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通过循环增量含氧介质提高丝瓜海绵上吸附物的乙酰化率。

Increasing the acetification rate of adsorbed on luffa sponge using recycle of incremental oxygenated medium.

作者信息

Krusong Warawut, Vichitraka Assanee, Sriphochanart Wiramsri, Pornpukdeewattana Soisuda

机构信息

Fermentation Technology Division, Faculty of Agro-Industry, King Mongkut's Institute of Technology Ladkrabang, Ladkrabang District, Bangkok 10520 Thailand.

出版信息

3 Biotech. 2020 Mar;10(3):95. doi: 10.1007/s13205-020-2093-x. Epub 2020 Feb 5.

Abstract

Speeding up the production of vinegar from rice wine by acetification, using a packed-bed bioreactor with a luffa sponge matrix (LSM) as adsorption carrier of acetic acid bacteria (AAB), and the effect of oxygenation of the recycled medium were investigated. The 0.06 L/min recycle of medium resulted in a high oxygen-transfer coefficient, while optimal dissolved oxygen (DO) of the medium maximized planktonic AAB cell growth with no contamination due to high acid in an external reservoir without LSM. The highest acetification rate (ETA) of 2.857 ± 0.1 g/L/day was achieved with DO 3.5-4.5 ppm at 35 ± 1 °C. To increase ETA, the optimized oxygenated medium was externally supplied and recycled at the ratio of 0.1. Therefore, acetification was conducted in both the bioreactor and reservoir resulting in an increased ETA (6 ± 0.2 g/L/day). This also aligned with the highest system AAB biomass (confirmed by scanning electron microscopy). Under the recycled oxygenated medium supply consistently high biotransformation yields (average 77.3%) were observed over nine sequential cycles. Meanwhile, an average ETA of 6.3 ± 0.2 g/L/day was obtained. This method can have practical applications in improving the efficiency and speeding up small-scale vinegar production.

摘要

研究了使用带有丝瓜海绵基质(LSM)作为醋酸菌(AAB)吸附载体的填充床生物反应器,通过醋酸化作用加速米酒酿醋的过程,以及循环培养基的充氧效果。以0.06 L/min的速率循环培养基可获得较高的氧传递系数,而培养基的最佳溶解氧(DO)可使浮游AAB细胞生长最大化,且在没有LSM的外部储液器中不会因高酸度而产生污染。在35±1°C、溶解氧为3.5 - 4.5 ppm的条件下,最高醋酸化速率(ETA)达到2.857±0.1 g/L/天。为提高ETA,以0.1的比例外部供应并循环优化后的充氧培养基。因此,在生物反应器和储液器中都进行了醋酸化反应,从而提高了ETA(6±0.2 g/L/天)。这也与系统中最高的AAB生物量(通过扫描电子显微镜确认)相符。在连续九个循环中,在循环充氧培养基供应的情况下,始终观察到较高的生物转化产率(平均77.3%)。同时,平均ETA为6.3±0.2 g/L/天。该方法在提高效率和加速小规模醋生产方面具有实际应用价值。

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