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Nanocomposites of Fe_2O_3@rGO for adsorptive removal of arsanilic acid from aqueous solution

机译:Fe_2O_3 @ RGO的纳米复合物,用于来自水溶液的吸附除去砷酸

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摘要

Arsanilic acid (ASA), an organic-arsenic veterinary drug used widely, has greatly attracted attention due to its potential threats. We report the nanocomposites of the alpha-Fe2O3 nanoparticles growth on reduced graphene oxide (rGO) by a one-pot method. The alpha-Fe2O3 nanoparticles are densely covered on the surface of rGO according to the observations of transmission and scanning electron microscope. The adsorptive capacity (357.4 +/- 11.2 mg g(-1)) of the Fe2O3@rGO nanocomposites for ASA, which was more than the sum of adsorptive capacities of the pure alpha-Fe2O3 nanoparticles and rGO, revealed a remarkable enhancement due to the synergetic effect of multiple interactions and the good dispersion of alpha-Fe2O(3) nanoparticles with more active binding sites in the Fe2O(3)@rGO nanocomposites. The adsorption equilibrium of ASA onto the Fe2O3@rGO nanocomposites was achieved for 60 min, and the adsorption of ASA was dependent of pH and temperature, and independent of the concentration of humic acid ranging from 0 to 20 mg L-1. After five cycles of adsorption-desorption, the adsorptive amounts of ASA by the regenerative sorbent still retained 85% of adsorptive amount by the fresh sorbents. The adsorption process of ASA can be described by the Langmuir and the pseudo-second-order equations and is exothermic and spontaneous according to thermodynamic analysis.
机译:阿散酸(ASA),广泛使用有机砷兽药,大大吸引了关注,因为它的潜在威胁。我们报告上还原的石墨烯氧化物(RGO)所述α-Fe2O3的纳米颗粒的生长的由一个单釜法的纳米复合材料。所述α-Fe2O3的纳米颗粒密布RGO的表面上,根据发射和扫描型电子显微镜的观察结果。吸附容量(357.4 +/- 11.2毫克克(-1))的Fe2O3的@ RGO纳米复合材料为ASA,这是以上的纯α--Fe2O3的纳米颗粒和RGO的吸附容量的总和的,揭示了显着的提高是由于多重相互作用的协同作用,并与在Fe2O(3)纳米复合材料@rGO多种活性结合位点的α-Fe2O(3)的纳米颗粒的良好分散。 ASA的到的Fe2O3 @ RGO纳米复合材料的吸附平衡60分钟实现的,和ASA的吸附依赖pH和温度的,且独立的腐殖酸的范围从0到20毫克L-1浓度。后吸附 - 解吸的五个周期,吸附量的ASA通过再生吸附剂仍然由新鲜吸附剂保留吸附量的85%。 ASA的吸附步骤可通过Langmuir和伪二阶方程来描述,并且根据热力学分析放热和自发的。

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