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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Poly(malic acid) production from liquefied corn starch by simultaneous saccharification and fermentation with a novel isolated Aureobasidium pullulans GXL-1 strain and its techno-economic analysis
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Poly(malic acid) production from liquefied corn starch by simultaneous saccharification and fermentation with a novel isolated Aureobasidium pullulans GXL-1 strain and its techno-economic analysis

机译:来自液化玉米淀粉的聚(苹果酸)通过同时糖化和发酵与新型分离的金属萘基钙蛋白GXL-1菌株及其技术经济分析

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摘要

In this study, a novel Aureobasidium pullulans GXL-1 strain without melanin secretion was isolated for efficient polymalic acid (PMA) production. The PMA produced by GXL-1 was characterized, and its molecular mass was determined to be 1.621 kDa by gel permeation chromatography. Liquefied corn starch was shown to replace glucose for PMA production by GXL-1 through simultaneous saccharification and fermentation. The PMA titer obtained from batch fermentation was up to 49.0 +/- 1.6 g/L in a 10 L fermentor, and the PMA yield and productivity obtained from repeated-batch fermentation were up to 0.50 g/g and 0.34 g/L.h, respectively. Furthermore, process design and techno-economic analysis were performed at an annual output level of 5000 metric tons by SuperPro Designer. Results showed that the production cost of $2.046/kg and payback period of 6.9 years were achieved by repeated-batch fermentation; this provides an economically feasible strategy for industrial-scale production of PMA.
机译:在该研究中,分离了没有黑色素分泌的新型金属硼酸淀粉GXL-1菌株,以获得有效的多种酸(PMA)生产。 通过GXL-1产生的PMA的特征在于,通过凝胶渗透色谱法测定其分子量为1.621kDa。 显示液化玉米淀粉通过同时糖化和发酵通过GXL-1取代PMA生产的葡萄糖。 在10L发酵罐中,从分批发酵获得的PMA滴度高达49.0 +/- 1.6g / L,并且分批发酵获得的PMA产量和生产率分别为0.50g / g和0.34g / LH 。 此外,Superpro Designer的5000公吨的年产量水平进行了过程设计和技术经济分析。 结果表明,通过重复分批发酵实现了2.046 /千克的生产成本和6.9岁的回收期; 这为PMA的工业规模生产提供了经济上可行的策略。

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