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Biosurfactant Production From Palm Oil Using Sequencing Batch Reactors: Effect of Cycle Time

机译:使用测序批量反应器的棕榈油生物活性剂产生:循环时间的影响

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Pseudomonas aeruginosa SP4, which was isolated from a petroleum-contaminated soil in Thailand, was used to produce rhamnolipid-type biosurfactants in this study. This research was performed by using two identical units of continuous sequencing batch reactors (SBRs), which were operated on a fill-and-draw basis at a constant temperature of 37°C under aseptic conditions with 1,500 ml working volume, 500 ml feeding volume, and 500 ml decanting volume. Palm oil and a mineral medium were used as the sole carbon source and nutrient source, respectively. The effect of cycle time on biosurfactant production performance was investigated at an oil loading rate of 2 kg/m~3d. The results showed that 2 d/cycle was the optimum cycle time for biosurfactant production to provide the highest surface tension reduction of 59% and the lowest surface tension of 28.82 mN/m with a critical micelle concentration of 1.05 times CMC, corresponding to the highest COD and oil removal of 89.8% and 96.7%, respectively. Moreover, this cycle time also gave a stable and suitable pH for microbial growth, which was found to be around 6.04.
机译:从泰国的石油污染土壤中分离的假单胞菌铜绿假单胞菌SP4用于生产该研究中的菌毒素型生物活性剂。通过使用两种相同的连续测序批量反应器(SBR)进行该研究,该批次在37℃的恒定温度下以1,500mL工作体积,500mL进料体积的恒定温度在37℃的恒定温度下操作和500毫升倾析体积。棕榈油和矿物培养基分别用作唯一的碳源和营养源。在2kg / m〜3d的油负载率下研究了循环时间对生物活性剂生产性能的影响。结果表明,2D /循环是生物活性剂生产的最佳循环时间,提供59%的最高表面张力和28.82mN / m的最低表面张力,其临界胶束浓度为1.05倍CMC,对应于最高COD和除油分别为89.8%和96.7%。此外,该循环时间也给出了稳定且合适的pH用于微生物生长,其被发现约为6.04。

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