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Ethanol Production from Sugar Beet Pulp using Escherichia coli KOll and Saccharomyces cerevisiae

机译:使用大肠杆菌KOll和酿酒酵母从甜菜浆中生产乙醇

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The effectiveness of sugar beet pulp as a feedstock for ethanol production was tested in three different hydrolysis and fermentation systems using Escherichia coli KO11 alone or in combination with Saccharomyces cerevisiae. Two microorganisms were used to improve ethanol yields from the galacturonic acid, arabinose, and glucose in sugar beet pulp hydrolyzates. The baseline system used E. coli KO 11 as the only fermenting organism in a simultaneous saccharification and fermentation (SSF) with pectinase, hemicellulase, and cellulase enzymes. Ethanol was produced with a yield of 0.30 g ethanol g~(-1) sugar. S. cerevisiae could not be used to ferment glucose successfully following a fermentation with E. coli KO11 because of the inhibitory levels (>10 gL~(-1)) of acetic acid produced during galacturonic acid utilization. Use of E. coli KO11 for fermentation of a sequential hydrolysis of pectin and hemicellulose followed by cellulose resulted in 27% lower ethanol yields than the baseline system. When starting with an SSF with S. cerevisiae using pectinases, cellulases, cellobiases, and following with a second fermentation with E. coli KO11, total ethanol yield increased to 0.34 g ethanol g~(-1) sugar. Despite the lower ethanol yields in the baseline system (using only E. coli KO11), that fermentation finished 48 to 72 h earlier and had the highest volumetric ethanol productivity (0.22 gL~(-1) h~(-1)).
机译:在三种单独使用大肠杆菌KO11或与酿酒酵母组合使用的不同水解和发酵系统中,测试了甜菜浆作为乙醇生产原料的有效性。两种微生物用于提高甜菜粕果肉水解物中半乳糖醛酸,阿拉伯糖和葡萄糖的乙醇收率。在果胶酶,半纤维素酶和纤维素酶同时进行糖化和发酵(SSF)的过程中,基线系统使用大肠杆菌KO 11作为唯一的发酵生物。产生乙醇,收率为0.30 g乙醇g〜(-1)糖。由于在半乳糖醛酸利用过程中产生的乙酸抑制水平(> 10 gL〜(-1)),酿酒酵母无法在用大肠杆菌KO11发酵后成功地发酵葡萄糖。使用大肠杆菌KO11进行果胶和半纤维素顺序水解的发酵,然后再进行纤维素发酵,与基准系统相比,乙醇收率降低了27%。当先使用果胶酶,纤维素酶,纤维虫病酶和酿酒酵母进行SSF发酵后,再用大肠杆菌KO11进行第二次发酵,总乙醇产量将增加至0.34 g乙醇g〜(-1)糖。尽管基线系统中的乙醇产量较低(仅使用大肠杆菌KO11),该发酵仍提前48至72小时完成,并且具有最高的乙醇体积生产率(0.22 gL〜(-1)h〜(-1))。

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