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锰钴氧化物/石墨烯对降低聚对苯二甲酸丁二醇酯火灾危害的影响。

The influence of manganese-cobalt oxide/graphene on reducing fire hazards of poly(butylene terephthalate).

机构信息

State Key Laboratory of Fire Science, University of Science and Technology of China, 96 Jinzhai Road, Hefei, Anhui 230026, PR China.

State Key Laboratory of Fire Science, University of Science and Technology of China, 96 Jinzhai Road, Hefei, Anhui 230026, PR China; USTC-CityU Joint Advanced Research Centre, Suzhou Key Laboratory of Urban Public Safety, Suzhou Institute for Advanced Study, University of Science and Technology of China, 166 Ren'ai Road, Suzhou, Jiangsu 215123, PR China.

出版信息

J Hazard Mater. 2014 Aug 15;278:391-400. doi: 10.1016/j.jhazmat.2014.05.072. Epub 2014 Jun 2.

Abstract

By means of direct nucleation and growth on the surface of graphene and element doping of cobalt oxide (Co3O4) nano-particles, manganese-cobalt oxide/graphene hybrids (MnCo2O4-GNS) were synthesized to reduce fire hazards of poly(butylene terephthalate) (PBT). The structure, elemental composition and morphology of the obtained hybrids were surveyed by X-ray diffraction, X-ray photoelectron spectrometer and transmission electron microscopy, respectively. Thermogravimetric analysis was applied to simulate and study the influence of MnCo2O4-GNS hybrids on thermal degradation of PBT during combustion. The fire hazards of PBT and its composites were assessed by the cone calorimeter. The cone test results had showed that peak HRR and SPR values of MnCo2O4-GNS/PBT composites were lower than that of pure PBT and Co3O4-GNS/PBT composites. Furthermore, the incorporation of MnCo2O4-GNS hybrids gave rise to apparent decrease of pyrolysis products containing aromatic compounds, carbonyl compounds, carbon monoxide and carbon dioxide, attributed to combined impact of physical barrier for graphene and cat O4 for organic volatiles and carbon monoxide.

摘要

通过在石墨烯表面的直接成核和生长以及钴氧化物(Co3O4)纳米粒子的元素掺杂,合成了锰钴氧化物/石墨烯杂化物(MnCo2O4-GNS),以降低聚对苯二甲酸丁二醇酯(PBT)的火灾风险。通过 X 射线衍射、X 射线光电子能谱和透射电子显微镜分别对所获得的杂化物的结构、元素组成和形态进行了研究。热重分析用于模拟和研究 MnCo2O4-GNS 杂化物对燃烧过程中 PBT 热降解的影响。通过锥形量热计评估了 PBT 及其复合材料的火灾风险。锥形测试结果表明,MnCo2O4-GNS/PBT 复合材料的峰值 HRR 和 SPR 值低于纯 PBT 和 Co3O4-GNS/PBT 复合材料。此外,MnCo2O4-GNS 杂化物的加入导致含有芳香族化合物、羰基化合物、一氧化碳和二氧化碳的热解产物明显减少,这归因于石墨烯的物理阻隔和有机挥发物和一氧化碳的 cat O4 的综合影响。

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