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Enhanced butanol production from ammonium sulfite pretreated wheat straw by separate hydrolysis and fermentation and simultaneous saccharification and fermentation

机译:通过分别进行水解和发酵以及同时糖化和发酵来提高亚硫酸铵预处理的麦草的丁醇产量

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摘要

Wheat straw (WS) was pretreated by ammonium sulfite (AS) for efficient acetone-butanol-ethanol (ABE) production by Clostridium acetobutylicum ATCC 824. Spent liquor containing the amides has the potential to be used for slow-release fertilizer production, and the solid fraction was readily for ABE fermentation. Compared to the results of separate hydrolysis and fermentation (SHF), relative higher ABE titer and yield were achieved in simultaneous saccharification and fermentation (SSF) using different level of AS pretreated WS (6%, 7.5%, 9% and 10.5%, w/v). As biomass loading in SHF increased from 6% to 10.5%, ABE (butanol) titer increased from 12.28 (7.52) to 17.75 (11.25) g/L, with ABE (butanol) yield reducing from 161 (98) to 133 (84) g/kg raw WS. For SSF, the maximum ABE (butanol) titer was obtained from 9% biomass loading. As biomass loading increased from 6% to 9%, ABE (butanol) titer increased from 17.13 (9.50) to 19.83 (12.64) g/L, with ABE (butanol) yield reducing from 224 (1 2 4) to 173 (1 1 0) g/kg raw WS. This study suggested that ABE production by SSF is viable to be conducted using AS pretreated WS.
机译:小麦秸秆(WS)经过亚硫酸铵(AS)预处理,可通过丙酮丁醇梭菌ATCC 824高效生产丙酮-丁醇-乙醇(ABE)。含酰胺的废液有潜力用于生产缓释肥料,并且固体部分易于进行ABE发酵。与单独水解和发酵(SHF)的结果相比,使用不同水平的AS预处理WS(6%,7.5%,9%和10.5%,w)在同时糖化和发酵(SSF)中获得了相对更高的ABE滴度和产量。 / v)。随着SHF中生物量的负载从6​​%增加到10.5%,ABE(丁醇)滴度从12.28(7.52)增加到17.75(11.25)g / L,而ABE(丁醇)产率从161(98)降低到133(84) g / kg原始WS。对于SSF,最大的ABE(丁醇)效价是由9%的生物量负载获得的。随着生物量负荷从6%增加到9%,ABE(丁醇)滴度从17.13(9.50)增加到19.83(12.64)g / L,而ABE(丁醇)产率从224(1 2 4)降低到173(1 1 0)g / kg原始WS。这项研究表明,使用AS预处理的WS可以进行SSF生产ABE。

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