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首页> 外文期刊>Environmental research >Nigella sativa seed based nanohybrid composite-Fe_2O_3-SnO_2/BC: A novel material for enhanced adsorptive removal of methylene blue from water
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Nigella sativa seed based nanohybrid composite-Fe_2O_3-SnO_2/BC: A novel material for enhanced adsorptive removal of methylene blue from water

机译:Nigella sativa种子基纳米含量复合-Fe_2O_3-SnO_2 / BC:一种新型材料,用于增强水中亚甲基蓝色的吸附

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摘要

In this work, an advance approach is reported for the water treatment technology using nanohybrid composite Fe_2O_3-SnO_2/BC prepared by incorporation of iron-tin binary oxide into the cellulosic framework of medicinally active Nigella sativa (Black cumin) seed powder. The co-precipitation method was followed to prepare the nanohybrid composite which was subjected to investigate its physiochemical properties using spectroscopic and microscopic techniques. Fourier-transform infrared spectroscopy analysis confirmed the formation of highly functionalized nanocomposite through the hydrogen and electrostatic interactions between the functional groups of seeds and Fe_2O_3-SnO_2. X-ray and selected area electron diffraction pattern revealed the presence of cubic phase of Y-Fe_2O_3 and tetragonal phase of SnO_2 in the composite. The scanning electron microscopic images suggested the porous and relatively smooth surface of the composite, and transmittance electron microscopic images showed the trapping of nano-cubes of Fe_2O_3-SnO_2, having particles size in the range 95-185 nm, into the organic framework of Black cumin seeds, whose zero point charge was found at pH 7.2. The composite was investigated for adsorption of Methylene blue dye from water for which the results revealed that 2.0 gL~(-1) amount of Fe_2O_3-SnO_2/BC was sufficient to remove more than 95% dye, within 15min, at 6-9 pH, from its 10mgL~(-1) concentration. The thermodynamic studies established spontaneity, feasibility, and endothermic nature of the adsorption process. The adsorption data was satisfactorily described by the Freundlich isotherm which indicated inhomogeneous surface of the composite. Application of Temkin isotherm revealed the same extent of bonding probability and heat of adsorption at 27, 35, and 45°C. The free energy change calculated from Dubinin-Radushkevich isotherm suggested weak interaction between Methylene blue and Fe_2O_3-SnO_2/BC. The process satisfactorily followed the pseudo-second order kinetics that was controlled by the film diffusion step which indicated interaction of Methylene blue with functional sites of the Fe_2O_3-SnO_2/BC. The Fourier-transform infrared spectroscopy analysis gave the confirmatory evidence for interaction of Methylene blue to Fe_2O_3-SnO_2/ BC. The maximum Langmuir adsorption capacity of the Fe_2O_3-SnO_2/BC was found to be 58.82 mgg~(-1) at 27°C which is higher than the previously reported adsorbents, MnFe_2O_4/BC [J. Clean. Prod. 2018. 200, 996-1008], and Fe_2O_3-ZrO _2/BC [J. Clean. Prod. 2019. 223, 849-868]. Therefore, the study showed excellent results for water treatment and can be useful to develop advance water treatment technology.
机译:在这项工作中,通过将铁锡二元氧化铁掺入药用活性的Nigiva(黑孜然)种子粉末的纤维素框架中,向水处理技术报告用于水处理技术的提前方法。遵循共析出方法,制备纳米冬小化合物,其使用光谱和微观技术进行其研究其生理化学性质。傅里叶变换红外光谱分析证实通过种子和Fe_2O_3-SnO_2的官能团之间的氢和静电相互作用确认了高官能化纳米复合材料的形成。 X射线和所选区域电子衍射图案显示了复合材料中的Y-Fe_2O_3和SnO_2的四方相的立方相。扫描电子显微镜图像表明复合材料的多孔且相对光滑的表面,透射率电子显微镜图像显示FE_2O_3-SNO_2的纳米立方体的捕获,其颗粒尺寸在95-185nm的范围内,进入黑色的有机框架。孜然种子,其零点电荷在pH7.2处发现。研究了复合材料以吸附来自水的亚甲基蓝色染料,结果显示结果表明2.0g1(-1)Fe_2O_3-SnO_2 / BC足以在15min内除去超过95%的染料,在6-9 pH下从其10mgl〜(-1)浓度。热力学研究建立了吸附过程的自发性,可行性和吸热性质。通过指示复合材料的不均匀表面的Freundlich等温线令人满意地描述了吸附数据。 Temkin等温线的应用在27,35和45℃下显示相同的吸附概率和吸附热量。由Dubinin-Radushkevich等温线计算的自由能变化表明亚甲蓝和Fe_2O_3-SnO_2 / BC之间的弱相互作用。该过程令人满意地遵循由薄膜扩散步骤控制的伪二次阶动力学,该动力学指示亚甲基蓝与Fe_2O_3-SnO_2 / BC的功能位点的相互作用。傅里叶变换红外光谱分析给出了亚甲基蓝与Fe_2O_3-SnO_2 / BC相互作用的确认证据。 Fe_2O_3-SnO_2 / BC的最大Langmuir吸附容量在27℃下发现58.82mgg〜(-1),其高于先前报道的吸附剂MNFE_2O_4 / BC [J.干净的。刺激。 2018. 200,996-1008]和FE_2O_3-ZRO _2 / BC [J.干净的。刺激。 2019.223,849-868]。因此,该研究显示出水处理的优异成果,可用于开发预先水处理技术。

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