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首页> 外文期刊>Process Biochemistry >Optimal design of a tandem simulated moving bed process for separation of paclitaxel, 13-dehydroxybaccatin III, and 10-deacetylpaclitaxel
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Optimal design of a tandem simulated moving bed process for separation of paclitaxel, 13-dehydroxybaccatin III, and 10-deacetylpaclitaxel

机译:串联模拟移动床工艺分离紫杉醇,13-脱羟基浆果赤霉素III和10-脱乙酰紫杉醇的优化设计

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摘要

Paclitaxel, 13-dehydroxybaccatin III (13-DHBIII), and 10-deacetylpaclitaxel (10-DAP), which came from the plant cell culture, have been regarded as highly valuable because of their efficacy in the anticancer treatments. Due to these values, the necessity for separating the three components in an economical way has been a matter of grave concern in industry. In this study, a tandem simulated moving bed (SMB) process that consisted of two four-zone SMB units in series was applied to such a ternary separation. First, a series of pulse injection experiments were performed for estimation of the adsorption isotherm and mass-transfer parameters. The estimated parameters were utilized in the tandem SMB optimization tool that was prepared based on the standing wave design principle. During the optimization of interest, the throughput of the tandem SMB was maximized while meeting the requirements on product purities and pressure drop. The results proved that the most economical strategy of utilizing the tandem SMB was to recover paclitaxel in the first SMB unit and then separate the remaining two components (13-DHBIII and 10-DAP) in the second SMB unit. Furthermore, such a strategy was also found to result in better tandem SMB performances over the entire region of a pressure drop limit.
机译:来自植物细胞培养物中的紫杉醇,13-脱羟基浆果赤霉素III(13-DHBIII)和10-脱乙酰基紫杉醇(10-DAP)由于其在抗癌治疗中的功效而被认为具有很高的价值。由于这些值,以经济的方式分离这三个组成部分的必要性已经成为工业界的严重关注的问题。在这项研究中,由两个串联的四个四区SMB单元组成的串联模拟移动床(SMB)工艺应用于这种三元分离。首先,进行了一系列脉冲注入实验,以估算吸附等温线和传质参数。估计的参数用于基于驻波设计原理的串联SMB优化工具中。在优化利益的过程中,串联SMB的吞吐量达到了最高,同时满足了产品纯度和压降的要求。结果证明,使用串联SMB的最经济的策略是在第一个SMB单元中回收紫杉醇,然后在第二个SMB单元中分离剩余的两个组分(13-DHBIII和10-DAP)。此外,还发现这种策略可在整个压降限制区域内实现更好的串联SMB性能。

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