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Insight to aspirin sorption behavior on carbon nanotubes from aqueous solution: Thermodynamics, kinetics, influence of functionalization and solution parameters

机译:从水溶液中欣赏阿司匹林吸附行为的碳纳米管:热力学,动力学,官能化影响和溶液参数

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The chronic exposure to the pharmaceuticals and personal care products contaminants in water represent a serious public health problem to man and animal. We studied the removal of aspirin (Asp) as an example to these hazardous materials from an aqueous solution using functionalized (FMCNT) and pristine multiwall carbon nanotubes (PMCNT). The characterization of synthetic sorbents was examined with scanning electron energy-dispersive microscopy and transmission electron microscopy. The effects of adsorption time, sorbent mass, solution pH, ionic strength, and temperature were optimized. The functionalization increased the surface area from 151 to 181?msup2/sup?gsup-1/sup. Consequently, the adsorption capacity increased from 41?mg?gsup-1/sup to 58?mg?gsup-1/sup for PMCNT and FMCNT, respectively. The results showed that the adsorption kinetic follows the pseudo-second-order model with very good agreement. Whereas, the adsorption mechanism study showed a partial agreement with the liquid-film diffusion model on PMCNT and FMCNT at 25?°C and 35?°C, respectively, with acceptable linear regression coefficients. The adsorption isotherm results revealed that the adsorption fits the Freundlich model. The thermodynamic study revealed that, Asp adsorption on both sorbents is exothermic, spontaneous and favorable. FMCNT showed relatively high removal efficiency when compared with the PMCNT when used for most of the conditions investigated.
机译:慢性接触药物和个人护理产品的污染物在水中代表了人类和动物的严重公共卫生问题。我们研究了使用官能化(FMCNT)和原始多壁碳纳米管(PMCNT)的水溶液作为这些危险材料的阿司匹林(ASP)作为示例。用扫描电子能量分散显微镜和透射电子显微镜检查合成吸附剂的表征。优化吸附时间,吸附剂质量,溶液pH,离子强度和温度的影响。官能化从151至181℃的表面积增加,从151到181℃ 2 Δg -1 。因此,吸附容量分别从41Ω·mg?g -1至58Ωmg?g -1 / sup>用于pMCNT和FMCNT。结果表明,吸附动力学跟随伪二阶模型非常良好。然而,吸附机制研究表明,分别在25Ω℃和35Ω·℃下与PMCNT和FMCNT上的液膜扩散模型进行部分协议,其具有可接受的线性回归系数。吸附等温线结果表明,吸附适合Freundlich模型。热力学研究表明,两种吸附剂上的Asp吸附是放热,自发性和有利的。与PMCNT相比,FMCNT在用于大部分调查的条件时显示出相对高的去除效率。

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