首页> 外文期刊>Journal of Environmental Management >Methanol-dispersed of ternary Fe_3O_4@γ-APS/graphene oxide-based nanohybrid for novel removal of benzotriazole from aqueous solution
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Methanol-dispersed of ternary Fe_3O_4@γ-APS/graphene oxide-based nanohybrid for novel removal of benzotriazole from aqueous solution

机译:甲醇分散的三元Fe_3O_4 @γ-APS/氧化石墨烯基纳米杂化物用于从水溶液中去除苯并三唑

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摘要

A novel nanohybrid: Fe3O4coated with γ-APS polymer deposited on graphene oxide (F@γ-A/G), to remove an emergent heterocyclic contaminant benzotriazole (BTA) from solution. F@γ-A/G was synthesized in methanol-dispersionviaaminosilanization under ultra-sonication. We newly found that F@γ-A/G crystallite lattice has a 2D triangular-network intersection with angle of 60° in three types ofd311,d220andd111planes with different interplanar spacings. Textural characteristics did not affect BTA adsorption, which was desired at high temperature (40 °C), neutral solution (pH = 6) and controlled by endothermic process. Considering the maximum BTA adsorption capacity of 312.5 mg/g, which was much higher than previously reported adsorbents, the plausible mechanism was attributed to hydrophobic, electrostatic and π-π interaction. Effects of pH and temperature are significant on BTA adsorption to F@γ-A/G. Methanol was the best solvent for multiple cycle regeneration with only 2% loss of BTA removal efficiency even after five cycles of F@γ-A/G.
机译:一种新型的纳米杂化物:Fe3O4涂有沉积在氧化石墨烯上的γ-APS聚合物(F @γ-A/ G),以从溶液中去除新兴的杂环污染物苯并三唑(BTA)。 F @γ-A/ G是在超声波作用下通过氨基硅烷化甲醇分散而合成的。我们最新发现,F @γ-A/ G晶格在平面间距不同的三种类型的d311,d220和d111平面中,具有一个角度为60°的二维三角网络相交。质地特性不影响BTA吸附,这是在高温(40 C),中性溶液(pH == 6)并通过吸热过程控制时所需要的。考虑到最大的BTA吸附容量为312.5 mg / g,比以前报道的吸附剂高得多,其合理的机理归因于疏水,静电和π-π相互作用。 pH和温度对BTA吸附F @γ-A/ G的影响很大。甲醇是多循环再生的最佳溶剂,即使经过五次F @γ-A/ G循环,BTA去除效率也仅损失2%。

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