Laboratory of Quantum and Statistical Physics, LR18ES18, Faculty of Sciences of Monastir, Monastir University, Monastir, Tunisia.
CNRS, UMR 8522-PC2A-Physico Chimie des Processus de Combustion et de l'Atmosphère, Université de Lille, 59000, Lille, France.
Environ Sci Pollut Res Int. 2022 Apr;29(20):30184-30192. doi: 10.1007/s11356-021-18483-2. Epub 2022 Jan 8.
The paper describes a theoretical analysis of the adsorption of nicotinamide and propranolol onto a magnetic-activated carbon (MAC). For a better evaluation of the adsorption mechanism, adsorption isotherms expressing the variation of the adsorption capacity as function of adsorbate concentration were determined at different temperatures ranging from 20 to 45 °C. For both the analytes, experimental tests reveal that adsorption capacity increases with temperature. An advanced multi-layer model derived from the statistical physics is set for the interpretation of the entire adsorption data set. The modelling results show that the propranolol molecules change their adsorption orientation from a mixed (parallel and non-parallel) orientation to a multimolecular process. For nicotinamide, the aggregation of molecules is practically absent, except for the data at lower temperatures. The model allows stating that the adsorption of both the pharmaceutical compounds occurs via the formation of one or two layers on MAC adsorbent, the propranolol showing a higher tendency to form multiple layers. Finally, adsorption energy is estimated suggesting that the adsorption is endothermic and physical interactions are the responsible of the adsorption of both the compounds onto MAC adsorbent.
本文对烟酰胺和普萘洛尔在磁性活性炭(MAC)上的吸附进行了理论分析。为了更好地评价吸附机制,在 20 至 45°C 的不同温度下测定了表示吸附容量随吸附质浓度变化的吸附等温线。对于这两种分析物,实验测试表明吸附容量随温度升高而增加。从统计物理中导出的一个高级多层模型用于解释整个吸附数据集。建模结果表明,普萘洛尔分子的吸附取向从混合(平行和非平行)取向变为多分子过程。对于烟酰胺,除了在较低温度下的数据外,分子的聚集实际上不存在。该模型表明,两种药物化合物的吸附都是通过在 MAC 吸附剂上形成一层或两层来进行的,普萘洛尔表现出形成多层的更高趋势。最后,估算了吸附能,表明吸附是吸热的,并且物理相互作用是这两种化合物吸附到 MAC 吸附剂上的原因。