自愈水凝胶
持续性
接口(物质)
荒地-城市界面
建筑工程
工程类
环境科学
材料科学
化学工程
环境资源管理
肺表面活性物质
生态学
吉布斯等温线
生物
作者
Xin Wang,Zhenfeng Cheng,Amirbek Bekeshev,Wei Cai,Bin Fei,Yuan Hu
标识
DOI:10.1016/j.jclepro.2025.145968
摘要
Existing hydrogel coatings for fire prevention, which are mainly based on chemically synthesized polymers, have environmental burdens and low adhesion. They dry easily at high temperatures and strong winds, limiting their use. Here, we propose a novel marine polysaccharide-based flame-retardant hydrogel coating. This coating has inherent flame-retardant properties and strong adhesion due to strong molecular interactions. It is made entirely of bio-based materials and forms a protective char layer when dry, preventing the substrate from catching fire. Compared with untreated wood, hydrogel-coated wood had a significantly longer ignition time of 67 ± 5 s, a 24.17 % reduction in the total heat release (THR), and a 37.2 % reduction in heat release rate (HRR), whereas the fire performance index (FPI) improved from 0.04 m 2 /(s·kW) to 0.17 m 2 /(s·kW), and the fire growth index (FGI) decreased from 3.49 kW/(m 2 ·s) to 1.57 kW/(m 2 ·s), improving the overall safety of wood materials. In addition, the coating has excellent antimicrobial properties, up to 99 % against E. coli and S . aureus , which is vital for fire protection in special situations, such as protecting grain silos, fighting wildfires and maintaining timber structures.
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