Muze Han, Jiayi Li, Jinjing Liu, Ronghua Yu, Yifu Zhu, Yujie Huang, Kunkun Tu, Shihang Li

2026.2.10ACS Sustainable Chemistry & Engineering

DOI: 10.1021/acssuschemeng.5c11952

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.