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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >RSM-CCD design of malachite green adsorption onto activated carbon with multimodal pore size distribution prepared from Amygdalus scoparia: Kinetic and isotherm studies
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RSM-CCD design of malachite green adsorption onto activated carbon with multimodal pore size distribution prepared from Amygdalus scoparia: Kinetic and isotherm studies

机译:RSM-CCD设计孔雀石绿色吸附到活性炭中,具有来自Amygdalus Scoparia的多模骨孔径分布:动力学和等温线研究

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In the present work, the activated carbon (AC) adsorbent with multimodal pore size distribution prepared from Amygdalus scoparia as low-cost and locally available source was applied for efficient adsorption of malachite green (MG) from aqueous media. The surface properties of the adsorbent were identified by various techniques such as FT-IR, BET and SEM analyses. The dependency of MG adsorption efficiency on the variables such as pH, initial dye concentration, adsorbent dosage and contact time was studied by central composite design (CCD) coupled with response surface methodology (RSM). A good agreement between experimental and predicted data was achieved that proved the efficiency of this model for prediction of real optimum point. Among the well-known previously isotherm models, the experimental equilibrium data were efficiently fitted by the Freundlich model, while maximum adsorption capacity of MG at 0.01 g of the adsorbent was 144.30 mg g(-1). The kinetic data were efficiently interpreted by the combination of pseudo-second-order and intra-particle diffusion models. The advantage of the green adsorbent was that a small amount of the adsorbent (0.027 g) is applicable for high adsorption percentage of MG (>99.5%) within a reasonable time (75 min). (C) 2019 Elsevier Ltd. All rights reserved.
机译:在本作工作中,具有由Amygdalus Scoparia制备的多峰孔径分布的活性炭(AC)吸附剂作为低成本和局部可用的来源,用于高效吸附来自含水介质的孔雀石绿(Mg)。通过各种技术(如FT-IR,BET和SEM分析)鉴定吸附剂的表面性质。通过与响应面方法(RSM)相结合的中央复合设计(CCD)研究了Mg吸附效率对诸如pH,初始染料浓度,吸附剂剂量和接触时间的变量的依赖性。实现了实验和预测数据之间的良好一致性,证明了该模型的效率以预测真正最佳点。在众所周知的预先等温模型中,通过Freundlich模型有效地安装了实验性平衡数据,而Mg的最大吸附容量为0.01g吸附剂为144.30mg(-1)。通过伪二阶和粒子漫射模型的组合有效地解释动力学数据。绿色吸附剂的优点是少量吸附剂(0.027g)适用于合理时间(75分钟)内的Mg(> 99.5%)的高吸附百分比。 (c)2019 Elsevier Ltd.保留所有权利。

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