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◆ ACS applied materials & interfaces2026-09-07

Synergistic Biofirefighting: Closed-Loop Nutrient-Recycling Hydrogel for Forest Fire Extinguishment and Postfire Agroecosystem Regeneration.

Shiyu Xu, Xiaobin Huang, Haoqiang Sheng, Suyang Qin, Xiaofei Li, Hong Liu

原始摘要(英文原文)· Original abstract
Global wildfires have grown increasingly severe. Conventional fire suppressants exhibit low fire-extinguishing efficiency, re-ignition risks, environmental contamination, and cumbersome preparation procedures. Herein, a biofertilizer-based hydrogel (BBH) was fabricated using food additives and compound fertilizers as all-biomass raw materials. The resultant material is low-cost and suitable for large-scale production. Different from traditional single-functional hydrogels, this material operates via a gas-liquid-solid three-phase coupled flame-retardant mechanism based on bound water cooling, phosphorus radical quenching, and the formation of carbon "aerogel-like" barriers. BBH achieves a high limiting oxygen index (LOI) of 84.2%, and its flame-retardant efficacy delivers a 3.3-fold improvement compared with commercial counterparts. Compared with pure water, this hydrogel shortens the fire-extinguishing time by 60% and reduces material consumption by nearly 70%, and no re-ignition is observed throughout all tests. Furthermore, BBH supports an integrated closed-loop system combining fire suppression and in situ ecological restoration. After BBH effectively extinguishes wildland fires, appropriate residues remaining in soil and on plant surfaces impose no environmental burden; its biodegradable residues can release nitrogen, phosphorus, and potassium, which effectively promote plant growth. This work provides a theoretical foundation and feasible technical route for the development of high-efficiency and eco-friendly wildfire suppression materials.
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Synergistic Biofirefighting: Closed-Loop Nutrient-Recycling Hydrogel for Forest Fire Extinguishment and Postfire Agroecosystem Regeneration. — 科研速览 Science Skim