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Simultaneous Saccharification and Fermentation of Cellulosic Biomass to Acetic Acid

机译:纤维素生物质同时糖化和发酵成乙酸

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A strain of Clostridium thermoaceticum (ATCC 49707) was evaluated for its homoacetate potential. This thermophilic anaerobe best produces acetate from glucose at pH 6.0 and 59°C with a yield of 83% of theoretical. Enzyme hydrolysis of two substrates, α-cellulose and a pulp mill sludge, yielded 68% and 70% digestion, respectively. The optimum conditions for the simultaneous saccharification and fermentation (SSF) were substrate dependent: 55°C, pH 6.0 for α-cellulose, and 55°C, pH 5.5 for the pulp mill sludge. In the SSF with α-cellulose, the overall yield of acetate was strongly influenced by the enzyme loading. In a fed-batch operation of SSF with α-cellulose, an overall acetic acid yield of 60 wt% was obtained. Among the factors limiting the yields were incomplete digestion by the enzyme and the end-product inhibition. In the SSF of pulp mill sludge, inhibitors present in the sludge severely limited bacterial action. A large accumulation of glucose developed over the entire process, changing the intended SSF operation into a separate hydrolysis and fermentation operation. Despite a long lag phase of microbial growth, a terminal yield of 85% was obtained with this substrate.
机译:评价菌株热乙酸梭菌(ATCC 49707)的均乙酸潜力。这种嗜热厌氧菌最好在pH 6.0和59°C下从葡萄糖中产生乙酸盐,理论产率为83%。两种底物α-纤维素和制浆厂污泥的酶水解分别产生68%和70%的消化率。同步糖化和发酵(SSF)的最佳条件取决于底物:α-纤维素的温度为55°C,pH 6.0,制浆厂的污泥的pH值为55°C,pH 5.5。在具有α-纤维素的SSF中,乙酸盐的总收率受酶负载的影响很大。在具有α-纤维素的SSF的分批补料操作中,获得了60wt%的总乙酸收率。限制产量的因素包括酶的不完全消化和最终产物的抑制。在制浆厂污泥的SSF中,污泥中存在的抑制剂严重限制了细菌的作用。在整个过程中积累了大量的葡萄糖,从而将预期的SSF操作更改为单独的水解和发酵操作。尽管微生物生长处于长期滞后阶段,但使用该底物仍可达到85%的最终收率。

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