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Optimization of manufacturing conditions for activated carbon from Turkish lignite by chemical activation using response surface methodology

机译:使用响应面法通过化学活化优化土耳其褐煤活性炭的生产条件

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The purpose of this research is to obtain optimal processing conditions for activated carbon from lignite by chemical activation with K2CO3 using response surface methodology (RSM). The activated carbons produced were characterized by carbon yield (%), BET surface area, porosity development (total pore volume and micropore fraction). RSM based on a five-variable central composite rotatable design was used to determine the effect of chemical ratio (ranging from 0 to 4) and activation temperature (ranging from 500 degrees C to 900 degrees C) on the responses levels. Each response has been described by a second order model that was found to be appropriate to predict most of the responses in every experimental region. The most influential factor on each experimental design response have been identified from the analysis of variance (ANOVA). The optimum conditions for manufacturing of activated carbon from Turkish lignite, which were based on response surface and contour plots, were found as follows: chemical ratio of 2.05 and carbonization temperature of 800 degrees C. (C) 2006 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是通过使用响应面方法(RSM)用K2CO3进行化学活化来获得褐煤活性炭的最佳加工条件。产生的活性炭的特征在于碳收率(%),BET表面积,孔隙率发展(总孔体积和微孔分数)。基于五变量中心复合材料可旋转设计的RSM用于确定化学比(范围从0到4)和活化温度(范围从500摄氏度到900摄氏度)对响应水平的影响。每个响应已由二阶模型描述,该模型适合预测每个实验区域中的大多数响应。从方差分析(ANOVA)中确定了对每个实验设计响应的影响最大的因素。基于响应表面和轮廓图,发现从土耳其褐煤生产活性炭的最佳条件如下:化学比为2.05,碳化温度为800摄氏度。(C)2006 Elsevier Ltd.保留所有权利。

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