首页> 外文期刊>Applied Microbiology and Biotechnology >Scale translation from shaken to diffused bubble aerated systems for lycopene production by Blakeslea trispora under stimulated conditions
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Scale translation from shaken to diffused bubble aerated systems for lycopene production by Blakeslea trispora under stimulated conditions

机译:Shaken在刺激条件下由Blakeslea Trispora进行Shaken的扩展到扩散泡泡充气系统的扩散泡泡膨胀系统

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摘要

This study deals with the scale up of Blakeslea trispora culture from the successful surface-aerated shake flasks to dispersed-bubble aerated column reactor for lycopene production in the presence of lycopene cyclase inhibitor 2-methyl imidazole. Controlling the initial volumetric oxygen mass transfer coefficient (k(L)a) via airflow rate contributes to increasing cell mass and lycopene accumulation. Inhibitor effectiveness seems to decrease in conditions of high cell mass. Optimization of crude soybean oil (CSO), airflow rate, and 2-methyl imidazole was arranged according to central composite statistical design. The optimized levels of factors were 110.5 g/L, 2.3 vvm, and 29.5 mg/L, respectively. At this optimum setting, maximum lycopene yield (256 mg/L) was comparable or even higher to those reported in shake flasks and stirred tank reactor. 2-Methyl imidazole use at levels significantly lower than those reported for other inhibitors in the literature was successful in terms of process selectivity. CSO provides economic benefits to the process through its ability to stimulate lycopene synthesis, as an inexpensive carbon source and oxygen vector at the same time.
机译:本研究涉及从成功的表面充气摇瓶中的Blabeslea Trispora培养的扩展到分散 - 气泡充气柱反应器,用于番茄红素环酶抑制剂2-甲基咪唑的存在下的番茄红素产生。通过气流率控制初始体积氧传质系数(K(L)A)有助于提高细胞质量和番茄红素积累。抑制剂效果似乎降低了高细胞质量的条件。根据中央复合统计设计,布置了粗大豆油(CSO),气流率和2-甲基咪唑的优化。优化的因素水平分别为110.5g / L,2.3 VVM和29.5mg / L.在该最佳设定下,最大番茄红素产率(256mg / L)与摇瓶和搅拌釜反应器报道的那些相当或甚至更高。在工艺选择性方面,2-甲基咪唑用于显着低于文献中其他抑制剂的抑制剂的水平。 CSO通过其刺激番茄红素合成的能力为过程提供经济益处,同时是廉价的碳源和氧载体。

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