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首页> 外文期刊>Journal of Colloid and Interface Science >Engineering and optimization of nano- and mesoporous silica fibers using sol-gel and electrospinning techniques for sorption of heavy metal ions
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Engineering and optimization of nano- and mesoporous silica fibers using sol-gel and electrospinning techniques for sorption of heavy metal ions

机译:使用溶胶-凝胶和静电纺丝技术对纳米和中孔二氧化硅纤维进行工程设计和优化,以吸附重金属离子

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In this paper, we report on a novel design strategy of an efficient sorbent for removal of trace contaminants from water. This kind of sorbent is composed of a nonporous core of SiO2 nanofiber and a mesoporous shell (denoted as nSiO2@mSiO2 (" n" means " nonporous" and " m" means " mesoporous")). The nSiO2@mSiO2 fiber possesses a continuously long fibrous shape and mesoporous micromorphology, thus, showing both high sorption capacity and separability. The flexible nonporous SiO2 nanofiber was prepared with electrospinning first, followed by covering a mesoporous SiO2 shell based on a modified St?ber method using CTAB (cetyltrimethylammonium bromide) as the directing agent for formation of the mesopores. Also, functional thiol groups were grafted on the nSiO2@mSiO2 to enhance its performance. With a large specific surface area and long fibrous morphology, the nSiO2@mSiO2 fiber and its thiol-functionalized counterpart exhibit impressive performance on removal of Pb2+ and Cd2+ from water. Furthermore, the flexible texture and fibrous morphology of the nSiO2@mSiO2 fiber also made the removal of metal ions and the separation process more convenient and efficient, implying that the nSiO2@mSiO2 fiber could have great potential for industrial applications.
机译:在本文中,我们报告了一种新型吸附剂的设计策略,该吸附剂用于从水中去除痕量污染物。这种吸附剂由SiO2纳米纤维的无孔核心和中孔壳(表示为nSiO2 @ mSiO2(“ n”表示“无孔”,“ m”表示“中孔”))组成。 nSiO2 @ mSiO2纤维具有连续的长纤维形状和中孔微观形态,因此显示出高吸附能力和可分离性。首先通过静电纺丝制备柔性无孔SiO2纳米纤维,然后使用CTAB(十六烷基三甲基溴化铵)作为介孔形成的导向剂,基于改良的Stber方法覆盖中孔SiO2壳。另外,将官能硫醇基团接枝到nSiO2 @ mSiO2上以增强其性能。 nSiO2 @ mSiO2纤维及其巯基官能化的对应物具有较大的比表面积和长纤维形态,在从水中去除Pb2 +和Cd2 +方面表现出令人印象深刻的性能。此外,nSiO2 @ mSiO2纤维的柔性织构和纤维形态也使金属离子的去除和分离过程更加方便和有效,这意味着nSiO2 @ mSiO2纤维在工业上具有巨大的潜力。

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