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Characterization of poly(vinyl chloride) powder produced by emulsion polymerization

机译:乳液聚合制备聚氯乙烯粉末的表征

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摘要

The effect of emulsion process formulation ingredients on the morphology, structure, and properties of polyvinyl chloride (PVC) powder has been considered in this study. PVC powder was extracted with ethanol and films were obtained by solvent casting from tetrahydrofurane. Characterization of powders, films, and ethanol extract was performed through FTIR spectroscopy, DSC, AFM, SEM, EDX analysis, methylene blue, and nitrogen adsorption. PVC powder was composed of spheres of a large particle size range from 10 nm to 20 μm as shown by SEM. The specific surface area of the PVC powder was determined as 16 and 12 m 2 g-1 from methylene blue adsorption at 25 °C and from N2 adsorption at -196 °C, respectively. AFM indicated the surface roughness of the films obtained by pressing the particles was 25.9 nm. Density of PVC powder was determined by helium pycnometry as 1.39 g cm -3. FTIR spectroscopy indicated that it contained carbonyl and carboxylate groups belonging to additives such as surface active agents, plasticizers, and antioxidants used in production of PVC. These additives were 1.6% in mass of PVC as determined by ethanol extraction. EDX analysis showed PVC particles surfaces were coated with carbon-rich materials. The coatings had plasticizer effect since, glass transition temperature was lower than 25 °C for PVC powder and it was 80 °C for ethanol extracted powders as found by using differential scanning calorimetry. These additives from polymerization process made PVC powder more thermally stable as understood from Metrom PVC thermomat tests as well. © 2010 Akadémiai Kiadó, Budapest, Hungary.
机译:这项研究已经考虑了乳液加工配方成分对聚氯乙烯(PVC)粉末的形态,结构和性能的影响。用乙醇萃取PVC粉末,并从四氢呋喃中流延溶剂制得薄膜。通过FTIR光谱,DSC,AFM,SEM,EDX分析,亚甲基蓝和氮吸附对粉末,薄膜和乙醇提取物进行表征。如SEM所示,PVC粉末由10nm至20μm的大粒径范围的球组成。根据在25℃下的亚甲基蓝吸附和在-196℃下的N2吸附,将PVC粉末的比表面积分别确定为16和12m 2 g-1。 AFM表明,通过压制颗粒而获得的膜的表面粗糙度为25.9nm。通过氦比重瓶法测定的PVC粉末的密度为1.39g cm -3。 FTIR光谱表明,其含有属于添加剂的羰基和羧酸酯基团,例如用于生产PVC的表面活性剂,增塑剂和抗氧化剂。通过乙醇萃取测定,这些添加剂为PVC质量的1.6%。 EDX分析表明PVC颗粒表面涂有富碳材料。涂层具有增塑剂作用,因为通过差示扫描量热法发现,PVC粉末的玻璃化转变温度低于25°C,乙醇提取的粉末的玻璃化转变温度低于80°C。从Metrom PVC Thermomat测试中也可以看出,这些聚合过程中的添加剂使PVC粉末具有更高的热稳定性。 ©2010AkadémiaiKiadó,匈牙利布达佩斯。

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