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非无菌系统中用于单细胞蛋白生产的奶酪乳清的可处理性:第一部分。使用固定化植物乳杆菌TISTR 2265和微生物群落的微需氧序批式反应器(微需氧SBR)进行乳酸发酵的最佳条件。

Treatability of cheese whey for single-cell protein production in nonsterile systems: Part I. Optimal condition for lactic acid fermentation using a microaerobic sequencing batch reactor (microaerobic SBR) with immobilized Lactobacillus plantarum TISTR 2265 and microbial communities.

作者信息

Monkoondee Sarawut, Kuntiya Ampin, Chaiyaso Thanongsak, Leksawasdi Noppol, Techapun Charin, Kawee-Ai Arthitaya, Seesuriyachan Phisit

机构信息

a Bioprocess Cluster, Faculty of Agro-Industry , Chiang Mai University , Chiang Mai , Thailand.

出版信息

Prep Biochem Biotechnol. 2016 May 18;46(4):392-8. doi: 10.1080/10826068.2015.1045613.

Abstract

Cheese whey contains a high organic content and causes serious problems if it is released into the environment when untreated. This study aimed to investigate the optimum condition of lactic acid production using the microaerobic sequencing batch reactor (microaerobic SBR) in a nonsterile system. The high production of lactic acid was achieved by immobilized Lactobacillus plantarum TISTR 2265 to generate an acidic pH condition below 4.5 and then to support single-cell protein (SCP) production in the second aerobic sequencing batch reactor (aerobic SBR). A hydraulic retention time (HRT) of 4 days and a whey concentration of 80% feeding gave a high lactic acid yield of 12.58 g/L, chemical oxygen demand (COD) removal of 62.38%, and lactose utilization of 61.54%. The microbial communities in the nonsterile system were dominated by members of lactic acid bacteria, and it was shown that the inoculum remained in the system up to 330 days.

摘要

奶酪乳清含有高有机成分,如果未经处理就排放到环境中会引发严重问题。本研究旨在探究在非无菌系统中使用微氧序批式反应器(微氧SBR)生产乳酸的最佳条件。通过固定化植物乳杆菌TISTR 2265实现乳酸的高产,以产生低于4.5的酸性pH条件,然后在第二个好氧序批式反应器(好氧SBR)中支持单细胞蛋白(SCP)的生产。4天的水力停留时间(HRT)和80%进料的乳清浓度产生了12.58 g/L的高乳酸产量、62.38%的化学需氧量(COD)去除率和61.54%的乳糖利用率。非无菌系统中的微生物群落以乳酸菌为主,并且表明接种物在系统中可保留长达330天。

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