Lactic acid production from pretreated corn stover with recycled streams
Chen, Hao; Su, Zihang; Wang, Yong; Wang, Boxuan; Si, Zhihao; Lu, Jie; Su, Changsheng; Ren, Wenqiang; Chen, Huidong; Cai, Di
刊名PROCESS BIOCHEMISTRY
2020-04
卷号91期号:0页码:132-140
关键词Lactic acid Simultaneous saccharification and fermentation Waste recycling Biorefinery Integrated ultrafiltration and nanofiltration
ISSN号1359-5113
英文摘要

In order to overcome bottlenecks of the high amount of cellulase consumption in lignocellulosic L-Lactic acid (LA) production, a non-sterilized fed-batch simultaneous saccharification and fermentation (SSF) -membrane separation integration process was established in this current work. During the process, residual cellulase that remaining in the waste aqueous solution and solid residuals of corn stover (CS) were recycled and reused in subsequent fermentations. A total 6 rounds of operation were performed. Averagely, LA yield of 0.389 g g(-1) (pretreated CS) was achieved, which was 1.20 times higher than that of the conventional process without waste stream recycling. Moreover, the wastewater discharge and the cost of nutrients for fermentation can also hugely decrease. Results indicated that cellulase, wastewater discharge and nutrients consumption of the process reduced by 47.4 %, 73.7 % and 86.1 %, respectively. This study opens a promising way for the reduction of second-generation LA production cost, which could significantly change the economic feasibility of the LA biorefineries.

语种英语
内容类型期刊论文
源URL[http://ir.rcees.ac.cn/handle/311016/45320]  
专题大型分析仪器实验室
推荐引用方式
GB/T 7714
Chen, Hao,Su, Zihang,Wang, Yong,et al. Lactic acid production from pretreated corn stover with recycled streams[J]. PROCESS BIOCHEMISTRY,2020,91(0):132-140.
APA Chen, Hao.,Su, Zihang.,Wang, Yong.,Wang, Boxuan.,Si, Zhihao.,...&Qin, Peiyong.(2020).Lactic acid production from pretreated corn stover with recycled streams.PROCESS BIOCHEMISTRY,91(0),132-140.
MLA Chen, Hao,et al."Lactic acid production from pretreated corn stover with recycled streams".PROCESS BIOCHEMISTRY 91.0(2020):132-140.
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