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Effective Decolorization and Adsorption of Contaminant from Industrial Dye Effluents using Spherical Surfaced Magnetic (Fe_3O_4) Nanoparticles

机译:使用球形表面磁性(Fe_3O_4)纳米粒子从工业染料流出物中有效脱色和吸附污染物

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Treatment of highly concentrated Industrial dye stuff effluents released in the environment is the major issue faced in the era of waste management as well as in water pollution. Though there is availability of conventional techniques in large numbers, there is a need of efficient and effective advance technologies. In account of that, Nanotechnology plays a prominent role to treat the heavy metals, organic and inorganic contaminants using smart materials in nano regime (1 -100 nm). Among these nanomaterials like Iron Oxide (Fe_3O_4, magnetic nanoparticle) is one of the most promising candidates to remove the heavy metals from the industrial effluent. Fe_3O_4 is the widely used smart material with magnetic property having high surface area; high surface to volume ratio provides more surface for the chemical reaction for the surface adsorption. Fe_3O_4 nanoparticles have been synthesized using sonochemical method using ultra frequency in aqueous solution under optimized conditions. The as-synthesized nanoparticle was analyzed using different characterization tool. The Transmission Electron microscope (TEM) images revealed 10-12 nm spherical shape nanoparticles; crystal phase and surface morphology was confirmed by X-Ray Diffraction (XRD) and Scanning Electron Microscopy (SEM), respectively. The functional group were identified by Fourier Transform-Infra Red Spectroscopy (FT-IR), revealed the bending and stretching vibrations associated with Iron Oxide nanoparticle. In present study, for the efficient removal of contaminants, different concentration (10-50 ppm) of dye stuff effluent has been prepared and subjected to adsorption and decolourization at definite time intervals with Fe_3O_4 nanoparticles. The concentration of Iron oxide and the time (45 mins) was kept fixed for the reaction whereas the concentration of dye stuff effluent was kept varying. It was found that the spherical shaped Fe_3O_4 proved to be the potential material for the adsorption of corresponding contaminants due to its highly active adsorbing surfaces. The result concluded that the effective adsorption and decolourization of contaminants is observed in different concentration with the maximum time period of 45 mins with the optimized concentration of Fe_3O_4.
机译:在环境中释放的高度浓缩工业染料的治疗是废物管理时代的主要问题以及水污染。虽然大量的传统技术有可用性,但需要有效和有效的先进技术。考虑到此,纳米技术在纳米制度(1-100nm)中使用智能材料来治疗重金属,有机和无机污染物的突出作用。在这些纳米材料中,如氧化铁(Fe_3O_4,磁性纳米粒子)是从工业流出物中除去重金属最有前途的候选物之一。 FE_3O_4是广泛使用的智能材料,具有高表面积的磁性;高表面积与体积比为表面吸附的化学反应提供更多表面。已经在优化条件下使用超频率在水溶液中使用超频方法合成Fe_3O_4纳米颗粒。使用不同的表征工具分析如合成的纳米粒子。透射电子显微镜(TEM)图像显示10-12nm球形纳米颗粒;通过X射线衍射(XRD)和扫描电子显微镜(SEM)确认晶相和表面形态。官能团通过傅里叶变换 - 红外线(FT-IR)鉴定,揭示了与氧化铁纳米粒子相关的弯曲和拉伸振动。在本研究中,为了有效去除污染物,已经制备了不同浓度(10-50ppm)的染料流出物,并以与Fe_3O_4纳米颗粒以明确的时间间隔进行吸附和脱色。保持氧化铁的浓度和时间(45分钟)固定为反应,而染料填料流出物的浓度保持不同。发现球形Fe_3O_4被证明是由于其高活性吸附表面而被证明是吸附相应污染物的潜在材料。结果得出结论,污染物的有效吸附和脱色以不同浓度观察到45分钟的最大时间浓度为Fe_3O_4。

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