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Fabrication of Green Lignin-based Flame Retardants for Enhancing the Thermal and Fire Retardancy Properties of Polypropylene/Wood Composites

机译:绿色木质素基阻燃剂的制备,用于增强聚丙烯/木材复合材料的耐热性和阻燃性

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Despite growing extensive applications, until now the poor thermal stability and flame retardancy properties of wood-plastic composites (WPC) remain effectively unsolved. Meanwhile, industrial lignin has emerged as a potential component for polymer composites due to many advantages including abundance, rich reactive functional groups, high carbon content and tailored capability for chemical transformations. Herein, we have fabricated one biobased flame retardant based on industrial lignin chemically grafted with phosphorus, nitrogen and copper elements, as the functional additive for the WPC. Compared with unmodified lignin (O-lignin), functionalized lignin (F-lignin) is more effective to improve the thermal stability and flame retardancy of WPC because of presence of the flame retardancy elements (P and N) and the catalytic effect of Cu~(2+) on the char-formation. The presence of F-lignin not only reduces the heat release rate, total heat release and slows down the combustion process but also decreases total smoke production rate during combustion. The char residue shows that it is the increased char residues and its continuous compact char formed during burning that are responsible for enhanced flame retardancy properties. This work suggests a novel green strategy for improving flame retardancy performance of WPC and promoting the utilization of industrial lignin.
机译:尽管得到了广泛的应用,但迄今为止,木塑复合材料(WPC)的较差的热稳定性和阻燃性仍未得到有效解决。同时,由于木质素的丰富,丰富的反应性官能团,高碳含量和量身定制的化学转化能力等诸多优势,其已成为聚合物复合材料的潜在组分。在这里,我们已经制备了一种基于工业木质素的生物基阻燃剂,该木质素化学接枝了磷,氮和铜元素,作为WPC的功能添加剂。与未改性的木质素(O-木质素)相比,官能化的木质素(F-木质素)由于具有阻燃元素(P和N)以及Cu〜的催化作用,因此更有效地提高了WPC的热稳定性和阻燃性。 (2+)在字符格式上。 F-木质素的存在不仅降低了放热率,总放热并减慢了燃烧过程,而且降低了燃烧过程中的总烟气产生率。炭渣表明,增加的炭渣及其在燃烧过程中形成的连续致密炭是增强阻燃性能的原因。这项工作提出了一种新的绿色策略,可以提高WPC的阻燃性能并促进工业木质素的利用。

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