CIEMAT-PSA, Carretera de Senés Km 4, 04200, Tabernas, Almería, Spain.
Department of Chemistry, Università di Torino, Via Giuria 7, 10125, Torino, Italy.
Chemosphere. 2022 Sep;303(Pt 2):135017. doi: 10.1016/j.chemosphere.2022.135017. Epub 2022 May 21.
This study investigates the capability of modified zinc oxides (ZnO) with Ce, Yb and Fe towards the simultaneous inactivation of pathogenic bacteria (Escherichia coli, Enterococcus faecalis and Pseudomonas aeruginosa) and Contaminants of Emerging Concern (CECs, Diclofenac, Sulfamethoxazole and Trimethoprim) under natural sunlight. Several catalyst loads (from 0 to 500 mg/L) were assessed as proof-of principle in isotonic solution followed by the evaluation of organic matter effect in simulated and actual urban wastewater (UWW), using bare TiO-P25 as reference. The order of photocatalysts efficiency for both bacterial and CECs removal was: ZnO-Ce ≅ TiO-P25 > ZnO-Yb > ZnO-Fe > photolysis > darkness in all water matrices. The best photocatalytic performance for water disinfection and decontamination was obtained with 500 mg/L of ZnO-Ce: 80% of ∑CECs removal after 45 min (4.4 kJ/L of accumulated solar UV-A energy (Q)) and the total inactivation of bacteria (Detection Limit of 2 CFU/mL) after 120 min (14 kJ/L of Q) in UWW. The microbial and CECs abatement mechanism was described based on the generation of hydroxyl radicals, which was experimentally demonstrated for ZnO-Ce. Additionally, no significant release of Zn and Ce was detected after the solar exposure. These results point out for the first time the capability of ZnO-Ce for the simultaneous UWW disinfection and decontamination under natural sunlight.
本研究考察了改性氧化锌(ZnO)负载铈(Ce)、镱(Yb)和铁(Fe)在自然光下同时灭活致病菌(大肠杆菌、粪肠球菌和铜绿假单胞菌)和新兴污染物(CECs,双氯芬酸、磺胺甲恶唑和甲氧苄啶)的能力。在等渗溶液中评估了几种催化剂负载量(0 至 500mg/L),然后在模拟和实际城市废水中评估了有机物的影响,以 bare TiO-P25 作为参比。对于细菌和 CECs 的去除,光催化剂的效率顺序为:ZnO-Ce ≅ TiO-P25 > ZnO-Yb > ZnO-Fe > 光解 > 黑暗,在所有水基质中均如此。在所有水基质中,在 500mg/L 的 ZnO-Ce 条件下,水消毒和去污的光催化性能最佳:45 分钟后,∑CECs 的去除率达到 80%(4.4kJ/L 的累积太阳能 UV-A 能量(Q)),120 分钟后,细菌的总失活率达到 100%(14kJ/L 的 Q)。基于羟基自由基的生成,描述了微生物和 CECs 的去除机制,实验证明了 ZnO-Ce 具有这种机制。此外,在暴露于阳光后,未检测到 Zn 和 Ce 的显著释放。这些结果首次指出了 ZnO-Ce 在自然光下同时对 UWW 进行消毒和去污的能力。