Laboratório de Tecnologia e Desenvolvimento de Compósitos e Materiais Poliméricos (LaCoPol), Centro de Ciências Químicas, Farmacêuticas e de Alimentos, Universidade Federal de Pelotas (UFPel), Campus Capão do Leão s/n, 96010-900, Pelotas, RS, Brazil.
Laboratório de Tecnologia e Desenvolvimento de Compósitos e Materiais Poliméricos (LaCoPol), Centro de Ciências Químicas, Farmacêuticas e de Alimentos, Universidade Federal de Pelotas (UFPel), Campus Capão do Leão s/n, 96010-900, Pelotas, RS, Brazil.
Carbohydr Polym. 2018 Jun 1;189:257-266. doi: 10.1016/j.carbpol.2018.02.018. Epub 2018 Feb 16.
Waste coffee-grounds (WCG), a poorly explored source of biocompounds, were combined with chitosan (Cs) and poly(vinyl alcohol) (PVA) in order to obtain composites. Overall, WCG showed a good interaction with the polymeric matrix and good dispersibility up to 10 wt-%. At 5 wt-% WCG, the composite exhibited a noticeable enhancement (from 10 to 44%) of the adsorption of pharmaceuticals (metamizol (MET), acetylsalicylic acid (ASA), acetaminophen (ACE), and caffeine (CAF)) as compared to the pristine sample. The highest removal efficiency was registered at pH 6 and the removal followed the order ASA > CAF > ACE > MET. For all pharmaceuticals, the adsorption kinetics was found to follow the pseudo-second order model, while the adsorption mechanism was explained by the Freundlich isotherm. Reuse experiments indicated that the WCG-containing composite has an attractive cost-effectiveness since it presented a remarkable reusability in at least five consecutive adsorption/desorption cycles.
废咖啡渣(WCG)是一种尚未得到充分开发的生物化合物来源,它与壳聚糖(Cs)和聚乙烯醇(PVA)结合,以获得复合材料。总体而言,WCG 与聚合物基质表现出良好的相互作用和良好的分散性,最高可达 10wt-%。在 5wt-%的 WCG 含量下,与原始样品相比,该复合材料对药物(扑热息痛(MET)、乙酰水杨酸(ASA)、对乙酰氨基酚(ACE)和咖啡因(CAF))的吸附能力显著增强(从 10%提高到 44%)。在 pH 值为 6 时,去除效率最高,去除顺序为 ASA > CAF > ACE > MET。对于所有药物,吸附动力学均遵循准二级模型,而吸附机制则由 Freundlich 等温线解释。重复使用实验表明,含有 WCG 的复合材料具有较高的成本效益,因为它在至少五个连续的吸附/解吸循环中表现出了显著的可重复使用性。