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首页> 外文期刊>Journal of Dispersion Science and Technology >Adsorption of sodium dodecyl benzene sulfonate onto carbonate rock: Kinetics, equilibrium and mechanistic study
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Adsorption of sodium dodecyl benzene sulfonate onto carbonate rock: Kinetics, equilibrium and mechanistic study

机译:将十二烷基苯磺酸钠吸附到碳酸盐岩中:动力学,均衡和机械研究

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摘要

In this study, kinetics, equilibrium, and mechanisms of SDBS adsorption onto carbonate rock in presence/absence of alkaline/electrolyte, which is not well discussed in the available literature, is analyzed through batch experiments. Analysis of kinetic data showed that adsorption rate of SDBS onto carbonate is controlled by both boundary layer and intraparticle diffusion, also adsorption kinetics meets pseudo second-order model. The coefficient of kinetic model is a linear function of initial and equilibrium concentrations. The adsorption isotherm experiences four distinct regions, with a rising trend in the first regions until reaching to a maximum after which decreases slightly, as the fourth region, due to micellar exclusion. The prevailing mechanisms in other regions were also discussed. Presence of alkaline changes adsorption mechanisms, so that adsorption isotherm matches well with the Langmuir model, while presence of electrolyte does not change the adsorption mechanisms, but it lessens repulsion between surfactant heads which results in a slight reduction in amount of CMC. A new three-parameter equilibrium model is presented which considers all prevailing mechanisms, and matches properly with obtained experimental data, especially the decreasing trend of fourth region which is very difficult to predict along with other regions using a unique isotherm model.
机译:在这项研究中,通过批量实验分析了在有/无碱/电解质的情况下SDBS在碳酸盐岩上吸附的动力学、平衡和机理,这在现有文献中没有得到很好的讨论。动力学数据分析表明,SDBS在碳酸盐上的吸附速率受边界层和颗粒内扩散控制,且吸附动力学符合拟二级模型。动力学模型的系数是初始浓度和平衡浓度的线性函数。吸附等温线经历了四个不同的区域,第一个区域呈上升趋势,直到达到最大值,之后由于胶束排斥,第四个区域略有下降。还讨论了其他区域的主要机制。碱的存在改变了吸附机理,因此吸附等温线与Langmuir模型很好地匹配,而电解质的存在并没有改变吸附机理,但它减少了表面活性剂头之间的排斥作用,从而导致CMC的量略有减少。提出了一个新的三参数平衡模型,该模型考虑了所有主要的机理,并与获得的实验数据进行了适当的匹配,尤其是第四区域的下降趋势,这一趋势很难与其他区域一起使用唯一的等温线模型进行预测。

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