Dumitru Marinela-Victoria, Neagu Ana-Lorena, Miron Andreea, Roque Maria Inês, Durães Luisa, Gavrilă Ana-Mihaela, Sarbu Andrei, Iovu Horia, Chiriac Anita-Laura, Iordache Tanța Verona
National Institute for Research & Development in Chemistry and Petrochemistry-ICECHIM, 202 Spl. Independenței, 060021 Bucharest, Romania.
Faculty of Chemical Engineering and Biotechnology, University POLITEHNICA of Bucharest, 1-7 Ghe. Polizu Street, 011061 Bucharest, Romania.
Polymers (Basel). 2024 Feb 27;16(5):639. doi: 10.3390/polym16050639.
Water pollution is becoming a great concern at the global level due to highly polluted effluents, which are charged year by year with increasing amounts of organic residues, dyes, pharmaceuticals and heavy metals. For some of these pollutants, the industrial treatment of wastewater is still relevant. Yet, in some cases, such as pharmaceuticals, specific treatment schemes are urgently required. Therefore, the present study describes the synthesis and evaluation of promising cryostructured composite adsorbents based on chitosan containing native minerals and two types of reinforcement materials (functionalized kaolin and synthetic silicate microparticles). The targeted pharmaceuticals refer to the ciprofloxacin (CIP) antibiotic and the carbamazepine (CBZ) drug, for which the current water treatment process seem to be less efficient, making them appear in exceedingly high concentrations, even in tap water. The study reveals first the progress made for improving the mechanical stability and resilience to water disintegration, as a function of pH, of chitosan-based cryostructures. Further on, a retention study shows that both pharmaceuticals are retained with high efficiency (up to 85.94% CIP and 86.38% CBZ) from diluted aqueous solutions.
由于污水污染严重,有机残留物、染料、药物和重金属的排放量逐年增加,水污染已成为全球关注的重大问题。对于其中一些污染物,工业废水处理仍然具有重要意义。然而,在某些情况下,如药物,迫切需要特定的处理方案。因此,本研究描述了基于壳聚糖的有前景的冷冻结构复合吸附剂的合成与评价,该吸附剂含有天然矿物质和两种增强材料(功能化高岭土和合成硅酸盐微粒)。目标药物指环丙沙星(CIP)抗生素和卡马西平(CBZ)药物,目前的水处理工艺对它们的处理效率似乎较低,导致它们即使在自来水中也以极高的浓度出现。该研究首先揭示了基于壳聚糖的冷冻结构在提高机械稳定性和耐水崩解性方面取得的进展,这是pH值的函数。此外,一项保留研究表明,两种药物在稀释水溶液中的保留效率都很高(CIP高达85.94%,CBZ高达86.38%)。