Zhao Yirong, Su Junxia, Zhou Bingqi, Li Fujie, Mao Kang, Umair Muhammad, Huang Guopei, Zhang Hua
State Key Laboratory of Environmental Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Molecules. 2025 Mar 14;30(6):1298. doi: 10.3390/molecules30061298.
Mitigating antibiotic pollution is essential to combating antibiotic resistance, safeguarding ecosystems, ensuring food and water safety, and preserving the efficacy of antibiotics. Simultaneously, the comprehensive utilization of red mud is a key approach to reducing resource waste and ecological damage. This study investigates the use of iron components from red mud to prepare RM-nZVI/Ni for Fenton-like reactions, aimed at degrading antibiotics in water. By leveraging the inherent iron content in red mud, RM-nZVI/Ni was developed to achieve a dual-purpose environmental strategy: antibiotic degradation and solid waste resource recycling. The results demonstrate that 0.02 g/L of sulfamethoxazole (SMX) can be fully degraded within 15 min using 0.1 g/L of RM-nZVI/Ni and 6 mM of HO. Hydroxyl radicals (·OH) and Ni were identified as key contributors to SMX removal. Moreover, this system exhibits universality in degrading common antibiotics such as LFX, NFX, CIP, and TC. LC-MS analysis and DFT theoretical calculations indicate that the degradation byproducts are of lower toxicity or are non-toxic. Additionally, cost analysis suggests that RM-nZVI/Ni is a cost-effective and efficient catalyst. This research gives valuable insights into antibiotic degradation using red mud-based catalysts and offers guidance for expanding the high-value applications of red mud.
减轻抗生素污染对于对抗抗生素耐药性、保护生态系统、确保食品和水安全以及维持抗生素的疗效至关重要。同时,赤泥的综合利用是减少资源浪费和生态破坏的关键途径。本研究探讨利用赤泥中的铁成分制备RM-nZVI/Ni用于类芬顿反应,旨在降解水中的抗生素。通过利用赤泥中固有的铁含量,开发了RM-nZVI/Ni以实现双重环境策略:抗生素降解和固体废物资源回收。结果表明,使用0.1 g/L的RM-nZVI/Ni和6 mM的HO,0.02 g/L的磺胺甲恶唑(SMX)可在15分钟内完全降解。羟基自由基(·OH)和Ni被确定为去除SMX的关键因素。此外,该系统在降解常见抗生素如LFX、NFX、CIP和TC方面具有通用性。LC-MS分析和DFT理论计算表明,降解副产物毒性较低或无毒。此外,成本分析表明RM-nZVI/Ni是一种具有成本效益且高效的催化剂。本研究为使用基于赤泥的催化剂降解抗生素提供了有价值的见解,并为扩大赤泥的高价值应用提供了指导。