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首页> 外文期刊>Biochemical Engineering Journal >Enzymatic biodiesel production of microalgae lipids under supercritical carbon dioxide: Process optimization and integration
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Enzymatic biodiesel production of microalgae lipids under supercritical carbon dioxide: Process optimization and integration

机译:在超临界二氧化碳下酶促生物柴油生产微藻类脂质的工艺优化和集成

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Enzymatic biodiesel production in supercritical CO2 (SC-CO2) has recently received an increasing attention, as an alternative to the conventional chemical processes. In this study, enzymatic production of biodiesel from microalgal lipids was investigated in batch and integrated extraction-reaction systems. In the batch system, the effect of enzyme loading (15-50 wt%), temperature (35-55 °C) and methanol to lipid molar ratios (3-15:1) were studied, and response surface methodology was employed to optimize selected factors effect. The optimum transesterification yield of 80% was obtained at 47 °C, 200 bar, 35% enzyme loading, and 9:1 molar ratio after 4 h reaction in the batch system. The experimental results were also used to determine the kinetics parameters of the Ping-Pong Bi Bi model, with methanol inhibition, suggested to describe the reaction. In the continuous integrated extraction-reaction system, the effect of methanol to lipids molar ratio was investigated, and enzyme operational stability and reusability were tested. Bed regeneration by tert-butanol washing was also assessed. The optimum methanol to lipid ratio was found to be 10:1. At this ratio, the enzyme was able to attain 78% of its original activity when reused for 6 continuous cycles, and the bed was successfully reused by washing with tert-butanol.
机译:作为常规化学工艺的替代方法,超临界二氧化碳(SC-CO2)中酶促生物柴油的生产近来受到越来越多的关注。在这项研究中,从批处理和集成提取反应系统中研究了微藻类脂质酶法生产生物柴油的方法。在分批系统中,研究了酶负载(15-50 wt%),温度(35-55°C)和甲醇与脂质摩尔比(3-15:1)的影响,并采用响应面方法进行了优化选择因素的影响。在批处理系统中反应4小时后,在47°C,200 bar,35%的酶负载和9:1的摩尔比下,可获得80%的最佳酯交换收率。实验结果还被用来确定Ping-Pong Bi Bi模型的动力学参数,并用甲醇抑制,以描述反应。在连续集成萃取反应系统中,研究了甲醇与脂质摩尔比的影响,并测试了酶的操作稳定性和可重复使用性。还评估了通过叔丁醇洗涤的床再生。发现最佳的甲醇与脂质的比率为10:1。在该比例下,当酶重复使用6个连续循环时,其酶能达到其原始活性的78%,并且通过用叔丁醇洗涤成功地重新使用了该床。

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