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Optimization Of The Precipitation Of Clavulanic Acid From Fermented Broth Using T-octylamine As Intermediate

机译:以T-辛胺为中间体优化发酵液中克拉维酸的沉淀

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摘要

This work describes the use of clavulanic acid (CA) precipitation as the final step in the process of purification of CA from fermentation broth as an alternative to conventional methods employed traditionally. The purpose of this study was to use a stable intermediate (t-octylamine) between the conversion of CA to its salt form (potassium clavulanate), thereby enabling the resulting intermediate (amine salt of clavulanic acid) to improve the purification process and maintain the stability of the resulting potassium clavulanate. To this end, response surface methodology was employed to optimize the precipitation step. For the first reaction, five temperatures (6.6 to 23.4 °C), concentrations of clavulanic acid in organic solvent (6.6 to 23.4 mg/mL) and t-octylamine inflow rates (0.33 to 1.17 drop/min) were selected based on a central composite rotatable design (CCRD). For the second reaction, five temperatures (11.6 to 28.4 °C), concentrations of clavulanic acid amine salt in organic solvent (8.2 to 41.8 mg/mL) and concentrations of potassium 2-ethylhexanoate (0.2 to 1.2 molar) were also selected using CCRD. From these results, precipitation conditions were selected and applied to the purification of CA from the fermentation broth, obtaining a yield of 72.37%.
机译:这项工作描述了使用克拉维酸(CA)沉淀法作为从发酵液中纯化CA的最终步骤,以替代传统上使用的常规方法。这项研究的目的是在CA转化为其盐形式(克拉维酸钾)之间使用稳定的中间体(叔辛胺),从而使所得的中间体(克拉维酸胺盐)能够改善纯化过程并保持所得克拉维酸钾的稳定性。为此,采用响应面方法优化了沉淀步骤。对于第一个反应,基于中心浓度,选择了五个温度(6.6至23.4°C),棒酸在有机溶剂中的浓度(6.6至23.4 mg / mL)和叔辛胺流入速率(0.33至1.17滴/分钟)。复合可旋转设计(CCRD)。对于第二个反应,还使用CCRD选择了五个温度(11.6至28.4°C),有机溶剂中的克拉维酸胺盐浓度(8.2至41.8 mg / mL)和2-乙基己酸钾浓度(0.2至1.2摩尔)。 。从这些结果中,选择沉淀条件并将其应用于从发酵液中纯化CA,获得了72.37%的产率。

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