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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Dissolution and degradation of crude oil droplets by different bacterial species and consortia by microcosm microfluidics

机译:APS-流体动力学APS分部第70届年会-事件-微观微流控技术分析不同细菌物种和财团对原油液滴的溶解和降解

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Bacteria are involved in cleanup and degradation of crude oil in polluted marine and soil environments. A number of bacterial species have been identified for consuming petroleum hydrocarbons with diverse metabolic capabilities. We conducted laboratory experiments to investigate bacterial consumption by monitoring the volume change to oil droplets as well as effects of oil droplet size on this process. To conduct our study, we developed a micro-bioassay containing an enclosed chamber with bottom substrate printed with stationary oil microdroplets and a digital holographic interferometer (DHI). The morphology of microdroplets was monitored in real time over 100 hours and instantaneous flow field was also measured by digital holographic microscope. The substrates with printed oil droplets were further evaluated with atomic force microscopy (AFM) at the end of each experiment. Three different bacteria species,extit{ Pseudomonas} extit{sp,} extit{Alcanivorax borkumensis}, and extit{Marinobacter hydrocarbonoclasticus}, as well as six bacterial consortia were used in this study. The results show that droplets smaller than 20extmu m in diameter are not subject to bacterial degradation and the volume of droplet did not change beyond dissolution. Substantial species-specific behaviors have been observed in isolates. The experiments of consortia and various flow shears on biodegradation and dissolution are ongoing and will be reported.
机译:细菌参与污染海洋和土壤环境中原油的净化和降解。已经确定了许多细菌物种用于消耗具有各种代谢能力的石油烃。我们进行了实验室实验,通过监测油滴的体积变化以及油滴大小对该过程的影响来调查细菌的消耗。为了进行我们的研究,我们开发了一种微生物测定法,该测定法包括一个密闭室,底部基板上印有固定油微滴和数字全息干涉仪(DHI)。在100小时内实时监控微滴的形态,并通过数字全息显微镜测量瞬时流场。在每个实验结束时,用原子力显微镜(AFM)进一步评估具有印刷油滴的基材。在这项研究中使用了三种不同的细菌物种,即灭绝{假单胞菌}灭绝{sp,}灭绝{Alcanivorax borkumensis}和灭绝{Marinobacterhydrocarbonoclasticus},以及六个细菌群落。结果表明,直径小于20extmum的液滴不会发生细菌降解,并且液滴的体积不会发生溶解变化。在分离物中已观察到大量物种特异性行为。财团和各种流量剪切器对生物降解和溶解的实验正在进行中,并将报道。

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