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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Influence of graphene oxide nanoparticles on the transport and cotransport of biocolloids in saturated porous media
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Influence of graphene oxide nanoparticles on the transport and cotransport of biocolloids in saturated porous media

机译:石墨烯氧化物纳米粒子对饱和多孔介质中生物胶质输送和Cotransport的影响

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This study examines the effect of graphene oxide (GO) nanoparticles (NPs) on the transport (individual species) and cotransport (simultaneous transport) of three biocolloids (Escherichia (E.) coli, Enterococcus (E.) faecalis and Staphylococcus (S.) aureus) in water saturated porous media. Flow through experiments were performed in 30-cm long laboratory columns packed with quartz sand. All of the experiments were conducted at room temperature (22 degrees C), pH = 7, and ionic strength I-s = 2 mM. The results from the cotransport experiments indicated that the mass recovery values for all biocolloids, calculated based on total biocolloid concentration in the effluent, were reduced in the presence of GO NPs. The strains E. coli and E. faecalis were shown to be more vulnerable to GO NPs than S. aureus. Temporal moments of the breakthrough concentrations suggested that the presence of GO NPs significantly influenced the fate and transport of the three biocolloids. Extended DLVO theory was used to quantify the various interaction energy profiles, based on electrokinetic and hydrodynamic measurements.
机译:该研究检测石墨烯(GO)纳米颗粒(NPS)对三种生物蛋白的运输(个体物种)和COTRANSPORT(同时运输)的影响(大肠杆菌(E.)Coli,肠球菌(E.)和葡萄球菌(S. )aureus)在水饱和多孔介质中。通过实验的流动在30厘米的长实验室柱中进行,填充用石英砂。所有实验所有在室温(22℃),pH = 7和离子强度I-S = 2mm处进行。 Cotransport实验的结果表明,基于流出物中的总生物胶体浓度计算的所有生物胶质的质量恢复值在GO NPS存在下降低。表明大肠杆菌和粪便粪便比S.金黄色葡萄球菌更容易受到伤害。突破浓度的时间瞬间表明去NPS的存在显着影响了三个生物胶质的命运和运输。扩展DLVO理论用于基于电动动力学和流体动力学测量来量化各种相互作用能量谱。

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