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Synthesis and Characterization of Activated Carbon from White Lotus via Single Step Chemical Activation

机译:单步化学活化的白莲花活性炭的合成与表征

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Highly porous activated carbon was successfully fabricated from the stalk of Nymphaea odorata via single step chemical activation. ZnCl_2 was used as the chemical activating agent in the activation process. The raw material was preliminary characterized using Fourier Transform Infrared (FTIR), ultimate analysis (CHNS/O Analyzer) and Scanning Electron Microscope (SEM). The percentage yield, iodine number (IN) and the textural properties of the activated carbon were optimized under the influence of several synthesizing parameters such as impregnation ratio, activation temperature and activation time using ZnCl_2. High IN (750.11 mg/g - 967.16 mg/g) was obtained from Sodium thiosulphate volumetric method and represents the porosity of the synthesized materials. Reduction in several functional groups was observed in the FTIR spectrum of the synthesized activated carbon. SEM analysis of the activated carbon verified the formation of highly porous surface compared to the raw Nymphaea odorata. This study provides a facile synthesis of activated carbon from waste natural resources at benign condition.
机译:通过单步化学活化从Nymphaea Odorata的茎秆成功地制造高度多孔活性炭。 ZnCl_2用作活化过程中的化学活化剂。使用傅里叶变换红外(FTIR),最终分析(CHNS / O分析仪)和扫描电子显微镜(SEM)进行初步表征原料。在使用ZnCl_2的浸渍比率,活化温度和活化时间的几个合成参数的影响下优化活性炭百分比产率,碘数(In)和纹理性质。从硫代硫酸钠体积法获得高(750.11mg / g-967.16mg / g),代表合成材料的孔隙率。在合成的活性炭的FTIR光谱中观察到几种官能团的减少。与原始Nymphaea Odorata相比,激活碳的SEM分析验证了高度多孔表面的形成。该研究提供了良性条件下废物自然资源的活性炭的容易合成。

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