Guan Nan, Wang Yao, Hu Jun, Zhang Lijuan
Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China.
University of Chinese Academy and Sciences, Beijing 100049, China.
Nanomaterials (Basel). 2025 Mar 23;15(7):480. doi: 10.3390/nano15070480.
Due to increasing public awareness of environmental concerns and stricter cleaning process requirements, traditional cleaning technologies characterized by high pollution, excessive energy consumption, and substantial damage are insufficient to meet contemporary demands. There is an urgent need for efficient, low-damage, and environmentally friendly cleaning technologies. In recent years, the rapid advancement of micro-nano bubbles (MNBs), which exhibit unique physicochemical properties, have emerged as a promising solution for green cleaning applications. This review begins with an overview of the benefits of MNBs in cleaning processes, followed by an in-depth analysis of the factors influencing their cleaning effectiveness as well as the possible mechanisms involved. Additionally, the producing and application of MNBs across various cleaning scenarios are summarized. Finally, prospects for their development are discussed. Research and advancements in MNB preparation technologies are expected to boost their applicability and commercialization in a greater variety of cleaning contexts in the future.
由于公众对环境问题的意识不断提高以及清洁工艺要求更加严格,以高污染、高能耗和高损害为特征的传统清洁技术已不足以满足当代需求。迫切需要高效、低损害且环保的清洁技术。近年来,具有独特物理化学性质的微纳米气泡(MNBs)迅速发展,已成为绿色清洁应用的一个有前景的解决方案。本文综述首先概述了微纳米气泡在清洁过程中的优势,接着深入分析了影响其清洁效果的因素以及可能涉及的机制。此外,还总结了微纳米气泡在各种清洁场景中的产生和应用。最后,讨论了它们的发展前景。预计微纳米气泡制备技术的研究和进步将在未来推动其在更多清洁环境中的适用性和商业化。