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Rhamnolipid (biosurfactant) effects on cell aggregation and biodegradation of residual hexadecane under saturated flow conditions.

机译:鼠李糖脂(生物表面活性剂)对饱和流动条件下残余十六烷的细胞聚集和生物降解的影响。

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The objective of this research was to evaluate the effect of low concentrations of a rhamnolipid biosurfactant on the in situ biodegradation of hydrocarbon entrapped in a porous matrix. Experiments were performed with sand-packed columns under saturated flow conditions with hexadecane as a model hydrocarbon. Application of biosurfactant concentrations greater than the CMC (the concentration at which the surfactant molecules spontaneously form micelles or vesicles [0.03 mM]) resulted primarily in the mobilization of hexadecane entrapped within the sand matrix. In contrast, application of biosurfactant concentrations less than the CMC enhanced the in situ mineralization of entrapped hexadecane; however, this effect was dependent on the choice of bacterial isolate. The two Pseudomonas isolates tested, R4 and ATCC 15524, were used because they exhibit different patterns of biodegradation of hexadecane, and they also differed in their physical response to rhamnolipid addition. ATCC 15524 cells formed extensive multicell aggregates in the presence of rhamnolipid while R4 cells were unaffected. This behavior did not affect the ability of the biosurfactant to enhance the biodegradation of hexadecane in well-mixed soil slurry systems but had a large affect on the extent of entrapped hexadecane biodegradation in the sand-packed-column system that was used in this study.
机译:这项研究的目的是评估低浓度鼠李糖脂生物表面活性剂对包裹在多孔基质中的烃的原位生物降解的影响。在以十六烷为模型碳氢化合物的饱和流动条件下,用装沙塔进行实验。施加大于CMC(表面活性剂分子自发形成胶束或小泡的浓度[0.03 mM]的浓度)的生物表面活性剂,其主要作用是使截留在砂基质中的十六烷动员。相比之下,使用浓度低于CMC的生物表面活性剂可增强捕获的十六烷的原位矿化作用。但是,这种效果取决于细菌分离物的选择。使用了两个测试的假单胞菌分离株R4和ATCC 15524,因为它们表现出十六烷的生物降解模式不同,并且它们对鼠李糖脂添加的物理反应也不同。在鼠李糖脂存在下,ATCC 15524细胞形成大量的多细胞聚集体,而R4细胞不受影响。这种行为并没有影响生物表面活性剂在充分混合的土壤浆液系统中增强十六烷生物降解的能力,但对本研究中使用的砂土填充柱系统中十六烷的生物降解程度有很大影响。

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