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The Production of Ethanol and Hydrogen from Pineapple Peel by Saccharomyces cerevisiae and Enterobacter aerogenes

机译:通过Saccharomyces Cerevisiae和Enterobacter Ailogenes从菠萝剥离的乙醇和氢的生产

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The production of biofuels including ethanol and hydrogen from agricultural waste is being concern as a renewable energy. Pineapple peel, a by-product of the pineapple processing industry, account for 29-40% (w/w) of total pineapple weight. 36.25±2.87% of cellulose was achieved from pineapple peel after pretreatment with water and heat at 100°C for 4 h. Afterwards, 0.5% (w/w) cellulase from Aspergillus niger (Sigma) was added for enzymatic hydrolysis. The maximum sugar production (34.03±1.30 g/L) was obtained after 24 h of incubation time. The enzyme hydrolysate was utilized as fermentation medium, with no nutritional addition to produce ethanol and hydrogen by Saccharomyces cerevisiae TISTR 5048 and Enterobacter aerogenes TISTR 1468. The maximum yield of ethanol (9.69 g/L) with no hydrogen production by S. cerevisiae was achieved after 72 h. However, the maximum ethanol and hydrogen from E. aerogenes were 1.38 g/L and 1,416 mL/L after 72 h and 12 h of cultivation, respectively. In addition, the 1.2-folds of biofuel production were increased when immobilized bacterial cell in matrix of loofah.
机译:生物燃料的生产包括来自农业废物的乙醇和氢气是可再生能源的关注。菠萝Peel,菠萝加工行业的副产品,占总菠萝重量的29-40%(w / w)。在预处理水和加热在100℃下进行4小时,从菠萝剥离中达到36.25±2.87%的纤维素。然后,加入来自毒蕈葡萄氏菌(Sigma)的0.5%(w / w)纤维素酶用于酶水解。在孵育时间24小时后获得最大糖生产(34.03±1.30g / L)。酶水解产物用作发酵培养基,没有通过酿酒酵母产生乙醇和氢气的营养加入酿酒酵母TISTR 5048和肠杆菌空气引发TISTR 1468.达到乙醇(9.69g / L)的最大收率,酿酒酵母没有氢培养72小时后。然而,在72小时和12小时的培养后,来自E.飞机的最大乙醇和氢气为1.38g / L和1,416ml / L.此外,在丝瓜中的基质中的固定细菌细胞时,增加了1.2倍的生物燃料生产。

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