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Adsorption of Eu(III) on oMWCNTs: Effects of pH, Ionic Strength, Solid-Liquid Ratio and Water-Soluble Fullerene

机译:Eu(III)在oMWCNT上的吸附:pH,离子强度,固液比和水溶性富勒烯的影响

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The influences of pH, ionic strength, solid-liquid ratio,C60CCOOH2n, andC60(OH)non Eu(III) adsorption onto the oxidation multiwalled carbon nanotubes (oMWCNTs) were studied by using batch technique. The dynamic process showed that the adsorption of Eu(III) onto oMWCNTs could be in equilibrium for about 17 h and matched the quasi-second-order kinetics model. The sorption process was influenced strongly by pH changes and ionic strength. In the pH range of 1.0 to 4.0, the adsorption ratio increased with the increasing of pH values, then the adsorption of Eu(III) was almost saturated in the pH range of 4.0 to 10.0, and the adsorption ratio reached about 90%. The adsorption ratio decreased with the increasing of ionic strength.C60CCOOH22could promote the adsorption process obviously, butC60(OH)ncompeted with Eu(III) for the adsorption sites, thus leading to the reducing of Eu(III) adsorption onto oMWCNTs. In the presence ofC60CCOOH2norC60(OH)n, the adsorption of Eu(III) onto oMWCNTs could be affected obviously by solid-liquid ratio and the initial concentration of Eu(III).
机译:采用间歇法研究了pH,离子强度,固液比,C60CCOOH2n和C60(OH)non Eu(III)的吸附对氧化多壁碳纳米管(oMWCNTs)的影响。动力学过程表明,Eu(III)在oMWCNTs上的吸附可以保持平衡约17 h,并与准二级动力学模型相匹配。 pH值变化和离子强度强烈影响吸附过程。在1.0〜4.0的pH范围内,随着pH值的增加,吸附率增加,在4.0〜10.0的pH范围内,Eu(III)的吸附几乎饱和,吸附率达到约90%。随着离子强度的增加,吸附率降低。C60CCOOH22可以明显促进吸附过程,但C60(OH)n与Eu(III)竞争吸附位,从而导致Eu(III)在oMWCNTs上的吸附减少。在存在C60CCOOH2norC60(OH)n的情况下,固液比和Eu(III)的初始浓度会明显影响Eu(III)在oMWCNTs上的吸附。

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