文章摘要
徐仁奎,赵文豪,任亚平,黄能坤,谈继淮,朱新宝.缩醛绿色制备工艺及其在包装领域的应用[J].包装工程,2024,45(11):44-54.
XU Renkui,ZHAO Wenhao,REN Yaping,HUANG Nengkun,TAN Jihuai,ZHU Xinbao.Eco-friendly Preparation Process of Aldehyde and Its Application in Packaging Material[J].Packaging Engineering,2024,45(11):44-54.
缩醛绿色制备工艺及其在包装领域的应用
Eco-friendly Preparation Process of Aldehyde and Its Application in Packaging Material
投稿时间:2024-02-01  
DOI:10.19554/j.cnki.1001-3563.2024.11.005
中文关键词: 缩醛  合成工艺  固体酸催化剂  包装材料
英文关键词: aldehyde  synthesis technology  heterogeneous catalyst  packaging material
基金项目:
作者单位
徐仁奎 南京林业大学 化学工程学院南京 210037 
赵文豪 南京林业大学 化学工程学院南京 210037 
任亚平 南京林业大学 化学工程学院南京 210037 
黄能坤 南京林业大学 化学工程学院南京 210037 
谈继淮 南京林业大学 化学工程学院南京 210037 
朱新宝 南京林业大学 化学工程学院南京 210037 
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中文摘要:
      目的 归纳分析不同类型固体酸制备缩醛化合物的方法,旨在为绿色合成工艺在包装材料领域的广泛应用提供参考。方法 通过梳理催化合成缩醛化合物的固体酸种类,对比分析不同催化剂的合成机理及其利弊,包括负载型杂多酸、金属氧化物、SO42/MxOy固体超强酸和负载型离子液体等,总结近年来国内外关于缩醛化合物在包装材料领域应用研究的趋势。结论 大量相关文献证明了利用缩醛化合物制备包装材料的可行性,采用固体酸制备缩醛的方法符合绿色可持续发展理念,为缩醛绿色化和可控制备工艺开辟了新途径,有力推动了缩醛衍生产品在包装材料领域的大规模应用。
英文摘要:
      The work aims to collate and analyze the preparation of aldehyde compounds with various types of solid acids, so as to provide a reference basis for their green synthesis processes and extensive applications in the field of packaging materials. The types of solid acids used in the catalytic synthesis of aldehyde compounds were sorted out and the synthesis mechanisms and pros and cons of different catalysts were analyzed comparatively, including supported heteropoly acids, metal oxides, SO42−/MxOy super-strong solid acids, and supported ionic liquids. The recent trends in the research and development of aldehyde compounds in the field of packaging materials in China and abroad were summarized. Loss of relevant literature confirms the feasibility of using aldehyde compounds to prepare packaging materials, and the method of synthesizing aldehydes using solid acids aligns with the principles of green and sustainable development. This opens up new pathways for the green and controllable preparation process of aldehydes, thereby significantly advancing the large-scale application of aldehyde derivative products in packaging materials.
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