绿色低碳

涂料用非粮生物基树脂的研究进展

  • 廖 欢 ,
  • 李光玉 ,
  • 凌泽介 ,
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  • 1. 广西产研院新型功能材料研究所有限公司,南宁530000;

    2. 桂林电子科技大学材料科学与工程学院,广西桂林541004;

    3. 广西零到壹科技有限公司,南宁530000;

    4. 广西广投天然气管网有限公司,南宁530225
廖欢(1981—)男,硕士,正高级工程师,从事防腐材料、无机新材料的研究与应用开发。 
张玉龙,邮箱: 10879128@qq.com。

网络出版日期: 2025-08-25

Research Progress on Non-food Bio-based Resins for Coatings

  • LIAO Huan ,
  • LI Guangyu ,
  • LING Zejie ,
  • et al
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  • 1. GIIT Institute of New Functional Materials Co., Ltd., Nanning 530000,China;

    2. School of Materials Science and Engineering,Guilin University of Electronic Technology,Guilin, Guangxi 541004,China;

    3. Guangxi Zero to One Technology Co., Ltd., Nanning 530000,China;

    4. Guangxi Guangtou Natural Gas Pipeline Network Co., Ltd., Nanning 530225,China

Online published: 2025-08-25

摘要

【目的 /意义】非粮生物质主要来源于园林植物(如木材、纤维素等),具有碳排放量少、来源广、绿色环保等优点,利用这类生物质生产树脂,不仅能够减少对有限石油资源的依赖,还能避免粮食类生物质对粮食的消耗问题。【分析 /评论 /进展】本文重点介绍了涂料用非粮生物基树脂当前的研究进展,并且提出了涂料用非粮生物基树脂目前存在的生产成本高、性能限制、稳定性差、不易大规模生产和质量一致性差等问题。【结论 /展望】涂料用非粮生物基树脂的研究应关注新型生物质原料开发、树脂 /纳米复合材料性能定制以及与其他树脂共混或化学改性等性能提升方法。

本文引用格式

廖 欢 , 李光玉 , 凌泽介 , . 涂料用非粮生物基树脂的研究进展[J]. 涂料工业, 2025 , 55(11) : 51 -55 . DOI: 10.12020/j.issn.0253-4312.2025-104

Abstract

[Objective/Significance] Non-food biomass primarily comes from landscape plants(such as wood,cellulose,etc.),and it boasts advantages including low carbon emissions,a wide range of sources,and environmental friendliness. Utilizing this type of biomass to produce resins can not onlyreduce reliance on limited petroleum resources but also avoid the issue of grain consumption associatedwith food-based biomass.[Analysis/Discussion/Progress]This paper focuses on the current researchprogress of non-food biobased resins for coatings and raises the existing issues of high production costs, performance limitations and poor stability difficulty in large-scale production,and inconsistent quality.[Conclusion/Prospect]Research on non-food bio-based resins for coatings should focus on specific aspects,including the development of new biomass raw materials,performance tailoring of resin/nanocomposite materials,and methods to enhance performance such as blending with other resins or chemical modification. 
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