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Nanoporous Activated Carbons Derived from Peach Stones

机译:纳米多孔活性炭来自桃子石头

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In this work, nanoporous activated carbons from Peach Stone powder was achieved using phosphoric acid as an activating agent and carbonization has been conducted at temperatures ranging from 400oC to 700oC using Nitrogen as inert gas in a tubular furnace, to understand the effect of the adsorption capacity with variation in temperature. Evaluation of microporosity of each of these specimens was performed by Iodine Number technique, of which the results showed a maximum amount of micropores in the carbon at the carbonization temperature of 500oC. The morphology of the carbon samples at two extreme temperatures of 400oC and 700oC was studied using FE-SEM images, which demonstrated large amount of nanoporous in the carbon surfaces at the higher temperature. Raman Spectroscopy outcomes delineate the similar amorphous nature of the carbonaceous specimen at these temperatures with both G band and D band. These results indicate a potential to develop a good adsorbent material applicable for water purification.
机译:在这项工作中,使用磷酸获得来自桃石粉的纳米多孔活化的碳作为活化剂,并且在使用氮气在管状炉中的惰性气体的温度下,在400oc至700oc的温度下进行,以了解吸附能力的影响随着温度的变化。通过碘值技术进行这些样本中的每一个的微孔的评价,其中结果在碳化温度为500℃的碳中显示出最大的微孔。使用Fe-SEM图像研究了400℃和700℃的两个极端温度下的碳样品的形态,在较高温度下展示了大量纳米电孔。拉曼光谱结果将这些温度与两个G频段和D带描绘了碳质标本的类似无定形性质。这些结果表明,可以开发适用于水净化的良好吸附材料的潜力。

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