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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Recirculation of Process Streams in Fuel Ethanol Production from Softwood Based on Simultaneous Saccharification and Fermentation
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Recirculation of Process Streams in Fuel Ethanol Production from Softwood Based on Simultaneous Saccharification and Fermentation

机译:基于同时糖化和发酵的软木燃料乙醇生产过程流再循环

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摘要

The effect of process stream recirculation on ethanol production from steam-pretreated softwood based on simultaneous saccharification and fermentation (SSF) was investigated for two process configurations. In the first configuration, a part of the stillage stream after distillation was recycled and, in the second configuration, the liquid afte SSF was recycled. The aim was to minimize the energy consumption in the distillation of the fermentation broth and in the evaporation of the stillage, as well as the use of fresh water. However, recirculation leads to an increased concentration of nonvolatiles in the first configuration, and of both volatiles and nonvolatiles in the second configuration. These substances might be inhibitory to the enzymes and the yeast in SSF. When 60% of the fresh water was replaced by stillage, the ethanol yield and the productivity were the same as for the cnfiguration without recirculation. The ethanol production cost was reduced by 17%. In the second configuration, up to 40% of the fresh water could be replaced without affecting the final ethanol yield, although the initial ethanol productivity decreased. The ethanol production cost was reduced by 12%. At higher degrees of recirculation, fermentation was clearly inhibited, resulting in a decrease in ethanol yield while hydrolysis seemed unaffected.
机译:针对两种工艺配置,研究了基于同时糖化和发酵(SSF)的工艺流再循环对蒸汽预处理软木中乙醇生产的影响。在第一配置中,蒸馏后的部分蒸馏物流被再循环,并且在第二配置中,在SSF之后的液体被再循环。目的是使发酵液的蒸馏和釜馏物的蒸发以及淡水的使用中的能量消耗最小化。然而,再循环导致在第一配置中的非易失性的浓度增加,并且在第二配置中导致挥发性和非挥发性的浓度增加。这些物质可能会抑制SSF中的酶和酵母。当用蒸馏水代替60%的淡水时,乙醇的产量和生产率与无再循环的配置相同。乙醇生产成本降低了17%。在第二种配置中,尽管最初的乙醇生产率降低了,但最多可替换40%的淡水而不会影响最终的乙醇产量。乙醇生产成本降低了12%。在较高的再循环度下,发酵明显受到抑制,导致乙醇收率下降,而水解似乎未受影响。

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