阻燃剂
层状双氢氧化物
水滑石
煅烧
聚丙烯
碳化
烧焦
材料科学
锥形量热计
化学工程
燃烧
复合材料
化学
氢氧化物
扫描电子显微镜
催化作用
有机化学
工程类
作者
Sheng Xu,Siyu Li,Jianqi Zhang,Hong‐Yan Zeng,Kun Wu,Xian‐Yao Tian,Chao-Rong Chen,Yong Pan
标识
DOI:10.1016/j.carbpol.2020.115891
摘要
An efficient and bio-based alginate pillared hydrotalcite ([email protected]) was fabricated via calcination-reconstruction manner with sodium alginate (SA) and hydrotalcite (LDHs-C), and used as novel flame retardant for polypropylene (PP). The morphologies and combustion properties of [email protected] and its hybrid with PP composites (PP/[email protected]) had been characterized by SEM, TGA, cone calorimetry, LOI and UL-94 measurements. With 30 wt% loading, the [email protected] achieved a LOI value of 30.9 % and a UL-94 V-0 rating, whereas the LDHs-C exhibited only LOI value of 27.6 % and a UL-94 V-1 rating. The peak heat release rate, total heat release and total smoke production of PP/[email protected] were 260.8 kW m−2, 61.3 MJ m−2 and 8.2 m2, respectively, which presented declines of 69.2 %, 42.8 % and 32.2 % compared with those of Neat PP. These improvements could be attributed to the presence of the radical-trapping effect of SA, which leading to promote PP chains to participate in the carbonization process.
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