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首页> 外文期刊>Nordic Pulp & Paper Research Journal >Improving fire retardancy of cellulosic thermal insulating materials by coating with bio-based fire retardants
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Improving fire retardancy of cellulosic thermal insulating materials by coating with bio-based fire retardants

机译:用生物基阻燃剂涂层改善纤维素绝热材料的阻燃性

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摘要

Sustainable thermal insulating materials produced from cellulosic fibers provide a viable alternative to plastic insulation foams. Industrially available, abundant, and inexpensive mechanical pulp fiber and recycled textile fiber provide potential raw materials to produce thermal insulating materials. To improve the fire retardancy of low-density thermal insulating materials produced from recycled cotton denim and mechanical pulp fibers, bio-based fire retardants, such as sulfonated kraft lignin, kraft lignin, and nanoclays, were coated onto sustainable insulating material surfaces to enhance their fire retardancy. Microfibrillated cellulose was used as a bio-based binder in the coating formula to disperse and bond the fire-retardant particles to the underlying thermal insulating materials. The flammability of the coated thermal insulating materials was tested using a single-flame source test and cone calorimetry. The results showed that sulfonated kraft lignin-coated cellulosic thermal insulating materials had a better fire retardancy compared with that for kraft lignin with a coating weight of 0.8 kg/m(2). Nanoclay-coated samples had the best fire retardancy and did not ignite under a heat flux of 25 kW/m(2), as shown by cone calorimetry and single-flame source tests, respectively. These cost-efficient and bio-based fire retardants have broad applications for improving fire retardancy of sustainable thermal insulating materials.
机译:由纤维素纤维制备的可持续保极绝缘材料为塑料绝缘泡沫提供了可行的替代品。工业上可用,丰富,廉价的机械纸浆纤维和再生纺织纤维提供潜在的原料,以产生隔热材料。为了改善由再生的棉牛仔布和机械纸浆纤维生产的低密度绝热材料的阻燃性,涂覆磺化牛皮蛋白,牛皮蛋白和纳米粘土等生物基阻燃剂涂覆到可持续的绝缘材料表面上以增强它们阻燃。微纤维纤维素在涂料式中用作生物基粘合剂,以分散和粘合阻燃颗粒到下面的绝热材料。使用单火源试验和锥形量热法测试涂覆的隔热材料的可燃性。结果表明,与涂料重量为0.8kg / m(2)的牛皮纸,磺化牛皮蛋白涂层纤维素涂覆的纤维素绝热材料具有更好的阻燃性。纳米粘土涂覆的样品具有最佳的阻燃性,并且在25kW / m(2)的热通量下没有点燃,如锥形量热法和单焰源测试所示。这些成本效益和生物基阻燃剂具有广泛的应用,可改善可持续的隔热材料的吸引力。

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