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Development of a Novel Iron Based Nanomaterial and its Characterization

机译:开发一种新型铁基纳米材料及其表征

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@@1.Introduction Arsenic is a well established contaminant in many of the water sources worldwide. Novel nanomaterials like nano zero valent iron[1], magnetite nanoparticles[2,3] etc., have been synthesized and applied for the purpose of arsenic remediation in contaminated water. We report here the synthesis and characterization of an aqueous iron oxyhydroxide suspension of nanometric dimension with the objectiveof removing As(Ⅲ) and As (Ⅴ) in aqueous medium. The suspension was dehydrated at room temperature in air, and characterized by XRD, SEM and TEM.The X-Ray diffraction pattern was broad indicating small crystallites size. Particle size could not be resolved well from SEM micrograph while EDAX analysis showed the dehydrated material to contain 40.3 wt.% iron and 43.7 wt.% oxygen. TEM bright field image confirmed the nanometric dimension of the particles in the range of 2-10 nm, corroborated by concentric rings, typical of nanoparticles, in the diffraction pattern. The suspension worked well for the removal of As (Ⅲ) and As (Ⅴ) in synthetic water.
机译:@@ 1.Introduction砷是全球许多水源的污染物。已经合成了纳米零价铁[1],磁铁矿纳米颗粒[2,3]等的新型纳米材料,并施加用于污染水中的砷修复的目的。我们在此报告的是纳米尺寸的含水铁水性铁的合成和表征,其中通过除去(Ⅲ)和水性介质中的(Ⅵ)。将悬浮液在空气中在室温下脱水,并通过XRD,SEM和TEM以X射线衍射图谱为特征。X射线衍射图谱宽表明小晶体尺寸。从SEM显微照片中不能溶解粒度,而edax分析显示脱水材料以含有40.3重量%的铁和43.7重量%的氧。 TEM亮场图像确认颗粒的纳米尺寸在2-10nm的范围内,通过同心环,典型的纳米颗粒,衍射图案。悬浮液工作良好,用于去除合成水中的(Ⅲ)和(Ⅳ)。

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