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气溶胶辅助自组装的网状氮掺杂碳质亚微米球,用于有效去除六价铬。

Aerosol-Assisted Self-Assembly of Reticulated N-Doped Carbonaceous Submicron Spheres for Effective Removal of Hexavalent Chromium.

机构信息

School of Food and Environment, Dalian University of Technology , Panjin, 124221, P. R. China.

School of Chemistry, Dalian University of Technology , Dalian, 116024, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2016 Jul 6;8(26):16699-707. doi: 10.1021/acsami.6b04292. Epub 2016 Jun 23.

Abstract

This Research Article described a facile one-step method to prepare reticulated N-doped carbonaceous submicron spheres. Through a simple aerosol-assisted technology, glucosamine sulfate used as a carbon source was aerosolized and carbonized to functionalized carbonaceous submicron spheres. The electrostatic attraction between protonated amino groups and sulfate in the aerosol droplets induced a self-assembly and led to the formation of reticular structure, avoiding the use of templates. Compared to bare carbonaceous materials produced from glucose, reticulated N-doped carbonaceous spheres exhibit higher efficiency in the removal of Cr(VI), where the doping of element nitrogen led to electrostatic attraction between protonated nitrogen and chromium ions, and reticulated structure created relatively higher surface area and pore volume, facilitating materials to contact with Cr(VI) ions. XPS characterization proved these novel N-doped carbonaceous materials could effectively transform Cr(VI) to less toxic Cr(III) because of the surface reducing groups. For the practical application, several factors including the initial pH, materials dosage and recycle numbers on the removal performance were studied.

摘要

这篇研究文章描述了一种简便的一步法制备网状 N 掺杂碳质亚微米球的方法。通过简单的气溶胶辅助技术,将硫酸葡聚糖用作碳源进行气溶胶化和碳化,以制备功能化的碳质亚微米球。气溶胶液滴中质子化氨基与硫酸盐之间的静电吸引诱导自组装,从而形成网状结构,避免了模板的使用。与由葡萄糖制备的裸露碳质材料相比,网状 N 掺杂碳质球在去除 Cr(VI)方面表现出更高的效率,其中元素氮的掺杂导致质子化氮与铬离子之间的静电吸引,以及网状结构产生相对更高的表面积和孔体积,有利于材料与 Cr(VI)离子接触。XPS 表征证明,由于表面还原基团的存在,这些新型 N 掺杂碳质材料可以有效地将 Cr(VI)转化为毒性较低的 Cr(III)。对于实际应用,研究了初始 pH 值、材料用量和循环次数等因素对去除性能的影响。

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