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首页> 外文期刊>Separation and Purification Technology >Production of high-purity fucose from the seaweed of Undaria pinnatifida through acid-hydrolysis and simulated-moving bed purification
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Production of high-purity fucose from the seaweed of Undaria pinnatifida through acid-hydrolysis and simulated-moving bed purification

机译:通过酸性水解和模拟移动床纯化从核心过豆芽海藻中生产高纯度岩藻糖

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摘要

An efficient process suitable for a large-scale production of fucose from the seaweed of Undaria pinnatifida was developed in this study. The developed process consisted of a hydrolysis, a series of pretreatment processing for decolorization and deionization, and a final-stage purification using a well-designed simulated-moving bed (SMB) process. First, the optimal acid concentration and reaction time for the seaweed hydrolysis were investigated. The hydrolysate resulting from such investigation was then used to determine the optimal operating conditions for the pretreatment step consisting of an activated-carbon treatment, an electrodialysis, and an ion exchange processing, which were performed to accomplish decolorization and deionization. On the basis of the optimal conditions that were obtained from the preceding experiments, a series of hydrolysis and pretreatment operations were carried out to secure a sufficiently large amount of decolorized and deionized hydrolysate. This was then moved on to the final purification step based on the use of the SMB process, which was designed such that the detailed recovery of fucose with a very high purity in a continuous mode could be ensured. The results showed that the purity of fucose, which reached 15.4% after the completion of the pretreatment processing, was markedly increased to nearly 100% through the SMB processing. It was also confirmed that the overall loss of fucose amounted to 22.9%, and most of the fucose loss occurred during the electrodialysis and ion-exchange procedures whereas there was almost no loss during the SMB processing.
机译:本研究开发了一种适用于来自羊膜葡萄食海藻的大规模生产岩藻糖的高效过程。开发的方法包括水解,一系列预处理加工用于脱色和去离子,以及使用良好设计的模拟移动床(SMB)工艺的最后阶段纯化。首先,研究了海藻水解的最佳酸浓度和反应时间。然后使用由这种研究得到的水解产物来确定由活化 - 碳处理,电渗析和离子交换加工组成的预处理步骤的最佳操作条件,所述离子交换处理是为了实现脱色和去离子而组成的。在从前实验中获得的最佳条件的基础上,进行了一系列水解和预处理操作,以确保足够大量的脱色和去离子水解产物。然后基于使用SMB工艺的使用,将其移动到最终纯化步骤,这被设计成使得可以确保以连续模式的具有非常高纯度的岩藻糖的详细恢复。结果表明,在预处理加工完成后,岩藻糖的纯度达到15.4%,显着增加至SMB处理的近100%。还证实,岩藻糖的总体损失量为22.9%,并且在电渗析和离子交换程序期间发生了大部分岩藻糖损失,而在SMB处理过程中几乎没有损失。

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