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Process optimization of fucoxanthin production with Tisochrysis lutea

机译:用TISOCOOCHRYSIS LUTEA处理岩藻素生产的过程优化

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摘要

To optimize fucoxanthin production in Tisochrysis lutea, the effect of different process parameters on fucoxanthin productivity (Pfx) were evaluated using batch and continuous experiments. In batch, the highest Pfx was found at 30 degrees C and 300 mu mol m(-2) s(-1), allowing to design continuous experiments to optimize the dilution rate. The highest ever reported Pfx (9.43-9.81 mg L-1 d(-1)) was achieved at dilution rates of 0.53 and 0.80 d(-1). Irradiance was varied (50-500 mu mol m(-2) s(-1)) to result in a range of absorbed light between 2.23 and 25.80 mol m(-2) d(-1) at a fixed dilution rate (0.53 d(-1)). These experiments validated the hypothesis that light absorbed can be used to predict fucoxanthin content, resulting in 2.23 mol m(-2) d(-1) triggering the highest fucoxanthin content (16.39 mg/g). The highest Pfx was found with 18.38 mol m(-2) d(-1). These results can be used to achieve high Pfx or fucoxanthin content during cultivation of Tisochrysis lutea.
机译:为了优化TISOCOOCHRYSIS LUTEA的岩藻素产量,使用分批和连续实验评估不同工艺参数对岩藻素生产率(PFX)的影响。 分批,在30℃和300μmMM(-2)S(-1)中发现最高PFX,允许设计连续实验以优化稀释率。 以0.53和0.80d(-1)的稀释速率,实现了最高的PFX(9.43-9.81mg L-1 d(-1))。 变化辐照度(50-500 mol m(-2)s(-1)),以固定稀释速率的2.23和25.80mol m(-2)d(-1)之间的吸收光范围(0.53 d(-1))。 这些实验验证了光吸收的假设可用于预测岩藻素含量,导致触发最高的粪豆阴体含量(16.39mg / g)的2.23mol m(-2)d(-1)。 发现最高的PFX,用18.38mol m(-2)d(-1)。 这些结果可用于在TISOCHRYSIS LUTEA的培养过程中实现高PFX或粪豆阴体含量。

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