碱磺胺嘧啶钕作为PVC热稳定剂的应用及机理研究

F. Ye, K. Guo, Sha Feng Lu, Xiao Dong Wang, Guoyan Shen, Zhibin Shang, Bobin Li, Qiu Feng Ye
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引用次数: 0

摘要

以磺胺嘧啶和六水硝酸钕为原料,在碱性条件下制备了碱磺胺嘧啶钕(NdSD),并将其用作PVC的热稳定剂。通过元素分析和红外光谱对NdSD的结构进行了表征。结果表明,NdSD的分子式为Nd (SD)2·OH·H2O。用热重法对NdSD在25 ~ 800℃的热降解过程进行了表征。结果表明,NdSD的分解温度在200℃以上,适合作为PVC热稳定剂。用静态刚果红法对NdSD对PVC的热稳定时间进行了表征。结果表明:加入NdSD后,PVC的热稳定时间由2.7min增加到23.2 min;采用烘箱变色法对NdSD对PVC的变色效果进行了表征。结果表明,添加NdSD的PVC样品的热稳定效果优于其他热稳定剂。采用硝酸银溶液法和傅里叶变换红外光谱法,证明了磺胺嘧啶钕能吸附HCl并与HCl反应,并进一步提出了NdSD稳定PVC的可能机理。
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Study on Application and Mechanism of Alkali Sulfadiazine Neodymium as PVC Heat Stabilizer
In this paper, the alkali sulfadiazine neodymium (NdSD) was prepared from sulfadiazine and neodymium nitrate hexahydrate under alkaline conditions, and used as a heat stabilizer on PVC. The structure of NdSD was characterized by elemental analysis and infrared spectrum. The results show that the molecular formula of NdSD is Nd (SD)2·OH·H2O. The thermal degradation process of NdSD at 25-800°C was characterized by thermogravimetric analysis. The results show that the decomposition temperature of NdSD is higher than 200°C, which is suitable for PVC thermal stabilizer. The thermal stabilizer time of PVC by NdSD was characterized by static Congo red method. The results showed that the thermal stabilizer time of PVC increased from 2.7min to 23.2 min after adding NdSD. The discoloration effect of NdSD on PVC was characterized by oven discoloration method. The results indicate that PVC samples added with NdSD show better effect than other heat stabilizers. By means of silver nitrate solution method and Fourier transform infrared spectroscopy, it was proved that sulfadiazine neodymium can absorb and react with HCl, and further proposed a possible mechanism of NdSD stabilization of PVC.
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