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首页> 外文期刊>Environmental Progress & Sustainable Energy >Removal of methylene blue and neutral red from aqueous solutions by surfactant-modified magnetic nanoparticles as highly efficient adsorbent
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Removal of methylene blue and neutral red from aqueous solutions by surfactant-modified magnetic nanoparticles as highly efficient adsorbent

机译:亚甲蓝和中性红由surfactant-modified磁水的解决方案纳米粒子作为高效吸附剂

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摘要

Sodium dodecyl sulfate-coated magnetic nanoparticles were utilized as the inexpensive and effective adsorbents to remove neutral red and methylene blue (two cationic dyes) from aqueous solutions. Factors affecting adsorption, including the amounts of adsorbent and surfactant, pH, and contact time, were investigated by an orthogonal central composite design. The kinetic processes of the dyes adsorption were described by applying the pseudo-first-order and the pseudo-second-order models. It was found that the pseudo-second-order kinetic equation described the data of dye adsorption with a good correlation (R-2>0.999) which indicated a chemisorptions mechanism. The extent of dye removal enhanced with increasing initial dye concentration. The adsorption of dyes at concentrations of 30-70 mg/L reached to equilibrium within 35 min. The adsorption data were represented by Langmuir isotherm model. In addition, the maximum monolayer capacities, (q(max)), of methylene blue and neutral red onto the modified nanoparticles were found to be as high as 294.12 and 416.67 (mg/g), respectively. These values are higher than the adsorption capacities of some other adsorbents that have recently been published in the literature. In addition, the required contact time to achieve equilibrium was reduced by the modified nanoparticles. (c) 2015 American Institute of Chemical Engineers Environ Prog, 34: 1683-1693, 2015
机译:钠十二烷基sulfate-coated磁纳米粒子被利用为便宜和有效的吸附剂去除中性红和亚甲蓝(两个阳离子染料)水的解决方案。包括大量的吸附剂和表面活性剂、pH值和接触时间研究了正交中心组合设计。吸附是通过应用描述符合一级和pseudo-second-order模型。动力学方程描述了数据的染料吸附具有良好的相关性(r2 > 0.999)这表明一个化学吸收作用机制。染料的去除程度日益增强最初的染料浓度。在30 - 70 mg / L浓度达到35分钟内平衡。吸附数据是由朗缪尔等温线模型。此外,最大的单层能力,(q (max)),亚甲蓝和中性红到修改后的纳米粒子被发现高294.12和416.67(毫克/克)。这些值高于吸附能力的其他吸附剂最近发表在《文学。另外,所需的接触时间来实现平衡减少修改纳米粒子。化学工程师环境掠夺,34:1683 - 1693,2015

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