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Economic Optimized Medium for Tensio-Active Agent Production by Candida sphaerica UCP0995 and Application in the Removal of Hydrophobic Contaminant from Sand

机译:球形假丝酵母UCP0995生产张力活性剂的经济优化介质及其在去除沙子中的疏水性污染物中的应用

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Statistical experimental designs and response surface methodology were employed to optimize the concentrations of agroindustrial residues as soybean oil (SORR) from refinery, and corn steep liquor (CSL) from corn industry, for tensio-active agent produced by Candida sphaerica UCP 0995. Three 22 full factorial design were applied sequentially to investigate the effects of the concentrations and interactions of soybean oil refinery residue and corn steep liquor on the surface tension of free-cell culture broth for 144 h. Two 22 central composite designs and response surface methodology were adopted to derive a statistical model to measure the effect of SORR and CSL on the surface tension of the free-cell culture broth for 144 h. The regression equation obtained from the experimental data using a central composite design was solved, and by analyzing the response surface contour plots, the optimal concentrations of the constituents of the medium were determined: 8.63% v/v (≅9% v/v) of SORR and 8.80% v/v (≅9% v/v) CSL. The minimum surface tension predicted and experimentally confirmed was 25.25 mN/m. The new biosurfactant, denominated Lunasan, recovered 95% of motor oil adsorbed in a sand sample, thus showing great potential for use in bioremediation processes, especially in the petroleum industry.
机译:统计实验设计和响应面方法用于优化炼油厂的大豆油(SORR)和玉米工业的玉米浆(CSL)的农用工业残留物的浓度,以用于球形假丝酵母UCP 0995生产的张力活性剂。3 2依次采用 2 全因子设计,研究了大豆渣油残渣和玉米浆的浓度和相互作用对144h自由细胞培养液表面张力的影响。采用两个2 2 中心复合设计和响应面方法,建立了统计模型,以测量SORR和CSL对144 h游离细胞培养液表面张力的影响。解决了使用中央复合设计从实验数据获得的回归方程,并且通过分析响应表面轮廓图,确定了培养基成分的最佳浓度:8.63%v / v(≅9%v / v) SORR和8.80%v / v(≅9%v / v)CSL。预测和实验确认的最小表面张力为25.25 mN / m。这种新的生物表面活性剂名为Lunasan,可回收砂样中吸附的95%机油,因此显示出在生物修复过程中,特别是在石油工业中使用的巨大潜力。

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