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首页> 外文期刊>Applied Microbiology and Biotechnology >Sucrose purification and repeated ethanol production from sugars remaining in sweet sorghum juice subjected to a membrane separation process
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Sucrose purification and repeated ethanol production from sugars remaining in sweet sorghum juice subjected to a membrane separation process

机译:蔗糖纯化和反复乙醇产生的糖脂剩余的糖高高粱汁进行膜分离过程

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The juice from sweet sorghum cultivar SIL-05 (harvested at physiological maturity) was extracted, and the component sucrose and reducing sugars (such as glucose and fructose) were subjected to a membrane separation process to purify the sucrose for subsequent sugar refining and to obtain a feedstock for repeated bioethanol production. Nanofiltration (NF) of an ultrafiltration (UF) permeate using an NTR-7450 membrane (Nitto Denko Corporation, Osaka, Japan) concentrated the juice and produced a sucrose-rich fraction (143.2 g L-1 sucrose, 8.5 g L-1 glucose, and 4.5 g L-1 fructose). In addition, the above NF permeate was concentrated using an ESNA3 NF membrane to provide concentrated permeated sugars (227.9 g L-1) and capture various amino acids in the juice, enabling subsequent ethanol fermentation without the addition of an exogenous nitrogen source. Sequential batch fermentation using the ESNA3 membrane concentrate provided an ethanol titer and theoretical ethanol yield of 102.5-109.5 g L-1 and 84.4-89.6%, respectively, throughout the five-cycle batch fermentation by Saccharomyces cerevisiae BY4741. Our results demonstrate that a membrane process using UF and two types of NF membranes has the potential to allow sucrose purification and repeated bioethanol production.
机译:萃取来自甜高粱品种SIL-05(在生理到期时间收获)的果汁,对组分蔗糖和还原糖(例如葡萄糖和果糖)进行膜分离过程,以纯化蔗糖以供后续糖精制和获得用于反复生物乙醇生产的原料。使用NTR-7450膜(Nitto Denko Corporation,Osaka,Japan)的超滤(UF)渗透物(UF)渗透物浓缩果汁并产生富含蔗糖的馏分(143.2克L-1蔗糖,8.5g L-1葡萄糖和4.5克L-1果糖)。此外,使用ESNA3 NF膜浓缩上述NF渗透物​​,得到浓缩的渗透糖(227.9g L-1)并捕获果汁中的各种氨基酸,使得随后的乙醇发酵而不加入外源氮源。使用ESNA3膜浓缩物的顺序间歇性发酵分别通过Saccharomyces Cerevisiae的五循环批量发酵,分别提供乙醇滴度和理论乙醇产率102.5-109.5g L-1和84.4-89.6%。我们的结果表明,使用UF和两种类型的NF膜的膜过程具有允许蔗糖纯化和反复生物乙醇产生的可能性。

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