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首页> 外文期刊>Polymers & Polymer Composites >Synthesis of LDHs using red mud and bittern and its influence on the flame retardant properties of EVA/LDHs composites
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Synthesis of LDHs using red mud and bittern and its influence on the flame retardant properties of EVA/LDHs composites

机译:红泥和沥青的合成LDHS及其对EVA / LDHS复合材料阻燃性能的影响

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摘要

Red mud (RM) is one kind of basic solid waste produced from aluminum industry. RM is usually stored by the method of land stockpiling, which has caused serious environmental and safety issues. Bittern, a by-product of salt manufacture, is abundant in China. But the utilization rate is low, less than 20%. The disposal of waste bittern has become a challenge that attracts much attention in water industry. In this article, Mg/Al/Fe layered double hydroxides (Mg/Al/Fe-LDHs) were synthesized using the above two wastes by a coprecipitation method and characterized by X-ray diffraction (XRD) and scanning electron microscopy. The XRD results showed that LDHs were successfully synthesized. Then, the flame-retardant properties and thermal properties of Mg/Al/Fe-LDHs in ethylene vinyl acetate (EVA)/LDHs composites had been tested by cone calorimeter test (CCT), limiting oxygen index (LOI), smoke density test (SDT), and thermogravimetry–Fourier transform infrared spectrometry (TG-FTIR). The CCT results showed that the heat release rate (HRR) of the EVA/LDHs composites significantly decreased in comparison with that of pure EVA, and EVA2 sample showed the lowest peak value of HRR value of 204.59 kW m~(?2). The LOI results showed that EVA3 had a highest LOI value of 28.3% in all the samples. The SDT test indicated that Mg/Al/Fe-LDHs were beneficial to the smoke suppression performance of EVA composites. TG-IR results showed that EVA/LDHs composites had better thermal stability than EVA.
机译:红泥(RM)是铝业生产的一种基本固体废物。 RM通常由土地储存方法存储,这导致了严重的环境和安全问题。卤水是盐制造的副产品,在中国丰富。但利用率低,小于20%。废物托尼特的处置已成为一种挑战,吸引了水业中的大量关注。在本文中,通过共沉淀法使用上述两次废物合成Mg / Al / Fe层双氢氧化物(Mg / Al / Fe-LDH),并通过X射线衍射(XRD)和扫描电子显微镜。 XRD结果表明,LDH已成功合成。然后,通过锥形量热仪测试(CCT)测试了Mg / Al / Fe-LDHs的阻燃性和热性质,限制氧指数(LOI),烟雾密度测试( SDT)和热重率 - 傅里叶变换红外光谱(TG-FTIR)。 CCT结果表明,与纯EVA的热释放速率(HRR)与纯EVA的热释放速率(HRR)显着降低,EVA2样品显示HRR值的最低峰值204.59 kW m〜(?2)。 LOI结果表明,EVA3在所有样品中的最高距离值为28.3%。 SDT测试表明Mg / Al / Fe-LDHs有利于EVA复合材料的烟雾抑制性能。 TG-IR结果表明,EVA / LDHS复合材料比EVA具有更好的热稳定性。

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