Extractive Fermentation of Lactic Acid with Hiochi Bacteria in a Two-Liquid Phase System

M. Matsumoto, M. Nishimura, Hiroaki Kobayashi, Kazuo Kondo
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引用次数: 7

Abstract

Lactic acid production by fermentation has attracted interest because optically pure lactic acid is the raw material of biodegradable polymer, polylactic acid, which has been mainly used in food packing. In situ extractive fermentation of lactic acid with reactive extraction has two critical problems: the toxicity of diluents and extractant and the difference in the optimum pH between fermentation and reactive extraction. In this study, the extractive fermentation was conducted with alcohol-tolerant Hiochi bacteria, Lactobacillus homohiochii and Lactobacillus fructivorans, using the co-encapsulation of the bacteria and calcium carbonate to depress the decrease in pH in the capsules. L. fructivorans NRIC0224 and 1-decanol were selected as the Hiochi bacterium and the diluent, respectively, based on the tolerance of aliphatic alcohol and extractability. We found that the presence of powdered CaCO3 in the medium considerably alleviated the toxicity of tri-n-octylamine (TOA) and that the components in the medium, yeast extract and peptone, affected the extraction of lactic acid with TOA in 1-decanol. Then, we co-immobilized both L. fructivorans NRIC0224 cells and CaCO3 into Ca-alginate capsules and constructed an in situ extractive fermentation system using TOA and the Ca-alginate capsules. This system operated successfully, and the yield and productivity were improved over those of control fermentation.
Hiochi菌两液相萃取发酵乳酸的研究
由于光纯乳酸是生物可降解聚合物聚乳酸的原料,因此发酵生产乳酸引起了人们的关注,聚乳酸主要用于食品包装。活性萃取法乳酸原位提取发酵存在两个关键问题:稀释剂和萃取剂的毒性以及发酵和活性萃取的最佳pH值的差异。本研究采用耐醇Hiochi菌、高嗜酸乳杆菌和果聚糖乳杆菌进行提取发酵,利用细菌与碳酸钙的共包封抑制胶囊pH的下降。根据对脂肪醇的耐受性和可提取性,分别选择L. frutivorans NRIC0224和1-癸醇作为Hiochi菌和稀释剂。我们发现,培养基中粉状CaCO3的存在大大减轻了三正辛胺(TOA)的毒性,培养基中的成分酵母提取物和蛋白胨影响了1-癸醇中TOA对乳酸的提取。然后,将L. fructivorans NRIC0224细胞和CaCO3共固定在海藻酸盐胶囊中,构建了TOA和海藻酸盐胶囊的原位提取发酵体系。该系统运行成功,产率和生产效率均较对照发酵有所提高。
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