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Preparation of tobacco-stem activated carbon from using response surface methodology and its application for water vapor adsorption in solar drying system

机译:响应面法制备烟梗活性炭及其在太阳能干燥系统中水蒸气吸附的应用

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Tobacco-stem activated carbons (TACs) were prepared by ZnCl2 activation and used for water vapor adsorption in solar drying system. The effects of activation temperature, activation time, and ZnCl2 impregnation ratio on water vapor adsorption performance and BET specific surface area of TACs were carried out and the preparation conditions were analyzed by surface response methodology. Pore structure and morphology of the samples were characterized by N-2 adsorption-desorption isotherm and scanning electron microscope. Water vapor adsorption and desorption isotherms of TACs were carried out. A six subsequent adsorption-regeneration cycle of water vapor was investigated. The result shows that BET specific surface area of 1893.6 m(2)/g, water vapor adsorption capacity of 563.4 mg/g are obtained in the optimum preparation conditions of activation temperature 621 degrees C, activation time 73 min and ZnCl2 impregnation ratio of 1.70. Pore structure and surface area analysis shows that TAC21 is prepared as a microporous activated carbon and suitable for water vapor adsorption application. Both TAC18 and TAC21 possess an excellent reversibility of water vapor adsorption under the tested condition. The result confirms that the TAC adsorbents would be the potential candidates for dehumidification and heat recovery in solar drying system.
机译:通过ZnCl2活化制备烟梗活性炭(TAC),并将其用于太阳能干燥系统中的水蒸气吸附。考察了活化温度,活化时间和ZnCl2浸渍率对TACs水蒸气吸附性能和BET比表面积的影响,并通过表面反应方法对制备条件进行了分析。用N-2吸附-解吸等温线和扫描电子显微镜对样品的孔结构和形貌进行表征。进行了TAC的水蒸气吸附和解吸等温线。研究了六个随后的水蒸气吸附-再生循环。结果表明,在活化温度为621℃,活化时间为73 min,ZnCl2浸渍比为1.70的最佳制备条件下,BET比表面积为1893.6 m(2)/ g,水蒸气吸附能力为563.4 mg / g。 。孔结构和表面积分析表明,TAC21制备为微孔活性炭,适用于水蒸气吸附应用。在测试条件下,TAC18和TAC21都具有极好的水蒸气吸附可逆性。结果证实,TAC吸附剂将是太阳能干燥系统中除湿和热量回收的潜在候选者。

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