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首页> 外文期刊>The Canadian Journal of Chemical Engineering >PROCESS OPTIMISATION OF POROUS CARBON PREPARATION FROM DATE PALM PITS AND ADSORPTION KINETICS OF METHYLENE BLUE
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PROCESS OPTIMISATION OF POROUS CARBON PREPARATION FROM DATE PALM PITS AND ADSORPTION KINETICS OF METHYLENE BLUE

机译:日期棕榈渣制取多孔碳的工艺优化及亚甲基蓝的吸附动力学

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摘要

The present study focuses on the process optimisation of porous carbon preparation from date seed pits. The response surface methodology (RSM) technique with Box-Behnken method (BBM) was utilised with the response variables being the yield and BET surface area. The influencing parameters selected were activation temperature, impregnation ratio (IR) and activation time. The optimum conditions were identified to be an activation temperature of 500°C, IR of 2 and activation time of 75 min, with the resulting yield and BET surface area being 46% and 838 m~2/g. The average pore volume and average pore diameter were 1.07 cm~3/g and 1.69 nm, respectively. In order to assess the suitability of the carbon for adsorption of macromolecules, the kinetics of methylene blue (MB) adsorption were assessed by varying the initial concentration and the adsorption temperature. The kinetic parameters were evaluated applying the pseudo-second-order kinetic model by minimising the error between the experimental data and the model prediction; it was found to represent the experimental data more aptly.
机译:本研究着重从枣核中制备多孔碳的工艺优化。使用具有Box-Behnken方法(BBM)的响应面方法(RSM)技术,响应变量为产率和BET表面积。选择的影响参数是活化温度,浸渍率(IR)和活化时间。确定的最佳条件是活化温度为500°C,IR为2,活化时间为75分钟,所得产率和BET表面积分别为46%和838 m2 / g。平均孔体积和平均孔径分别为1.07cm〜3 / g和1.69nm。为了评估碳对大分子吸附的适合性,通过改变初始浓度和吸附温度来评估亚甲基蓝(MB)吸附的动力学。通过使实验数据与模型预测之间的误差最小化,应用伪二级动力学模型对动力学参数进行了评估;发现它更恰当地代表了实验数据。

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