Zonguldak Bülent Ecevit University, Department of Environmental Engineering, 67100, Zonguldak, Turkey.
Environ Sci Pollut Res Int. 2023 Sep;30(41):94779-94789. doi: 10.1007/s11356-023-29100-9. Epub 2023 Aug 4.
The use of the nano zero-valent iron (nZVI) nanoparticle-based advanced oxidation systems in conjunction with an activator such as peroxymonosulfate (PMS) to generate hydroxyl and sulfate radicals for the degradation of organic pollutants has been extensively used in recent studies. In this study, a nZVI-modified polyethersulfone (PES) membrane (nZVI@PES) was produced successfully by attaching the nZVI catalytic nanoparticles on the surface of a commercial microporous polymeric membrane material using a simple and easy filter press coating method. The presence of nZVI nanoparticles on the nZVI@PES membrane was confirmed by XRD, SEM, and EDS analyses. The nZVI@PES membrane was applied in the dead-end filtration system in the presence of the PMS activator to treat the reactive black 5 (RB5) dye solution. The effect of catalyst loading, RB5 dye concentration, PMS dosage, and pH level on the nZVI@PES membrane/PMS system was investigated. Quenching experiments were carried out to identify the reactive species responsible, and reusability tests were conducted on the membrane. The highest decolorization efficiency (96.8%) was obtained at 20 mg/L RB5 dye solution, initial pH of 3, the nZVI loading of 5 mg/cm, and the PMS dosage of 300 mg/L at the end of a reaction time of 30 min. The formation of HO, [Formula: see text], [Formula: see text] and, O was confirmed by quenching experiments. The results indicate that the nZVI@PES membrane/PMS system could successfully treat wastewater contaminated with an organic dye.
纳米零价铁 (nZVI) 纳米颗粒基高级氧化系统与过一硫酸盐 (PMS) 等激活剂结合使用,以生成用于降解有机污染物的羟基和硫酸根自由基,在最近的研究中得到了广泛应用。本研究通过使用简单易用的压滤机涂层方法将 nZVI 催化纳米颗粒附着在商业微孔聚合物膜材料的表面上,成功制备了 nZVI 修饰的聚醚砜 (PES) 膜 (nZVI@PES)。通过 XRD、SEM 和 EDS 分析证实了 nZVI@PES 膜上存在 nZVI 纳米颗粒。nZVI@PES 膜在 PMS 激活剂存在下应用于死端过滤系统,以处理活性黑 5 (RB5) 染料溶液。研究了催化剂负载量、RB5 染料浓度、PMS 用量和 pH 值对 nZVI@PES 膜/PMS 系统的影响。进行了淬灭实验以确定负责的反应性物质,并对膜进行了可重复使用性测试。在 RB5 染料溶液浓度为 20mg/L、初始 pH 值为 3、nZVI 负载量为 5mg/cm 和 PMS 用量为 300mg/L 的条件下,反应 30 分钟后,获得了最高的脱色效率 (96.8%)。通过淬灭实验证实了 HO、[Formula: see text]、[Formula: see text]和 O 的形成。结果表明,nZVI@PES 膜/PMS 系统可成功处理含有有机染料的废水。