Dhaouadi Fatma, Aouaini Fatma, Al-Essa Laila A, Khemiri Noura, Erto Alessandro, Ben Lamine Abdelmottaleb
Laboratory of Quantum and Statistical Physics, LR18ES18, Faculty of Sciences of Monastir, Monastir University Monastir Tunisia
Department of Physics, College of Science, Princess Nourah Bint Abdulrahman University P. O. Box 84428 Riyadh 11671 Saudi Arabia.
RSC Adv. 2023 May 17;13(22):15132-15140. doi: 10.1039/d3ra00762f. eCollection 2023 May 15.
The main purpose of this research is to theoretically investigate the adsorption of two pharmaceutical molecules, aspirin and paracetamol, using two composite adsorbents, N-CNT/β-CD and Fe/N-CNT/β-CD nanocomposite polymers. A multilayer model developed by statistical physics is implemented to explain the experimental adsorption isotherms at the molecular scale, so as to overpass some limitations of the classical adsorption models. The modelling results indicate that the adsorption of these molecules is almost accomplished by the formation of 3 to 5 adsorbate layers, depending on the operating temperature. A general survey of the number of adsorbate molecules captured by the adsorption site () suggested that the adsorption process of pharmaceutical pollutants is multimolecular and that each adsorption site can capture several molecules simultaneously. Furthermore, the values demonstrated the presence of aggregation phenomena of aspirin and paracetamol molecules during adsorption. The evolution of the adsorbed quantity at saturation confirmed that the presence of Fe in the adsorbent enhanced the removal performance of the investigated pharmaceutical molecules. In addition, the adsorption of the pharmaceutical molecules aspirin and paracetamol on the N-CNT/β-CD and Fe/N-CNT/β-CD nanocomposite polymer surface involved weak physical type interactions, since the interaction energies do not overcome the threshold of 25 000 J mol.
本研究的主要目的是从理论上研究两种复合吸附剂N-CNT/β-CD和Fe/N-CNT/β-CD纳米复合聚合物对两种药物分子阿司匹林和对乙酰氨基酚的吸附作用。采用统计物理方法建立的多层模型,从分子尺度解释实验吸附等温线,克服经典吸附模型的一些局限性。模拟结果表明,根据操作温度的不同,这些分子的吸附几乎是通过形成3到5个吸附层来完成的。对吸附位点捕获的吸附质分子数量进行的总体调查表明,药物污染物的吸附过程是多分子的,每个吸附位点可以同时捕获几个分子。此外,这些值表明阿司匹林和对乙酰氨基酚分子在吸附过程中存在聚集现象。饱和吸附量的变化证实,吸附剂中Fe的存在提高了所研究药物分子的去除性能。此外,阿司匹林和对乙酰氨基酚这两种药物分子在N-CNT/β-CD和Fe/N-CNT/β-CD纳米复合聚合物表面的吸附涉及弱物理相互作用,因为相互作用能未超过25000 J/mol的阈值。