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Facile synthesis of mesoporous carbon nanocomposites from natural biomass for efficient dye adsorption and selective heavy metal removal

机译:从天然生物质轻松合成介孔碳纳米复合物,可有效吸附染料并选择性去除重金属

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摘要

Mesoporous carbon with embedded iron carbide nanoparticles was successfully synthesized via a facile impregnation–carbonization method. A green biomass resource, cotton fabric, was used as a carbon precursor and an iron precursor was implanted to create mesopores through a catalytic graphitization reaction. The pore structure of the nanocomposites can be tuned by adjusting the iron precursor loadings and the embedded iron carbide nanoparticles serve as an active component for magnetic separation after adsorption. The microstructure of the nanocomposites was carefully investigated by various characterization techniques including electron microscopy, X-ray diffraction, surface analyzer, magnetic property analyzer and etc. The newly created mesopores are demonstrated as a critical component to enhance the adsorption capacity of organic dyes and embedded iron carbide nanoparticles are responsible for the selective removal of heavy metal ions (Zn2+, Cu2+, Ni2+, Cr6+ and Pb2+). Isotherm adsorption, kinetic study at three different temperatures (25, 45 and 65 °C) and cycling retention tests were performed to understand the adsorptive behavior of the nanocomposites with organic dyes (methylene blue and methyl orange). Together with the preferable removal of more toxic heavy metal species (Cr6+ and Pb2+), these mesoporous nanocomposites show promising applications in pollutant removal from water. The facile material preparation allows convenient scale-up manufacturing with low cost and minimum environmental impact.
机译:通过一种容易的浸渍-碳化方法成功地合成了具有嵌入式碳化铁纳米颗粒的中孔碳。使用绿色生物质资源棉织物作为碳前驱体,并通过催化石墨化反应植入铁前驱体以产生中孔。纳米复合材料的孔结构可以通过调节铁前体的装载量来调整,并且嵌入的碳化铁纳米颗粒充当吸附后磁性分离的活性成分。通过各种表征技术,包括电子显微镜,X射线衍射,表面分析仪,磁性能分析仪等,仔细研究了纳米复合材料的微观结构。新形成的中孔被证明是提高有机染料和包埋物吸附能力的关键成分。碳化铁纳米颗粒负责选择性去除重金属离子(Zn2 +,Cu2 +,Ni2 +,Cr6 +和Pb2 +)。进行了等温吸附,在三种不同温度(25、45和65°C)下的动力学研究以及循环保留测试,以了解纳米复合材料与有机染料(亚甲基蓝和甲基橙)的吸附行为。这些中孔纳米复合材料与优选的毒性更强的重金属物种(Cr6 +和Pb2 +)的去除方法一起,在水中去除污染物方面显示出广阔的前景。简便的材料制备可方便地按比例放大制造,且成本低廉,对环境的影响最小。

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