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基于粉煤灰的层状双氢氧化物的合成及其对EVA/LDHs复合材料阻燃性能的影响。

Synthesis of LDHs Based on Fly-Ash and Its Influence on the Flame Retardant Properties of EVA/LDHs Composites.

作者信息

Li Shaoquan, Zhu Xiao-Dong, Li Long, Qian Yi, Guo Qingjie, Ma Jingjing

机构信息

School of Chemical Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.

School of Materials Science and Engineering, Guangdong University of Petrochemical Technology, Maoming 525000, China.

出版信息

Polymers (Basel). 2022 Jun 23;14(13):2549. doi: 10.3390/polym14132549.

Abstract

Fly-ash, a kind of large solid waste in energy industry, has brought about serious environmental problems and safety consequences. No efficient way has been found yet to deal with it worldwide. The focus of contemporary research are mainly placed on the reuse of aluminum and iron, but with a low utilization rate less than 30%. Having destroyed the ecological balance, fly-ash has become a challenge drawing the attention of people in the solid waste industry. In this paper, a smoke-suppressant and flame-retardant layered double hydroxide (LDH) featuring Mg-Al-Fe ternary was successfully synthesized by fly-ash after coprecipitation. XRD results presented LDHs successful synthesis. Then, exploration on the flame retarding properties of LDHs in composites composed by ethylene vinyl acetate (hereinafter referred to as EVA)/LDHs was carried out by UL-94, limiting oxygen index (LOI), cone calorimeter (CCT), smoke density (SDT), and thermogravimetry-Fourier transform infrared spectrometry (TG-IR) tests. UL testing results showed that most of the samples had a vertical combustion rating of V-0. LOI results showed the highest LOI value of ELDH-1, amounting to as high as 28.5 ± 0.1 while CCT results showed that the rate of heat releasing, mass loss, and smoke production of composite materials were decreased significantly compared with corresponding data of pure EVA. The ELDH-1 sample displayed the lowest peaks of heat release rate (pHRR) value of 178.4 ± 12.8 Kw·m and the lowest total heat release (THR) value of 114.5 ± 0.35 KJ·m. Then, SDT indicated that under respective ignition and non-ignition conditions, all composite materials present a good smoke suppression performance. Additionally, digital photographs after CCT demonstrated that EVA/LDHs composites could enhance the formation of compact charred layers, and prevent their splitting, which effectively prevent the underlying materials from burning. Finally, TG-IR findings showed that compared with pure EVA, EVA/LDHs composites also achieved a higher-level thermal stability.

摘要

粉煤灰是能源工业中的一种大宗固体废弃物,带来了严重的环境问题和安全隐患。目前全球尚未找到有效的处理方法。当代研究的重点主要放在铝和铁的再利用上,但利用率较低,不到30%。粉煤灰破坏了生态平衡,已成为固体废弃物行业中引起人们关注的一个挑战。本文通过共沉淀法利用粉煤灰成功合成了具有Mg-Al-Fe三元结构的抑烟阻燃层状双氢氧化物(LDH)。X射线衍射(XRD)结果表明LDH合成成功。然后,通过UL-94、极限氧指数(LOI)、锥形量热仪(CCT)、烟密度(SDT)以及热重-傅里叶变换红外光谱(TG-IR)测试,对LDH在乙烯-醋酸乙烯酯(以下简称EVA)/LDH复合材料中的阻燃性能进行了探索。UL测试结果表明,大多数样品的垂直燃烧等级为V-0。LOI结果显示ELDH-1的LOI值最高,高达28.5±0.1,而CCT结果表明,与纯EVA的相应数据相比,复合材料的热释放速率、质量损失和产烟量均显著降低。ELDH-1样品的热释放速率峰值(pHRR)最低,为178.4±12.8 Kw·m,总热释放(THR)值最低,为114.5±0.35 KJ·m。然后,SDT表明,在各自的点火和非点火条件下,所有复合材料都具有良好的抑烟性能。此外,CCT后的数码照片表明,EVA/LDH复合材料可以增强致密炭层的形成,并防止其破裂,从而有效地防止下层材料燃烧。最后,TG-IR结果表明,与纯EVA相比,EVA/LDH复合材料也具有更高的热稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e3aa/9269524/0be5443f952b/polymers-14-02549-g001.jpg

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