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首页> 外文期刊>Applied clay science >Enhanced gemfibrozil removal from treated wastewater by designed 'loopy' clay-polycation sorbents: Effect of diclofenac and effluent organic matter
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Enhanced gemfibrozil removal from treated wastewater by designed 'loopy' clay-polycation sorbents: Effect of diclofenac and effluent organic matter

机译:通过设计的“环状”粘土聚阳离子吸附剂增强了处理废水中的吉非罗齐的去除率:双氯芬酸和废水有机物的影响

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摘要

Novel clay-polymer nano composites (CPN) were designed for the removal of gemfibrozil (GFZ) from treated wastewater (TWW). The pyridine groups of poly-4-vinylpyridine (PVP) were 100% or 50% (randomly) substituted with bromo-ethanol to synthesize OH100PVP and OH50PVP, respectively. The effect of polymer charge density and loading on the structures of the CPNs, were investigated. At high polymer loadings OH100PVP adsorbed mainly in a flat configuration, as trains, while OH50PVP adsorbed in a more extended configuration, as loops and tails. The affinity and capacity of GFZ towards the OH50PVP CPN was significantly higher than to the OH100PVP, despite the latter's higher charge density, this high affinity of GFZ was explained in terms of more accessible adsorption sites due to the extended configuration of OH50PVP. The kinetics of GFZ removal from TWW by the CPN and by granulated activated carbon (GAC) was measured and modeled by the time dependent Langmuir equation. The effect of effluent organic matter (EfOM) and of a competing anionic pharmaceutical, diclofenac (DCF), on the kinetics of GFZ removal was thoroughly explored. Finally, the overall removal of the studied anionic pharmaceuticals was four-fold higher than by GAC at realistic contact times.
机译:设计了新型粘土-聚合物纳米复合材料(CPN),用于从处理后的废水(TWW)中去除吉非罗齐(GFZ)。聚-4-乙烯基吡啶(PVP)的吡啶基被溴乙醇100%或50%(随机)取代,分别合成OH100PVP和OH50PVP。研究了聚合物电荷密度和负载量对CPNs结构的影响。在高聚合物负载量下,OH100PVP主要以平面构型(如链)吸附,而OH50PVP则以更扩展的构型(如环和尾)吸附。 GFZ对OH50PVP CPN的亲和力和容量显着高于OH100PVP,尽管后者的电荷密度更高,但由于OH50PVP的扩展构型,GFZ的这种高亲和力被解释为更易接近的吸附位点。 CPN和粒状活性炭(GAC)从TWW去除GFZ的动力学通过与时间相关的Langmuir方程进行测量和建模。彻底探讨了废水有机物(EfOM)和竞争性阴离子药物双氯芬酸(DCF)对GFZ去除动力学的影响。最后,在实际的接触时间,所研究的阴离子药物的总去除量比GAC高四倍。

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