Sanchez Olivares Guadalupe, Battig Alexander, Goller Sebastian M, Rockel Daniel, González Victor Ramírez, Schartel Bernhard
CIATEC A.C., Omega 201, Colonia Industrial Delta, Léon, Gto37545, Mexico.
Bundesanstalt für Materialforschung und -prüfung (BAM), Unter den Eichen 87, 12205Berlin, Germany.
ACS Omega. 2022 Nov 22;7(48):44156-44169. doi: 10.1021/acsomega.2c05633. eCollection 2022 Dec 6.
Leather is considered a luxury good when used in seating and upholstery. To improve safety, flame retardancy in leather is usually achieved through various finishing processes such as spray or roller coating. These treatments require processing steps that cost time and are labor-intensive. One avenue to achieving flame retardancy in leather is to add flame retardants during the tanning process. However, the influence on flame retardancy exerted by specific intumescent additives specifically added during leather tanning has yet to be investigated. This work explores the roles played by intumescent additive compounds in flame retarding leather when they are added during tanning instead of applied as a coating. Via a systematic investigation of various compound mixtures, the flame retardant effects in the condensed and the gas phases are elucidated. The results show a strong impact of melamine in the gas phase and of polyphosphates in the condensed phase. Their impact was quantified in fire and smoke analysis, showing a 14% reduction in the peak of heat release rate, strongly reduced burning lengths, and a 20% reduction in total smoke release compared to nontreated leather. These results illuminate the key role played by specific compounds in the flame retardancy of leather, particularly when they are added specifically during the tanning process instead of being applied as a coating. This method has great potential to reduce processing steps, lower costs, and improve material safety.
皮革用于座椅和内饰时被视为奢侈品。为提高安全性,皮革的阻燃性通常通过喷雾或辊涂等各种后整理工艺来实现。这些处理需要耗费时间且劳动强度大的加工步骤。在皮革鞣制过程中添加阻燃剂是实现皮革阻燃性的一条途径。然而,在皮革鞣制过程中专门添加的特定膨胀型添加剂对阻燃性的影响尚未得到研究。这项工作探讨了膨胀型添加剂化合物在鞣制过程中添加而非作为涂层应用时对皮革阻燃所起的作用。通过对各种化合物混合物的系统研究,阐明了凝聚相和气相中的阻燃效果。结果表明三聚氰胺在气相中有强烈影响,聚磷酸盐在凝聚相中有强烈影响。它们的影响在火灾和烟雾分析中得到量化,与未处理的皮革相比,热释放速率峰值降低了14%,燃烧长度大幅缩短,总烟雾释放量降低了20%。这些结果阐明了特定化合物在皮革阻燃性中所起的关键作用,尤其是在鞣制过程中专门添加而非作为涂层应用时。这种方法在减少加工步骤、降低成本和提高材料安全性方面具有巨大潜力。