Muze Han, Jiayi Li, Jinjing Liu, Ronghua Yu, Yifu Zhu, Yujie Huang, Kunkun Tu, Shihang Li
Abstract
Dust pollution threatens ecological stability and human health, but conventional suppressants suffer from short durability, high water demand, and toxicity. This study developed a bio-inspired bacterial/sodium alginate (SA) hydrogel (BSH) dust suppressant composed of Bacillus mucilaginosus (B.m), SA, and NaHCO 3 . Its application uses a two-step process: first spraying BSH for physical dust adhesion and then CaCl 2 to supply Ca 2+ ions. Carbonic anhydrase secreted by B.m catalyzes the hydration of ambient CO 2 into CO 3 2–, which reacts with Ca 2+ to form CaCO 3; NaHCO 3 further enhances CO 3 2– availability, promoting stable calcite and dust matrix consolidation. The BSH exhibits favorable interfacial properties: a low surface tension of 31 mN/m and strong wettability, with a contact angle of 60°. The hydrogel suppressant achieves a dust suppression efficiency of up to 99.76%, outperforming conventional formulations, and maintains >95% efficiency over a 7 day wind erosion trial, alongside superior water retention. This scalable, biodegradable hydrogel enables long-term dust mitigation and synergizes with greenhouse gas sequestration, shifting the paradigm from passive dust control to climate-friendly environmental management.
Citation format
HAN, Muze, et al. Bio-inspired bacterial/sodium alginate hydrogel dust suppressant with strong consolidation and high water retention. ACS Sustainable Chemistry & Engineering, 2026, 14(8): 4029–4041.