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Reusable Magnetic Nanoparticle Immobilized Nitrogen-Containing Ligand for Classified and Easy Recovery of Heavy Metal Ions

机译:可重复使用的磁性纳米颗粒固定化含氮配体,用于分类和容易恢复重金属离子

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Functionalized Tris[2-(dimethylamino) ethyl] amine (Me6TREN) ligands tethered-Fe3O4@Me6TREN nanoparticles (NPs) with a size of 150 nm were prepared to achieve classified and easy recovery of heavy metal ions in wastewater. The preparation of such NPs related to sequential silane ligand exchange and a following cure and Schiff base reactions for Fe3O4 NPs. Fe3O4@Me6TREN NPs as an effective nano-adsorbent of heavy metals exhibited significant differences in maximum adsorption capacity for Cr(III) (61.4 mg/g), Cu(II) (245.0 mg/g), Pb(II) (5.3 mg/g), and Cd(II) (1136.2 mg/g), in favor of classified removal of heavy metals from wastewater. Furthermore, Fe3O4@Me6TREN NPs can be regenerated by desorbing metal ions from NP surfaces eluted with ethylenediaminetetraacetic acid disodium salt (EDTA-Na2) aqueous, which endows such NPs promising potency as new nano-vectors for the removal of heavy metals.
机译:制备尺寸为150nm的官能化的Tris [2-(二甲基氨基)乙基]胺(Me6Tren)配体系胺(Me6tren)配体胺(Me6tren)配体甲酸二甲基-Fi 3 O 4〜20纳米颗粒(NPS),以实现废水中重金属离子的分类和容易回收。制备与序贯硅烷配体交换相关的这种NPS和Fe3O4 NPS的后续固化和Schiff基础反应。 Fe3O4 @ ME6TREN NPS作为重金属的有效纳米吸附剂表现出Cr(III)(61.4mg / g),Cu(II)(245.0mg / g),Pb(II)(5.3mg)的最大吸附能力差异显着差异/ g)和Cd(II)(1136.2mg / g),有利于从废水中分类的重金属去除。此外,Fe3O4 @ Me6Tren NPS可以通过用乙二胺四乙酸二钠盐(EDTA-Na 2)水溶液洗脱的NP表面的金属离子来再生​​,这赋予这种NPS有前途的效力作为新的纳米载体,用于去除重金属。

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