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玉米浆作为一种经济高效的营养辅助剂用于运动发酵单胞菌的高效乙醇发酵。

Corn steep liquor as a cost-effective nutrition adjunct in high-performance Zymomonas ethanol fermentations.

作者信息

Lawford H G, Rousseau J D

机构信息

Bio-engineering Laboratory, Department of Biochemistry, University of Toronto, Toronto, Ontario, M5S 1A8 Canada.

出版信息

Appl Biochem Biotechnol. 1997 Spring;63-65:287-304. doi: 10.1007/BF02920431.

Abstract

The ethanologenic bacterium Zymomonas mobilis has been demonstrated to possess several fermentation performance characteristics that are superior to yeast. In a recent survey conducted by the National Renewable Energy Laboratory (NREL), Zymomonas was selected as the most promising host for improvement by genetic engineering directed to pentose metabolism for the production of ethanol from lignocellulosic biomass and wastes. Minimization of costs associated with nutritional supplements and seed production is essential for economic large-scale production of fuel ethanol. Corn steep liquor (CSL) is a byproduct of corn wet-milling and has been used as a fermentation nutrient supplement in several different fermentations. This study employed pH-controlled batch fermenters to compare the growth and fermentation performance of Z. mobilis in glucose media with whole and clarified corn steep liquor as sole nutrient source, and to determine minimal amounts of CSL required to sustain high-performance fermentation. It was concluded that CSL can be used as a cost-effective single-source nutrition adjunct for Zymomonas fermentations. Supplementation with inorganic nitrogen significantly reduced the requirement for CSL. Depending on the type of process and mode of operation, there can be a significant contribution of nutrients from the seed culture, and this would also reduce the requirement for CSL. Removal of the insolubles (40% of the total solids) from CSL did not detract significantly from its nutritional effectiveness. On an equal-volume basis, clarified CSL was 1.33 times more "effective" (in terms of cell mass yield and fermentation time) than whole CSL. For fermentations at sugar loading of >5% (w/v), the recommended level of supplementation with clarified CSL is 1.0% (v/v). Based on CSL at US $50/t, the cost associated with using clarified CSL at 1.0% (v/v) is 88 cents/1000 L of medium and 5.3 cents/gal of undenatured ethanol for fermentation of 10% (w/v) glucose. This cost compares favorably to estimates for using inorganic nutrients. The cost impact is reduced to 3.1 cents/gal if there is a byproduct credit for selling the insolubles as animal feed at a price of about US $100/t. Therefore, the disposition of the CSL insolubles can significantly impact the calculations of cost associated with the use of CSL as a nutritional adjunct in large-scale fermentations.

摘要

产乙醇细菌运动发酵单胞菌已被证明具有若干优于酵母的发酵性能特征。在国家可再生能源实验室(NREL)最近进行的一项调查中,运动发酵单胞菌被选为通过基因工程改进戊糖代谢以从木质纤维素生物质和废料生产乙醇的最有前景的宿主。将与营养补充剂和种子生产相关的成本降至最低对于燃料乙醇的经济大规模生产至关重要。玉米浆(CSL)是玉米湿法研磨的副产品,已在几种不同的发酵中用作发酵营养补充剂。本研究采用pH控制的分批发酵罐,比较运动发酵单胞菌在以全玉米浆和澄清玉米浆为唯一营养源的葡萄糖培养基中的生长和发酵性能,并确定维持高性能发酵所需的CSL的最小量。得出的结论是,CSL可用作运动发酵单胞菌发酵的具有成本效益的单一来源营养辅助剂。补充无机氮可显著降低对CSL的需求。根据工艺类型和操作模式,种子培养物中的营养物质可能会有显著贡献,这也会降低对CSL的需求。从CSL中去除不溶物(占总固体的40%)不会显著降低其营养效果。在等体积的基础上,澄清CSL(就细胞质量产量和发酵时间而言)比全CSL“有效”1.33倍。对于糖负荷>5%(w/v)的发酵,推荐的澄清CSL补充水平为1.0%(v/v)。基于CSL价格为50美元/吨,在10%(w/v)葡萄糖发酵中使用1.0%(v/v)澄清CSL的成本为每1000升培养基88美分,每加仑未变性乙醇5.3美分。与使用无机营养物的估计成本相比,这一成本具有优势。如果以约100美元/吨的价格将不溶物作为动物饲料出售有副产品信贷,则成本影响降至每加仑3.1美分。因此,CSL不溶物的处置会显著影响在大规模发酵中使用CSL作为营养辅助剂的相关成本计算。

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