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Highly effective adsorption of cationic and anionic dyes on magnetic Fe/Ni nanoparticles doped bimodal mesoporous carbon

机译:磁性和Fe / Ni纳米颗粒掺杂双峰介孔碳对阳离子和阴离子染料的高效吸附

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Magnetic Fe/Ni nanoparticles doped bimodal mesoporous carbon (MBMC) was prepared for highly effective adsorption of cationic dye methylene blue (MB) and anionic dye methyl orange (MO). Structure characterization demonstrated that Fe/Ni nanoparticles were embedded into the interior of the mesoprous carbon, and MBMC maintained ordered and bimodal mesopores. The effects of several parameters such as contact time, pH, temperature, ionic strength and dye molecular structure on the adsorption were investigated. Alkaline pH was better for MB adsorption, while acidic pH was more favorable for MO uptake. The adsorption capacity was slightly enhanced when existing ion concentrations increased. Adsorption on MBMC was affected by the molecular structures of different dyes, and both primary and secondary pores of MBMC were involved in dye adsorption. The adsorption kinetics fitted well with pseudo-second-order model and exhibited 3-stage intraparticle diffusion mode. Equilibrium data were best described by Langmuir model, and the estimated maximum adsorption capacity for MB and MO was 959.5 mg/g and 849.3 mg/g, respectively. Thermodynamic studies indicated that the adsorption process was spontaneous and endothermic. Moreover, the adsorbent could be regenerated using ethanol, and the regenerated adsorbent after seven cycles could retain over 80% of the adsorption capacity for the fresh adsorbent. The results suggested that MBMC could be considered as very effective and promising materials for both anionic and cationic dyes removal from wastewater. (C) 2015 Elsevier Inc. All rights reserved.
机译:制备了磁性Fe / Ni纳米颗粒掺杂双峰介孔碳(MBMC),用于高效吸附阳离子染料亚甲基蓝(MB)和阴离子染料甲基橙(MO)。结构表征表明,Fe / Ni纳米粒子被嵌入到中链碳的内部,MBMC保持有序和双峰的中孔。研究了接触时间,pH,温度,离子强度和染料分子结构等几个参数对吸附的影响。碱性pH值对MB的吸附更好,而酸性pH值对MO的吸收更有利。当现有离子浓度增加时,吸附能力会稍微提高。 MBMC的吸附受不同染料分子结构的影响,MBMC的初级和次级孔都参与染料的吸附。吸附动力学很好地拟合拟二阶模型,并表现出三阶段粒子内扩散模式。平衡数据最好用Langmuir模型描述,估计的MB和MO的最大吸附容量分别为959.5 mg / g和849.3 mg / g。热力学研究表明,吸附过程是自发的并且是吸热的。此外,吸附剂可以使用乙醇进行再生,经过七个循环后,再生的吸附剂可以保留超过80%的新鲜吸附剂吸附能力。结果表明,MBMC可以被认为是用于从废水中去除阴离子和阳离子染料的非常有效和有前途的材料。 (C)2015 Elsevier Inc.保留所有权利。

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