The effect of Zn-Al-hydrotalcites composited with calcium stearate and β-diketone on the thermal stability of PVC

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Abstract

A clean-route synthesis of Zn-Al-hydrotalcites (Zn-Al-LDHs) using zinc oxide and sodium aluminate solution has been developed. The as-obtained materials were characterized by X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FT-IR), and scanning electron microscopy (SEM). The effects of metal ions at different molar ratios on the performance of hydrotalcites were discussed. The results showed that the Zn-Al-hydrotalcites can be successfully synthesized at three different Zn/Al ratios of 3:1, 2:1 and 1:1. Thermal aging tests of polyvinyl chloride (PVC) mixed with Zn-Al-LDHs, calcium stearate (CaSt 2) and β-diketone were carried out in a thermal aging test box by observing the color change. The results showed that Zn-Al-LDHs can not only enhance the stability of PVC significantly due to the improved capacity of HCl-adsorption but also increase the initial stability and ensure good-initial coloring due to the presence of the Zn element. The effects of various amounts of Zn-Al-LDHs, CaSt 2 and β-diketone on the thermal stability of PVC were discussed. The optimum composition was determined to be 0.1 g Zn-Al-LDHs, 0.15 g CaSt 2 and 0.25 g β-diketone in 5 g PVC. © 2011 by the authors; licensee MDPI, Basel, Switzerland.

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Tong, M., Chen, H., Yang, Z., & Wen, R. (2011). The effect of Zn-Al-hydrotalcites composited with calcium stearate and β-diketone on the thermal stability of PVC. International Journal of Molecular Sciences, 12(3), 1756–1766. https://doi.org/10.3390/ijms12031756

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