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Facile one-pot preparation of nitrogen-doped ultra-light graphene oxide aerogel and its prominent adsorption performance of Cr(VI)

机译:浅掺杂超光石墨烯氧化物气凝胶的容易一罐制备及其突出的Cr(VI)的吸附性能

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摘要

A novel nitrogen-doped ultra-light graphene oxide (GO) aerogel with three-dimensional (3D) network structure is used for removing of Cr(VI) from aqueous solution, which is fabricated by a facile one step hydrothermal self-assembly process and an environmentally friendly freeze-drying technique. GO and organic amine are used as the precursors to synthesize the aerogels, in which pyrrole and Tetraethylenetetramine (TEPA) are introduced as nitrogen sources to obtain the amino functional groups, meanwhile, they also play the roles as cross-linking agents to control the assembly of GO sheets in the 3D structure. The obtained TEPA/polypyrrole/GO aerogel (TPGA) has a high adsorption capacity for Cr(VI) anions (up to 408.48 mg/g) at an optimal pH of 2.0. The kinetics process of Cr(VI) adsorption on TPGA can be fitted well with the pseudo-second-order kinetic model. The mechanism of adsorption is analyzed by intraparticle diffusion and external film diffusion models, which indicates that the overall rate of Cr(VI) adsorption process is influenced by multi-steps. The isotherm and thermodynamic studies confirms that adsorption of Cr(VI) on TPGA is a spontaneous and endothermic process in the monolayer adsorption pattern. Furthermore, the prepared TPGA exhibits a good regeneration ability and satisfactory recovery for Cr(VI) anions in practical water samples. This work provides a simple and environmentally friendly method to synthesize the nitrogen-doped GO aerogel, which show a great potential and promise for practical application in the field of waste water treatment.
机译:具有三维(3D)网络结构的一种新型氮掺杂的超光石墨烯氧化物(GO)气凝胶用于从水溶液中除去Cr(VI),其通过浅步骤水热自组装工艺制造和环保冻干技术。 Go和有机胺用于合成气孔的前体,其中引入吡咯和四亚乙基丁胺(TEPA)作为氮源,以获得氨基官能团,同时它们还将作用作用作为控制组件的交联剂在3D结构中的去纸。获得的TEPA /聚吡咯/去气凝胶(TPGA)在2.0的最佳pH下具有高吸附能力(高达408.48mg / g)。 CR(VI)对TPGA吸附的动力学过程可以很好地与伪二阶动力学模型很好。通过椎间内部扩散和外部膜扩散模型分析吸附机理,表明CR(VI)吸附过程的总速率受到多步的影响。等温和热力学研究证实,Cr(VI)对TPGA的吸附是单层吸附图案中的自发和吸热过程。此外,制备的TPGA在实际水样中表现出良好的再生能力和令人满意的Cr(VI)阴离子的恢复。这项工作提供了一种简单和环保的方法来合成氮气掺杂的去气凝胶,这对废水处理领域的实际应用具有巨大潜力和承诺。

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