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Adsorption of tetracycline from aqueous solutions onto multi-walled carbon nanotubes with different oxygen contents

机译:水溶液中四环素对不同氧含量的多壁碳纳米管的吸附

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Oxidized multi-walled carbon nanotubes (MWCNTs) with different oxygen contents were investigated for the adsorption of tetracycline (TC) from aqueous solutions. As the surface oxygen content of the MWCNTs increased, the maximum adsorption capacity and adsorption coefficient of TC increased to the largest values and then decreased. The relation can be attributed to the interplay between the nanotubes' dispersibility and the water cluster formation upon TC adsorption. The overall adsorption kinetics of TC onto CNTs-3.2%O might be dependent on both intra-particle diffusion and boundary layer diffusion. The maximum adsorption capacity of TC on CNTs-3.2%O was achieved in the pH range of 3.3–8.0 due to formation of water clusters or H-bonds. Furthermore, the presence of Cu2+ could significantly enhanced TC adsorption at pH of 5.0. However, the solution ionic strength did not exhibit remarkable effect on TC adsorption. In addition, when pH is beyond the range (3.3–8.0), the electrostatic interactions caused the decrease of TC adsorption capacity. Our results indicate that surface properties and aqueous solution chemistry play important roles in TC adsorption on MWCNTs.
机译:研究了含氧量不同的氧化多壁碳纳米管(MWCNT)从水溶液中吸附四环素(TC)的能力。随着MWCNTs表面氧含量的增加,TC的最大吸附容量和吸附系数增大到最大值,然后减小。该关系可以归因于纳米管的分散性和TC吸附时水簇形成之间的相互作用。 TC在CNTs-3.2%O上的整体吸附动力学可能既取决于粒子内扩散,也取决于边界层扩散。由于形成水团簇或氢键,在pH范围为3.3-8.0的条件下,TC在CNTs-3.2%O上的最大吸附能力得以实现。此外,Cu 2 + 的存在可以显着增强pH值为5.0时TC的吸附。但是,溶液离子强度对TC吸附没有显着影响。另外,当pH值超出范围(3.3–8.0)时,静电相互作用会导致TC吸附能力下降。我们的结果表明,表面性质和水溶液化学性质在MWCNTs的TC吸附中起着重要作用。

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