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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Use of glycerol for producing 1,3-dihydroxyacetone by Gluconobacter oxydans in an airlift bioreactor
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Use of glycerol for producing 1,3-dihydroxyacetone by Gluconobacter oxydans in an airlift bioreactor

机译:甘油在空运生物反应器中通过氧化葡糖杆菌生产1,3-二羟基丙酮的用途

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摘要

1,3-Dihydroxyacetone can be produced by biotransformation of glycerol with glycerol dehydrogenase from Gluconobacter oxydans cells. Firstly, improvement the activity of glycerol dehydrogenase was carried out by medium optimization. The optimal medium for cell cultivation was composed of 5.6g/l yeast extract, 4.7g/l glycerol, 42.1g/l mannitol, 0.5g/l K_2HPO_4, 0.5g/l KH_2PO_4, 0.1g/l MgSO_4·7H_2O, and 2.0g/l CaCO_3 with the initial pH of 4.9. Secondly, an internal loop airlift bioreactor was applied for DHA production from glycerol by resting cells of G. oxydans ZJB09113. Furthermore, the effects of pH, aeration rate and cell content on DHA production and glycerol feeding strategy were investigated. 156.3±7.8g/l of maximal DHA concentration with 89.8±2.4% of conversion rate of glycerol to DHA was achieved after 72h of biotransformation using 10g/l resting cells at 30°C, pH 5.0 and 1.5vvm of aeration rate.
机译:1,3-二羟基丙酮可通过用氧化甘油葡糖杆菌细胞中的甘油脱氢酶对甘油进行生物转化而制得。首先,通过培养基优化来提高甘油脱氢酶的活性。细胞培养的最佳培养基由5.6g / l酵母提取物,4.7g / l甘油,42.1g / l甘露醇,0.5g / l K_2HPO_4、0.5g / l KH_2PO_4、0.1g / l MgSO_4·7H_2O和2.0组成g / l初始pH为4.9的CaCO_3。其次,将内环空运生物反应器用于由氧化单孢菌ZJB09113的静止细胞从甘油生产DHA。此外,研究了pH,通气速率和细胞含量对DHA产生和甘油进料策略的影响。在30°C,pH 5.0和1.5vvm的曝气速率下使用10g / l静置细胞进行生物转化72小时后,最大DHA浓度达到156.3±7.8g / l,甘油转化为DHA的转化率为89.8±2.4%。

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