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Soybean oil refinery effluent treatment and its utilization for bacterial cellulose production by Gluconacetobacter xylinus

机译:大豆精炼油废水处理及其在木糖葡糖杆菌生产细菌纤维素中的利用

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Gluconacetobacter xylinus was used to treat soybean oil refinery effluent (SORE), which is rich in fatty acids, to produce bacterial cellulose (BC) under static conditions. The chemical oxygen demand (COD) and oil content removed were over 50% and 65%, respectively, and the maximum BC production obtained reached 1.3 g/L. Feeding sodium soap from oil or fatty acids to G. xylinus further demonstrated that fatty acids could be utilized for BC production. Re-utilization of the treated SORE contributed to increased COD and oil content removal, and BC production. When the SORE was mixed with barm washing effluent at a ratio of 75:25 (v/v) or with 2% corn steep powder as a co-substrate, the BC production was 1.9 g/L and 2.2 g/L, respectively, and good wastewater treatment effects were seen. A series of characterization results indicated that there was no significant difference in the composition, microstructure, and characteristics of the BC produced from a rich medium and SORE. However, compared to BC from a rich medium, BC produced from the SORE displayed slender cellulose fibrils, larger pores in the fiber network, a looser structure, and good water-holding capacity. This study demonstrated that SORE could be utilized by G. xylinus for BC production, thus realizing resource utilization of wastewater.
机译:木糖葡糖杆菌用于处理富含脂肪酸的大豆炼油厂废水(SORE),以在静态条件下生产细菌纤维素(BC)。化学需氧量(COD)和去除的油含量分别超过50%和65%,获得的最大BC产量达到1.3 g / L。将钠皂从油或脂肪酸中加入木霉中进一步证明了脂肪酸可用于生产BC。处理后的SORE的再利用有助于增加COD和油含量的去除以及BC的产生。当SORE以75:25(v / v)的比例混合于渣油洗涤液或以2%的玉米浆粉作为共底物时,BC产量分别为1.9 g / L和2.2 g / L,废水处理效果良好。一系列表征结果表明,由丰富培养基和SORE产生的BC的组成,微观结构和特性没有显着差异。但是,与来自丰富培养基的BC相比,由SORE生产的BC具有纤细的纤维素原纤维,纤维网络中较大的孔,较宽松的结构以及良好的保水能力。这项研究表明,SORE可以被木霉利用来生产不列颠哥伦比亚省,从而实现废水的资源利用。

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