Gao Yanni, Zhao Yuzhou, Wang Ting
Aulin College, Northeastern Forestry University, Harbin 150040, China.
College of Chemistry, Chemical Engineering and Resource Utilization, Northeast Forestry University, 26 Hexing Road, Harbin 150040, China.
Gels. 2024 Jun 8;10(6):390. doi: 10.3390/gels10060390.
Effective forest fire suppression remains a critical challenge, necessitating innovative solutions. Temperature-sensitive hydrogels represent a promising avenue in this endeavor. Traditional firefighting methods often struggle to address forest fires efficiently while mitigating ecological harm and optimizing resource utilization. In this study, a novel intelligent temperature-sensitive hydrogel was prepared specially for forest fire extinguishment. Utilizing a one-pot synthesis approach, this material demonstrates exceptional fluidity at ambient temperatures, facilitating convenient application and transport. Upon exposure to elevated temperatures, it undergoes a phase transition to form a solid, barrier-like structure essential for containing forest fires. The incorporation of environmentally friendly phosphorus salts into the chitosan/hydroxypropyl methylcellulose gel system enhances the formation of temperature-sensitive hydrogels, thereby enhancing their structural integrity and firefighting efficacy. Morphological and thermal stability analyses elucidate the outstanding performance, with the hydrogel forming a dense carbonized layer that acts as a robust barrier against the spread of forest fires. Additionally, comprehensive evaluations employing rheological tests, cone calorimeter tests, a swelling test, and infrared thermography reveal the multifaceted roles of temperature-sensitive hydrogels in forest fire prevention and suppression strategies.
有效的森林火灾扑救仍然是一项严峻挑战,需要创新解决方案。温度敏感水凝胶是这一努力中的一个有前途的途径。传统的灭火方法在有效应对森林火灾的同时,往往难以减轻生态危害并优化资源利用。在本研究中,专门制备了一种用于森林灭火的新型智能温度敏感水凝胶。该材料采用一锅法合成,在环境温度下表现出优异的流动性,便于应用和运输。在高温下,它会发生相变形成固体的、类似屏障的结构,这对于控制森林火灾至关重要。将环境友好型磷盐掺入壳聚糖/羟丙基甲基纤维素凝胶体系中可增强温度敏感水凝胶的形成,从而提高其结构完整性和灭火效果。形态学和热稳定性分析阐明了其出色的性能,水凝胶形成致密的碳化层,可作为防止森林火灾蔓延的坚固屏障。此外,采用流变学测试、锥形量热计测试、溶胀测试和红外热成像的综合评估揭示了温度敏感水凝胶在森林火灾预防和扑救策略中的多方面作用。