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首页> 外文期刊>Environmental engineering and management journal >SYNERGISTIC EFFECT OF FUEL AGENTS AND MASS RATIO FOR MORPHO-STRUCTURAL OPTIMIZATION OF MAGNETIC CLAY-BASED NANOCOMPOSITES WITH HIGH ADSORPTION CAPACITY
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SYNERGISTIC EFFECT OF FUEL AGENTS AND MASS RATIO FOR MORPHO-STRUCTURAL OPTIMIZATION OF MAGNETIC CLAY-BASED NANOCOMPOSITES WITH HIGH ADSORPTION CAPACITY

机译:具有高吸附能力的磁性粘土基纳米复合材料的诸如磁性粘土纳米复合材料的燃料剂和质量比的协同作用

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The study is focused on creating magnetic mesoporous materials through the insertion of a nickel ferrite into the structure of kaolin-type clay. Sol-gel auto-combustion method was employed to synthesize the materials, using glycine and tartaric acid as chelating/combustion agents. This is the first study on the combined effect of different fuel agents and of clay-to-ferrite molar ratio on the structural, textural, magnetic and adsorptive properties of nanocomposites. The value of the average pore size, registered in a range of 6.01 and 12.9 nm, indicates the dependence on both molar ratio and fuel agent. The textural properties of the materials, corroborated with those obtained from XRD, SEM and TEM and VSM, suggest that magnetic nanocomposites can be successfully used as adsorbents in the removal of harmful organics. The obtained nanocomposites show excellent adsorption, with up to 98% BB41 dye removal, and a facile recuperation, due to their magnetic properties. The maximum adsorption capacity of dye, of 752.2 mg/g, was obtained for C3Ni_act350, in the presence of H2O2 in solution. More than that, the adsorption capacity of magnetic composites increased with increasing the NiFe2O4 content.
机译:该研究专注于通过将镍铁素体插入高岭土粘土的结构来产生磁性介孔材料。使用溶胶 - 凝胶自燃方法用甘氨酸和酒石酸作为螯合/燃烧剂来合成材料。这是第一次研究不同燃料代理和粘土 - 铁氧体摩尔比对纳米复合材料的结构,纹理,磁性和吸附性能的第一次研究。在6.01和12.9nm的范围内登记的平均孔径的值表明对摩尔比和燃料剂的依赖性。材料的纹理性质,用XRD,SEM和TEM和VSM获得的材料,表明磁性纳米复合材料可在除去有害物体中成功用作吸附剂。所获得的纳米复合材料显示出优异的吸附,由于它们的磁性,高达98%的BB41染料除去和容易恢复。在溶液中的H 2 O 2存在下,获得染料的最大吸附容量为752.2mg / g,得到C3NI_act350。磁性复合材料的吸附容量随着NIFE2O4含量的增加而增加。

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