China Plastics ›› 2025, Vol. 39 ›› Issue (2): 77-81.DOI: 10.19491/j.issn.1001-9278.2025.02.014

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Effect of sodium⁃A molecular sieve on heat stability of PVC

YANG Xiaochun1,2,3(), LIU Huiyuan1, ZHANG Qing1,2,3, YU Jing1,2,4   

  1. 1.Department of Chemistry,Tangshan Normal University,Tangshan 063000,China
    2.Hebei Key Laboratory of Degradable Polymers,Tangshan 063000,China
    3.Tangshan Silicone Key Laboratory,Tangshan 063000,China
    4.Tangshan Key Laboratory of Green Specialty Chemicals,Tangshan 063000,China
  • Received:2024-04-29 Online:2025-02-26 Published:2025-02-27

Abstract:

The thermal stability of poly(vinyl chloride) (PVC) could be improved by a sodium⁃A molecular sieve according to the Congo red experiment. The static thermal stability time of the modified PVC was increased up to 72 min, which was better than that of pure PVC (7 min). The sodium⁃A molecular sieve was compounded with β⁃diketone, pentaerythritol, phenyl diisooctyl phosphate and epoxidized soybean oil to obtain a compounding heat stabilizer. The static and dynamic thermal stability of the PVC stabilized with this compounding heat stabilizer was measured by using Congo red test paper, thermal aging oven, and torque rheometry methods, and its thermal weight loss was analyzed by thermogravimetry. The results indicated that the heat⁃stabilized PVC achieved the best thermal stabilization effect at a mass ratio of sodium⁃A molecular sieve to β⁃diketone of 1/1, exhibiting a static thermal stabilization time of 84 min, a dynamic thermal stabilization time of 1 137 s, a shortest plasticization time of 104 s, and a minimum equilibrium torque of 37.94 N·m.

Key words: poly(vinyl chloride), sodium?A molecular sieve, heat stabilizer

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