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Influence of process parameters on the surface and chemical properties of activated carbon obtained from biochar by chemical activation

机译:工艺参数对通过化学活化法从生物炭中获得的活性炭的表面和化学性质的影响

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Activated carbons were produced from biochar obtained through pyrolysis of safflower seed press cake by chemical activation with zinc chloride. The influences of process variables such as the activation temperature and the impregnation ratio on textural and chemical-surface properties of the activated carbons were investigated. Also, the adsorptive properties of activated carbons were tested using methylene blue dye as the targeted adsorbate. The experimental data indicated that the adsorption isotherms are well described by the Langmuir equilibrium isotherm equation. The optimum conditions resulted in activated carbon with a monolayer adsorption capacity of 128.21mgg~(-1) and carbon content 76.29%, while the BET surface area and total pore volume corresponded to 801.5m~2g~(-1) and 0.393cm~3g~(-1), respectively. This study demonstrated that high surface area activated carbons can be prepared from the chemical activation of biochar with zinc chloride as activating agents.
机译:活性炭是由红炭压榨饼通过热解氯化锌进行化学活化而获得的生物炭生产的。研究了活化温度和浸渍率等工艺变量对活性炭的织构和化学表面性能的影响。同样,使用亚甲基蓝染料作为目标吸附物测试了活性炭的吸附性能。实验数据表明,吸附等温线可以由Langmuir平衡等温线方程很好地描述。在最佳条件下,活性炭单层吸附量为128.21mgg〜(-1),碳含量为76.29%,BET比表面积和总孔体积分别为801.5m〜2g〜(-1)和0.393cm〜。分别为3g〜(-1)。这项研究表明,可以用氯化锌作为活化剂对生物炭进行化学活化来制备高表面积的活性炭。

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