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Efficient Extraction of Bioethanol from Freshwater Cyanobacteria Using Supercritical Fluid Pretreatment

机译:超临界流体预处理从淡水蓝藻中高效提取生物乙醇

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摘要

For the production of ethanol from freshwater cyanobacteria, a new pretreatment method using supercritical fluid was introduced. In this study, it was found that the supercritical fluid could penetrate inside the cell wall and help to liberate starch from cyanobacterial cells which resulted in the increase of the efficiency of ethanol production. For Microcystis aeruginosa, supercritical fluid pretreatment increased the amount of ethanol produced from cyanobacteria from 1.53 g/L to 2.66 g/L. For Anabaena variabilis, the amount of ethanol was increased from 1.25 g/L to 2.28 g/L. With use of supercritical fluid pretreatment, the efficiency of the process to obtain higher ethanol yields from freshwater cyanobacteria was improved upto 80%. The optimum temperature and pressure conditions for supercritical fluid pretreatment were determined as the temperature of 40 oC and the pressure of 120 atm. This study demonstrates the feasibility of using supercritical fluid pretreatment for ethanol production using freshwater cyanobacteria.
机译:为了从淡水蓝细菌生产乙醇,引入了一种使用超临界流体的新预处理方法。在这项研究中,发现超临界流体可以渗透到细胞壁内部,并帮助从蓝细菌细胞中释放淀粉,从而提高了乙醇生产效率。对于铜绿微囊藻,超临界流体预处理可使蓝细菌产生的乙醇量从1.53 g / L增加到2.66 g / L。对于鱼腥藻,乙醇的含量从1.25 g / L增加到2.28 g / L。通过使用超临界流体预处理,该方法从淡水蓝细菌获得更高乙醇收率的效率提高了80%。确定超临界流体预处理的最佳温度和压力条件为40 oC的温度和120 atm的压力。这项研究证明了使用超临界流体预处理通过淡水蓝细菌生产乙醇的可行性。

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