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Regeneration of microwave assisted spent activated carbon: Process optimization, adsorption isotherms and kinetics

机译:微波辅助废活性炭的再生:工艺优化,吸附等温线和动力学

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摘要

Microwave assisted regeneration of spent coal based activated carbon from the silicon industry has been attempted using steam as the regenerating agent. The response surface methodology (RSM) technique was utilized to optimize the process conditions and the optimum conditions have been identified to be a regeneration temperature of 950 °C, regeneration time of 60min and steam flow rate of 2.5g/min. The optimum conditions result in an activated carbon with iodine number of 1103 mg/g and a yield of 68.5% respectively. The BET surface area corresponds to 1302 m~2/g, with the pore volume of 0.86 cm~3/g. The activated carbon is heteroporous with a micropore volume of 69.27%. The regenerated carbon is tested for its suitability for adsorption of methylene blue dye molecule. The adsorption isotherms were generated and the maximum adsorption capacity was found to be 385 mg/g, with the isotherm adhering to Langmuir isotherm model. The kinetic of adsorption was found to match pseudo-second-order kinetic model. The results indicate potential application of the regenerated activated carbon for liquid phase adsorption involving high molecular weight compounds.
机译:已经尝试使用蒸汽作为再生剂来从硅行业进行微波辅助的废煤基活性炭的再生。利用响应表面方法(RSM)技术优化了工艺条件,确定了最佳条件是950℃的再生温度,60分钟的再生时间和2.5 g / min的蒸汽流量。在最佳条件下,活性炭的碘值分别为1103 mg / g和68.5%。 BET表面积对应于1302m 2 / g,孔体积为0.86cm 3 / g。活性炭是多孔的,微孔体积为69.27%。测试再生碳对亚甲基蓝染料分子吸附的适合性。产生了吸附等温线,发现最大吸附容量为385 mg / g,该等温线附着在Langmuir等温线模型上。发现吸附动力学与伪二级动力学模型匹配。结果表明,再生的活性炭在涉及高分子量化合物的液相吸附中的潜在应用。

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