Center of Innovative and Applied Bioprocessing (CIAB), Sector-81, Knowledge City, Mohali 140306 (PB), India.
Center of Innovative and Applied Bioprocessing (CIAB), Sector-81, Knowledge City, Mohali 140306 (PB), India.
Sci Total Environ. 2019 Nov 10;690:956-964. doi: 10.1016/j.scitotenv.2019.07.070. Epub 2019 Jul 5.
In present study, a potential bacterial isolate Acetobacter pasteurianus SKYAA25 was found to be very effective in the bioconversion of apple pomace to acetic acid. The isolated strain was tolerant to high ethanol concentrations of upto 14% and temperature of 42 °C. Fermentation of apple pomace alone in presence of brewing yeast produced 7.3% of bio-ethanol which was further used for acetic acid production. Apple pomace in combination with cane molasses produced 14% of bio-ethanol. The fermented bio-ethanol was used as medium for acetic acid production which yielded 52.4 g of acetic acid/100 g of DM (Dry Matter) of apple pomace. Hence, an ecofriendly process has been developed that is entirely based on microbial processing of apple pomace to produce acetic acid without involving commercial enzymes. The present bio-conversion will prove to be beneficial for utilizing food and beverage industrial waste in the production of acetic acid.
在本研究中,发现一种潜在的细菌分离株巴氏醋酸杆菌 SKYAA25 非常有效地将苹果渣转化为乙酸。分离株耐受高达 14%的乙醇浓度和 42°C 的温度。在酿造酵母存在的情况下单独发酵苹果渣可产生 7.3%的生物乙醇,然后将其进一步用于生产乙酸。苹果渣与甘蔗糖蜜结合可产生 14%的生物乙醇。发酵的生物乙醇被用作生产乙酸的培养基,每 100 克苹果渣干物质(DM)可产生 52.4 克乙酸。因此,已经开发出一种环保的工艺,完全基于微生物处理苹果渣生产乙酸,不涉及商业酶。本生物转化将有利于利用食品和饮料工业废物生产乙酸。