Bilińska Magdalena, Bilińska Lucyna, Fronczak Maciej, Kędzierska-Sar Aleksandra, Kierzkowska-Pawlak Hanna, Gmurek Marta
Institute of General and Ecological Chemistry, Faculty of Chemistry, Lodz University of Technology, Zeromskiego 116, 90-543, Lodz, Poland.
Faculty of Process & Environmental Engineering, Lodz University of Technology, Wolczanska 213, 93-005, Lodz, Poland.
Sci Rep. 2025 May 27;15(1):18580. doi: 10.1038/s41598-025-02330-2.
More than ten thousand cubic meters of highly polluted textile wastewater are discharged into the environment daily worldwide, highlighting the urgent need for effective wastewater treatment solutions. This study addresses this challenge by introducing a novel ozone system based on plasma-prepared catalysts for textile wastewater treatment. Metal oxide thin-films were deposited onto knitted Kanthal mesh by plasma-enhanced chemical vapor deposition (PECVD), creating a stable 3D catalytic material for heterogeneous catalysis. Kinetic analysis of the removal of textile dye, Reactive Black 5, revealed the effectiveness of cobalt and iron oxides as catalysts, with kinetic constants of (2.46 ± 0.03) × 10 1/s and (2.93 ± 0.05) × 10 1/s, respectively, surpassing the kinetic constant of classical ozonation, which was only (1.66 ± 0.05) × 10 1/s. These thin-film catalysts exhibited superactivity, particularly in alkaline pH conditions, but remained active across a range of pH levels, including acidic and neutral environments. Structural and compositional analysis conducted through X-ray photoelectron spectroscopy (XPS) and scanning electron microscopy energy-dispersive X-ray spectroscopy (SEM EDX) confirmed the stable and active nature of the cobalt oxide (CoO spinel form) and iron oxide (FeO) catalytic films. Optimization ensured a pollutant-to-ozone ratio below 1:10 using only 0.3 mg O/L, confirming catalytic efficiency with minimal oxidant input.
全球每天有超过一万立方米的高污染纺织废水排放到环境中,凸显了对有效废水处理解决方案的迫切需求。本研究通过引入一种基于等离子体制备催化剂的新型臭氧系统来应对这一挑战,用于处理纺织废水。通过等离子体增强化学气相沉积(PECVD)将金属氧化物薄膜沉积在针织康泰尔网上,形成一种用于多相催化的稳定三维催化材料。对纺织染料活性黑5去除的动力学分析表明,氧化钴和氧化铁作为催化剂具有有效性,其动力学常数分别为(2.46±0.03)×10⁻¹/s和(2.93±0.05)×10⁻¹/s,超过了传统臭氧化的动力学常数,传统臭氧化的动力学常数仅为(1.66±0.05)×10⁻¹/s。这些薄膜催化剂表现出超活性,特别是在碱性pH条件下,但在包括酸性和中性环境在内的一系列pH水平下仍保持活性。通过X射线光电子能谱(XPS)和扫描电子显微镜能量色散X射线光谱(SEM EDX)进行的结构和成分分析证实了氧化钴(CoO尖晶石形式)和氧化铁(FeO)催化膜的稳定性和活性。优化后仅使用0.3 mg O₃/L确保污染物与臭氧的比例低于1:10,证实了在最小氧化剂投入下的催化效率。