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Magnetic Porous Controlled Fe3O4–Chitosan Nanostructure: An Ecofriendly Adsorbent for Efficient Removal of Azo Dyes

机译:磁性多孔控制的Fe3O4-壳聚糖纳米结构:一种高效去除偶氮染料的环保吸附剂

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摘要

In this work, chitosan/magnetite nanoparticles (ChM) were quickly synthesized according to our previous report based on co-precipitation reaction under ultrasound (US) irradiation. Besides ChM was in-depth structurally characterized, showing a crystalline phase corresponding to magnetite and presenting a spheric morphology, a “nanorod”-type morphology was also obtained after increasing reaction time for eight minutes. Successfully, both morphologies presented a nanoscale range with an average particle size of approximately 5–30 nm, providing a superparamagnetic behavior with saturation magnetization ranging from 44 to 57 emu·g . As ChM nanocomposites have shown great versatility considering their properties, we proposed a comparative study using three different amine-based nanoparticles, non-surface-modified and surface-modified, for removal of azo dyes from aqueous solutions. From nitrogen adsorption–desorption isotherm results, the surface-modified ChMs increased the specific surface area and pore size. Additionally, the adsorption of anionic azo dyes (reactive black 5 (RB5) and methyl orange (MO)) on nanocomposites surface was pH-dependent, where surface-modified samples presented a better response under pH 4 and non-modified one under pH 8. Indeed, adsorption capacity results also showed different adsorption mechanisms, molecular size effect and electrostatic attraction, for unmodified and modified ChMs, respectively. Herein, considering all results and nanocomposite-type structure, ChM nanoparticles seem to be a suitable potential alternative for conventional anionic dyes adsorbents, as well as both primary materials source, chitosan and magnetite, are costless and easily supplied.
机译:在这项工作中,壳聚糖/磁铁矿纳米颗粒(ChM)是根据我们以前的报告,基于超声(US)辐射下的共沉淀反应快速合成的。除了对ChM进行了深入的结构表征之外,它还显示出对应于磁铁矿的结晶相并呈现出球形形态,并且在增加反应时间八分钟后,还获得了“纳诺洛德”型形态。成功地,这两种形态均呈现出纳米级范围,平均粒径约为5–30 nm,提供了超顺磁特性,饱和磁化强度范围为44至57 emu·g。由于考虑到其特性,ChM纳米复合材料显示出极大的多功能性,因此我们提出了一项比较研究,该研究使用三种不同的基于胺的纳米颗粒(非表面改性的和表面改性的)从水溶液中去除偶氮染料。根据氮吸附-解吸等温线的结果,表面改性的ChMs增加了比表面积和孔径。此外,纳米复合材料表面上阴离子偶氮染料(活性黑5(RB5)和甲基橙(MO))的吸附是pH依赖性的,其中表面改性的样品在pH 4下表现出更好的响应,而未改性的样品在pH 8下表现出更好的响应。实际上,对于未修饰的和修饰的ChM,吸附容量结果还分别显示出不同的吸附机理,分子大小效应和静电吸引。在这里,考虑到所有结果和纳米复合物类型的结构,ChM纳米颗粒似乎是常规阴离子染料吸附剂的合适潜在替代品,并且主要原料,壳聚糖和磁铁矿都是无价且易于供应的。

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