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Annealing effect on the Particle Size and Chemical Composition of Activated Carbon Obtained from Vacuum Furnace of Teak Sawdust

机译:对柚木锯末真空炉获得的活性炭粒径和化学成分的退火效应

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Activated carbon was produced from sawdust by using physical method in a high temperature vacuum furnace without additional chemical. Fast pyrolysis process was carried out prior in fluidized a bed furnace to produce char before activation process. Experiments were conducted to investigate the influence of various process parameters such as particle size, activation temperature and activation time on the quality of the activated carbon. In addition, the chemical composition studies were done by using x-ray fluorescence (XRF) spectroscopy. The crystallite sizes were calculated by using Scherer equation based on x-ray diffraction (XRD) spectroscopy data. The pyrolysis temperature and time were varied from 600°C to 900°C and from 3 hours to 6 hours, respectively. The particle size of activated carbon was increase with increasing temperature. The composition and crystallite size of the prepared activated carbon was compared with the non-activated carbon. The results indicated that the teak sawdust carbon could be employed as a low cost alternative to produce commercial activated carbon.
机译:通过在高温真空炉中使用物理方法,从锯末制造活性炭,无需额外的化学物质。在流化床炉中之前进行快速热解过程,以在激活过程之前产生焦炭。进行实验以研究各种工艺参数如粒度,活化温度和活化时间对活性炭质量的影响。此外,通过使用X射线荧光(XRF)光谱来完成化学成分研究。通过使用基于X射线衍射(XRD)光谱数据的辛er方程来计算微晶尺寸。热解温度和时间从600℃至900℃和3小时到6小时变化。随着温度的增加,活性炭的粒径增加。将制备的活性炭的组合物和微晶尺寸与未活化的碳进行比较。结果表明,柚木锯末碳可以用作生产商业活性炭的低成本替代品。

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