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Activated Coconut Shell Charcoal Carbon Using Chemical-Physical Activation

机译:使用化学物理活化活化椰子壳炭炭

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The use of activated carbon from natural material such as coconut shell charcoal as metal absorbance of the wastewater is a new trend. The activation of coconut shell charcoal carbon by using chemical-physical activation has been investigated. Coconut shell was pyrolized in kiln at temperature about 75 - 150 °C for about 6 hours in producing charcoal. The charcoal as the sample was shieved into milimeter sized granule particle and chemically activated by immersing in various concentration of HCl, H_3PO_4, KOH and NaOH solutions. The samples then was physically activated using horizontal furnace at 400°C for 1 hours in argon gas environment with flow rate of 200 kg/m~3. The surface morphology and carbon content of activated carbon were characterized by using SEM/EDS. The result shows that the pores of activated carbon are openned wider as the chemical activator concentration is increased due to an excessive chemical attack. However, the pores tend to be closed as further increasing in chemical activator concentration due to carbon collapsing.
机译:作为废水的金属吸光度的椰子壳木炭等天然材料的使用是一种新的趋势。研究了通过使用化学物理活化来激活椰壳炭碳。在生产木炭中,椰子壳在窑中以窑中的温度蒸煮约6小时。当样品中的炭被撞击到线轮测整大小的颗粒颗粒中,并通过浸入各种浓度的HCl,H_3PO_4,KOH和NaOH溶液中进行化学活化。然后在氩气环境中使用水平炉在400℃下使用水平炉在物理上活化,流速为200kg / m〜3的流速。通过使用SEM / EDS表征活性炭的表面形态和碳含量。结果表明,由于过度的化学侵蚀,所活化碳的孔较宽,因为化学活化剂浓度增加。然而,由于碳塌陷引起的化学活化剂浓度,孔倾向于闭合。

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