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High-Performance, Superparamagnetic, Nanoparticle-Based Heavy Metal Sorbents for Removal of Contaminants from Natural Waters

机译:高性能,超顺磁性,基于纳米粒子的重金属吸附剂,用于从天然水域中移除污染物

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摘要

We describe the synthesis and characterization of high-performance, superparamagnetic, iron oxide nanoparticle-based, heavy metal sorbents, which demonstrate excellent affinity for the separation of heavy metals in contaminated water systems (i.e., spiked Columbia River water). The magnetic nanoparticle sorbents were prepared from an easy-to-synthesize iron oxide precursor, followed by a simple, one-step ligand exchange reaction to introduce an affinity ligand to the nanoparticle surface that is specific to a heavy metal or class of heavy metal contaminants. The engineered magnetic nanoparticle sorbents have inherently high active surface areas, allowing for increased binding capacities. To demonstrate the performance of the nanoparticle sorbents, river water was spiked with specific metals and exposed to low concentrations of the functionalized nanoparticles. In almost all cases, the nanoparticles were found to be superior to commercially available sorbent materials as well as the unfunctionalized iron oxide nanoparticles.
机译:我们描述了高性能,超顺磁性,氧化铁纳米粒子的重金属吸附剂的合成和表征,其表现出对污染水系统中重金属分离的优异亲和力(即,尖刺哥伦比亚河水)。磁性纳米颗粒吸附剂由易于合成的氧化铁前体制备,然后是简单的一步式配体交换反应,以将亲和力配体引入纳米颗粒表面,该纳米颗粒表面具有特异于重金属或重金属污染物的类别。工程化的磁性纳米粒子吸附剂具有固有的高活性表面积,允许增加的粘合能力。为了证明纳米粒子吸附剂的性能,将河水与特定金属掺入并暴露于官能化纳米颗粒的低浓度。在几乎所有情况下,发现纳米颗粒优于市售的吸附剂材料以及未官能化的氧化铁纳米颗粒。

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