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多功能植物油基增塑剂制备及增塑PVC研究进展
引用本文:王梓雯,张彤彤,黄能坤,朱新宝,谈继淮.多功能植物油基增塑剂制备及增塑PVC研究进展[J].精细化工,2023,40(12).
作者姓名:王梓雯  张彤彤  黄能坤  朱新宝  谈继淮
作者单位:南京林业大学 化学工程学院,阜阳师范大学化学与材料工程学院,南京林业大学 化学工程学院,南京林业大学 化学工程学院,南京林业大学 化学工程学院
基金项目:国家自然科学基金青年基金(32101467);江苏省自然科学基金青年项目(BK20210619)
摘    要:植物油基增塑剂因具有原料来源广、结构可调、增塑性能优良、无毒和可生物降解等优点,被认为是最具应用前景的生物基环保增塑剂。然而,植物油基增塑剂结构中长链烷基比重过高,导致其与PVC树脂相容性较差,通常作为辅助增塑剂使用,应用价值未得到有力彰显。近年来,国内外学者对植物油基增塑结构进行化学改性,开发了系列多功能植物油基增塑剂(如增容、耐热、阻燃、耐迁移等),实现了植物油基增塑剂的“提质增效”。本文从植物油分子结构设计出发,通过分子模拟、微观和宏观分析手段相结合的方式对现有文献进行归纳、分析和总结,建立了增塑剂结构和增塑后PVC制品性能的“构效”关系,旨在为高性能、多功能植物油基增塑剂的结构设计和工业化生产提供理论依据。

关 键 词:植物油  增塑剂  分子结构  多功能  PVC
收稿时间:2023/9/9 0:00:00
修稿时间:2023/10/23 0:00:00

Research progress in preparation and application of multifunctional vegetable oil-based plasticizers in PVC
WANG Ziwen,ZHANG Tongtong,HUANG Nengkun,ZHU Xinbao and TAN Jihuai.Research progress in preparation and application of multifunctional vegetable oil-based plasticizers in PVC[J].Fine Chemicals,2023,40(12).
Authors:WANG Ziwen  ZHANG Tongtong  HUANG Nengkun  ZHU Xinbao and TAN Jihuai
Affiliation:College of Chemical Engineering,Nanjing Forestry University,School of Chemistry and Material Engineering,Fuyang Normal University,College of Chemical Engineering,Nanjing Forestry University,College of Chemical Engineering,Nanjing Forestry University,College of Chemical Engineering,Nanjing Forestry University
Abstract:Vegetable oil-based plasticizers are regarded as the most promising bio-based environmental plasticizers owing to the their wide source of raw materials, adjustable structure, excellent plasticity, non-toxicity and biodegradability. However, the high proportion of long chain alkyl in the structure of vegetable oil-based plasticizer results in poor compatibility with PVC resin, which is typically used as an auxiliary plasticizer, and the application value has not been fully incarnated. In recent years, domestic and foreign scholars have chemically modified the vegetable oil-based plasticizer structure and developed a series of multifunctional vegetable oil-based plasticizers (such as solubilizationt, heat tolerance, flame retardant, suppressed migration, etc.) to achieve the "improvement of quality and efficiency" of vegetable oil-based plasticizer. In this paper, beginning with the molecular structure design of vegetable oil, the existing literature was compiled, analyzed and summarized through the combination of molecular simulation, micro and macro analysis methods, and the "structure-activity" relationship between the structure of plasticizer and the performance of plasticized PVC products was established, aiming to provide a theoretical basis for the structural design and industrial production of high-performance and multi-functional vegetable oil-based plasticizer.
Keywords:Vegetable oil  plasticizers  molecular structure  multifunctional  PVC
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