研究了一种基于系统的,基于模型的方法,该方法专注于加压热水萃取(PHWE)。为了从紫杉中提取10-脱乙酰基浆果赤霉素{III}(10-DAB)作为代表性的测试系统,在120°C的温度下,提取率与热降解之间的折中效果最佳。仅在20分钟内就达到了10-DAB总量的几乎100%的产率。每个模型参数确定实验均以1.9?g植物材料,流速为1?mL / min,施加压力为11?bar进行。所有实验值均通过理化(严格)提取模型进行评估,实验值和模拟结果显示出较高的一致性。为了证明提取模型和模型参数确定的可用性,计算了放大预测。精确预测了放大实验,从而验证了模型。体积为104?mL,质量为22?g紫杉针的色谱柱的实验和仿真结果与用于模型参数确定的毫刻度一致。

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