...
首页> 外文期刊>RSC Advances >Electrospun hematite nanofiber/mesoporous silica core/shell nanomaterials as an efficient adsorbent for heavy metals
【24h】

Electrospun hematite nanofiber/mesoporous silica core/shell nanomaterials as an efficient adsorbent for heavy metals

机译:Electrom淘杂体纳米纤维/介孔二氧化硅芯/壳纳米材料作为重金属的有效吸附剂

获取原文

摘要

Functionalized nanomaterials hold tremendous promise for water treatment because their high surface area makes them ideal sorbents for pollutants like heavy metal ions that are pervasive in global water supplies. Here, a novel core/shell nanomaterial consisting of an electrospun hematite nanofiber core and a mesoporous silica shell of tunable thickness (from 20–60 nm) was prepared for the first time. The synthesis involved careful control of pH and sequential addition of the silica source to control the growth and ultimately, thickness of the mesoporous silica shell on the electrospun hematite nanofiber. The core/shell structure was subsequently tailored for heavy metal adsorption by grafting an aminopropyl functional group on the mesoporous silica surface. The resulting electrospun hematite/mesoporous silica core/shell nanomaterials were extensively characterized by energy dispersive spectroscopy (EDS) with high resolution transmission electron microscopy (HRTEM), and ζ potential measurements both before and after adsorption of the Cr( III ), from aqueous solution. Notably, sorption capacities for Cr( III ) exceeded those previously reported for other nanostructured sorbents for this metal. The advantages of these core/shell materials include controllable surface area through introduction of porosity and the option for facile surface modification to optimize physicochemical interactions for pollutant uptake. These nanocomposites also exhibit improved chemical resistance in harsh environments. At acidic pH values, for example, the core/shell nanomaterials were more chemically resistant to iron dissolution than the parent electrospun hematite nanofibers, which broadens the range of waste streams to which these sorbents can be applied.
机译:官能化的纳米材料对水处理具有巨大的承诺,因为它们的高表面积使其成为污染物的理想吸附剂,如在全球水供应中普遍存在的重金属离子。这里,首次制备由Electraber赤铁矿纳米纤维核和中孔二氧化硅壳组成的新型核/壳纳米材料和可调谐厚度(20-60nm)的介孔二氧化硅壳。合成涉及仔细控制pH和序列添加二氧化硅源以控制介孔赤岩纳米纤维上的介孔二氧化硅壳的厚度和最终。随后通过在中孔二氧化硅表面上移植氨基丙基官能团来定制芯/壳结构以进行重金属吸附。通过高分辨率透射电子显微镜(HRTEM)的能量分散光谱(EDS)广泛地表征所得的Electur纺杂液/介毛型二氧化硅核/壳纳米材料,以及在水溶液中吸附Cr(III)之前和之后的电位测量。值得注意的是,Cr(III)的吸收能力超过了先前报告的该金属的其他纳米结构吸附剂的能力。这些芯/壳材料的优点包括通过引入孔隙率和容易表面改性的选择来优化污染物摄取的物理化学相互作用的可控表面区域。这些纳米复合材料在恶劣环境中也表现出改善的耐化学性。例如,在酸性pH值,例如,芯/壳纳米材料比母体电纺织物纳脂溢的铁溶解更富化学抵抗,其拓宽可以施加这些吸附剂的废物流的范围。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号