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Dual Functions of Selective Ferric Ion Detection and Removal by a Recyclable Fluorescence Active Multifunctional Silica Material and Toxic Dye Removal from Aqueous Solution

机译:通过可回收荧光活性多功能二氧化硅材料和从水溶液中去除有毒染料的选择性铁离子检测和去除的双重功能

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Excess iron and its toxic dye Naphthol Green B is a threat to aquatic environment and human health. Therefore, effective detection and remediation of ferric ion and Naphthol Green B in aqueous system is a necessity. In our paper, to bring out synergy in dual functions of ferric ion sensing and extraction/ removal by same material, a new ionophore based functionalized silica material (SiO2@Nap) was synthesized by immobilization of bis (tetradentate) naphthalene ligand on silica surface. Physicochemical properties of the adsorbent were studied by scanning and transmission electron microscopy, atomic force microscopy, XRD, FT-IR, thermo-gravimetric analysis and elemental (CHN) analysis. The selective sensing studies by SiO2@Nap material towards ferric ion in presence of 17 other relevant metal ions were evaluated through the fluorescence quenching phenomenon which gives limit of detection value of 74 ppb (1.31 μM). The adsorption studies for ferric ion were assessed in view of effect of solution pH, extraction efficiency (99%), adsorption capacity (79 mg/g) and adsorption isotherms. This material can be recycled upon simple acid-base treatments for further usage after recovery of ferric ions which is supported by reversibility studies. The strong affinity towards ferric ion enabled this material to remove iron containing industrial toxic dye Naphthol Green B with 99.5% efficiency with recyclability. Adsorption, striping and regeneration studies reveals that SiO2@Nap is a recyclable extracting cum sensory probe material for ferric ions.
机译:过量的铁及其有毒的染料萘酚绿色B是对水生环境和人类健康的威胁。因此,必须有效地检测和修复水性系统中的铁离子和萘酚B。在我们的论文中,为了通过相同材料提出铁离子传感和提取/去除的双重功能,通过固定BIS(四齿)含二硫酸苯乙烯配体在硅胶表面上合成了一种新的基于离子的硅胶材料(SIO2@NAP)。通过扫描和透射电子显微镜,原子力显微镜,XRD,FT-IR,Thermo-Gravimetric分析和元素(CHN)分析研究了吸附剂的物理化学特性。通过荧光淬灭现象评估了Sio2@NAP材料对铁离子的选择性传感研究,该研究的检测值限制为74 ppb(1.31μm)。根据溶液pH,提取效率(99%),吸附能力(79 mg/g)和吸附等温线的影响,评估了铁离子的吸附研究。该材料可以在简单的酸碱处理中回收,以在恢复铁离子后进一步使用,这得到可逆性研究支持。对铁离子的强亲和力使该材料能够以99.5%的效率和可回收性去除含有工业有毒染料萘酚B的铁。吸附,条纹和再生研究表明,SiO2@NAP是可回收的提取铁离子的暨感觉探针材料。

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