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DEVELOPMENT OF HYBRID MAGNETIC NANOPARTICLES AIMED TO COLLECT CRUDE OIL IN AQUEOUS ENVIRONMENTS

机译:杂种磁性纳米粒子的研制旨在在水环境中收集原油

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Well-defined, magnetic shell crosslinked knedel-like nanoparticles (MSCKs) with hydrodynamic diameters ca. 70 nm were constructed through the co-assembly of amphiphilic block copolymers of PAA_(20)-b-PS_(280) and oleic acid-stabilized magnetic iron oxide nanoparticles. These hybrid nanomaterials were designed as sequestering agents for hydrocarbons present in crude oil. Their combination of amphiphilic organic domains, for aqueous solution dispersibility and capture of hydrophobic guest molecules, with inorganic core particles for magnetic responsivity, make these nanomaterials uniquely qualified for oil spill remediation. The employment of these MSCKs in contaminated water resulted in the successful removal of the hydrophobic pollutants at a ratio of 10 mg of oil per 1 mg of MSCK. Using a magnet, the loaded nanoparticles were isolated and through "rinsing" in an ethanol sonicating bath, they were regenerated for reuse with no loss of their loading capacity.
机译:定义,磁性壳交联编号纳米颗粒(MSCKS),具有流体动力学直径Ca。通过加入的PAA_(20)-B-PS_(280)和油酸稳定的磁性氧化铁纳米粒子的两亲嵌段共聚物的共组装构建70nm。这些杂化纳米材料被设计为烃类烃的螯合剂。两亲有机结构域的组合,用于水溶液分散性和疏水性客体分子的捕获,具有无机核心颗粒的用于磁性反应性,使得这些纳米材料具有独特的储油补救措施。这些MSCKS在受污染水中的就业导致每1mg MSCK的10mg油的比例成功去除疏水性污染物。使用磁铁,分离负载的纳米颗粒,并通过“漂洗”在乙醇超声浴中,再生以再生以再利用它们的负载能力。

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