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通过重复批次生物膜发酵,利用环形和盘形塑料复合载体优化L-(+)-乳酸生产。

Optimization of L-(+)-lactic acid production by ring and disc plastic composite supports through repeated-batch biofilm fermentation.

作者信息

Ho K L, Pometto A L, Hinz P N

机构信息

Department of Food Science and Human Nutrition, Iowa State University, Ames 50011, USA.

出版信息

Appl Environ Microbiol. 1997 Jul;63(7):2533-42. doi: 10.1128/aem.63.7.2533-2542.1997.

Abstract

Four customized bioreactors, three with plastic composite supports (PCS) and one with suspended cells (control), were operated as repeated-batch fermentors for 66 days at pH 5 and 37 degrees C. The working volume of each customized reactor was 600 ml, and each reactor's medium was changed every 2 to 5 days for 17 batches. The performance of PCS bioreactors in long-term biofilm repeated-batch fermentation was compared with that of suspended-cell bioreactors in this research. PCS could stimulate biofilm formation, supply nutrients to attached and free suspended cells, and reduce medium channelling for lactic acid production. Compared with conventional repeated-batch fermentation, PCS bioreactors shortened the lag time by threefold (control, 11 h; PCS, 3.5 h) and sixfold (control, 9 h; PCS, 1.5 h) at yeast extract concentrations of 0.4 and 0.8% (wt/vol), respectively. They also increased the lactic acid productivity of Lactobacillus casei subsp. rhamnosus (ATCC 11443) by 40 to 70% and shortened the total fermentation time by 28 to 61% at all yeast extract concentrations. The fastest productivity of the PCS bioreactors (4.26 g/liter/h) was at a starting glucose concentration of 10% (wt/vol), whereas that of the control (2.78 g/liter/h) was at 8% (wt/vol). PCS biofilm lactic acid fermentation can drastically improve the fermentation rate with reduced complex-nutrient addition.

摘要

四个定制的生物反应器,其中三个带有塑料复合载体(PCS),一个为悬浮细胞(对照),在pH值为5和37摄氏度的条件下作为重复批次发酵罐运行66天。每个定制反应器的工作体积为600毫升,每个反应器的培养基每2至5天更换一次,共进行17批次。本研究将PCS生物反应器在长期生物膜重复批次发酵中的性能与悬浮细胞生物反应器的性能进行了比较。PCS可以刺激生物膜形成,为附着细胞和游离悬浮细胞提供营养,并减少乳酸生产过程中的培养基沟流现象。与传统的重复批次发酵相比,在酵母提取物浓度分别为0.4%(重量/体积)和0.8%(重量/体积)时,PCS生物反应器将延迟期分别缩短了三倍(对照为11小时;PCS为3.5小时)和六倍(对照为9小时;PCS为1.5小时)。在所有酵母提取物浓度下,它们还使干酪乳杆菌鼠李糖亚种(ATCC 11443)的乳酸生产率提高了40%至70%,并将总发酵时间缩短了28%至61%。PCS生物反应器的最快生产率(4.26克/升/小时)出现在起始葡萄糖浓度为10%(重量/体积)时,而对照的最快生产率(2.78克/升/小时)出现在8%(重量/体积)时。PCS生物膜乳酸发酵可以在减少复杂营养物添加的情况下大幅提高发酵速率。

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本文引用的文献

1
Nutrient leaching and end product accumulation in plastic composite supports for L-(+)-lactic Acid biofilm fermentation.
Appl Environ Microbiol. 1997 Jul;63(7):2524-32. doi: 10.1128/aem.63.7.2524-2532.1997.
2
Lactic Acid production in a mixed-culture biofilm reactor.
Appl Environ Microbiol. 1993 Jan;59(1):203-7. doi: 10.1128/aem.59.1.203-207.1993.

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