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Preparation of Eupatorium Adenophorum Based Porous Carbon with Microwave Heating using Response Surface Methodology

机译:响应面法微波加热制备紫茎泽兰基多孔碳

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Eupatorium adenophorum was utilized as raw materials for the preparation of activated carbon via microwave assisted steam activation. Influences of the three vital process parameters - activation temperature, activation duration and steam flow rate - have been assessed on the adsorption capacity and yield of Eupatorium adenophorum activated carbon (EAAC). The process parameters were optimized utilizing the Design Expert software and were identified to be an activation duration of 45 min, an activation temperature of 950 ℃ and a steam flow rate of 0.7 ml/min, with the resultant iodine number and yield being 1,010 mg/g and 20.13% respectively. The validity of process model to optimize the process parameters was verified using the analysis of variance (ANOVA). The key parameters that characterize quality of the porous carbon such as the BET surface area, total pore volume and average pore diameter were estimated to be 1,142 m~2/g, 0.84 ml/g and 3.3 nm respectively, for the sample corresponding to the optimized process conditions. Additionally the pore structure is characterized using Scanning Electron Microscope (SEM). The present work strongly supports utilization of Eupatorium adenophorum as a potential precursor through microwave heating.
机译:紫茎泽兰被用作通过微波辅助蒸汽活化制备活性炭的原料。评估了三个关键过程参数-活化温度,活化持续时间和蒸汽流速-对紫茎泽兰活性炭(EAAC)的吸附容量和产率的影响。使用Design Expert软件对工艺参数进行了优化,确定其活化时间为45分钟,活化温度为950℃,蒸汽流量为0.7 ml / min,碘值和产量为1,010 mg / min。 g和20.13%。使用方差分析(ANOVA)验证了用于优化过程参数的过程模型的有效性。对应于样品的BET表面积,总孔体积和平均孔径等表征多孔碳质量的关键参数分别估计为1,142 m〜2 / g,0.84 ml / g和3.3 nm。优化的工艺条件。另外,使用扫描电子显微镜(SEM)表征孔结构。本工作大力支持通过微波加热紫茎泽兰作为潜在的前体的利用。

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