Department of Environmental Engineering, Mersin University, 33343 Mersin, Turkey.
Ultrason Sonochem. 2010 Jun;17(5):932-8. doi: 10.1016/j.ultsonch.2009.12.014. Epub 2009 Dec 16.
The adsorption behavior of naphthalene onto naturally hydrophobic talc from aqueous solution was investigated in this study. The natural talc was first pretreated by sonication to improve the surface characteristics and enhance the uptake capacity by increasing the specific surface area (SSA) of talc. The naphthalene uptake of talc was found as 276 mg g(-1) and increased to 359 mg g(-1) after the sonication. Adsorption studies also showed that the adsorption of naphthalene onto the sonicated talc was not affected by changes in pH suggesting that the main driving forces for naphthalene adsorption onto talc was hydrophobic bonding rather than electrostatic force. The pseudo-first and pseudo-second orders and intraparticle diffusion equation were used to evaluate the kinetic data and the constants were determined. Adsorption process of naphthalene onto talc followed the pseudo-second-order rate expression for different initial naphthalene concentrations. The Langmuir and Freundlich isotherm models were used to model the isotherm data for their applicability. The Freundlich isotherm best fitted for the adsorption of naphthalene onto talc.
本研究考察了萘在水溶液中从天然疏水性滑石上的吸附行为。首先通过超声处理对天然滑石进行预处理,以改善表面特性并通过增加滑石的比表面积(SSA)来提高吸收能力。发现滑石对萘的吸收量为 276mg g(-1),超声处理后增加到 359mg g(-1)。吸附研究还表明,萘在超声处理的滑石上的吸附不受 pH 值变化的影响,这表明萘吸附到滑石上的主要驱动力是疏水键而不是静电力。伪一级和伪二级以及内扩散方程用于评估动力学数据,并确定常数。萘在滑石上的吸附过程遵循不同初始萘浓度下的伪二级速率表达式。Langmuir 和 Freundlich 等温模型用于模拟等温数据以评估其适用性。Freundlich 等温模型最适合描述萘在滑石上的吸附。