徐铭梓,黄丽婕,张晓晓,黄崇杏,柴坤刚,梁东武,宗梦婷.生物质纤维基包装复合材料的研究现状[J].包装工程,2018,39(9):16-23. XU Ming-zi,HUANG Li-jie,ZHANG Xiao-xiao,HUANG Chong-xing,CHAI Kun-gang,LIANG Dong-wu,ZONG Meng-ting.Research Status of Biomass Fiber-based Packaging Composites[J].Packaging Engineering,2018,39(9):16-23. |
生物质纤维基包装复合材料的研究现状 |
Research Status of Biomass Fiber-based Packaging Composites |
投稿时间:2017-11-30 修订日期:2018-05-10 |
DOI:10.19554/j.cnki.1001-3563.2018.09.004 |
中文关键词: 生物质 纤维基 复合材料 包装材料 |
英文关键词: biomass fiber-based composite packaging materials |
基金项目:广西清洁化制浆造纸与污染控制重点实验室开放基金(ZR201602);制浆造纸科学与技术教育部/山东省重点实验室基金(KF201628) |
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中文摘要: |
目的 综述纤维基复合材料在包装中的应用和研究现状。方法 介绍国内外生物质纤维基复合材料在发泡型材料、薄膜、板材等不同种类包装材料中的应用现状,分别总结各类包装材料使用的基材及制备工艺,比较不同纤维基复合材料的性能差异,指出复合材料在制备工艺及性能上的不足,并展望纤维基包装复合材料的发展前景。结果 纤维素具有天然的化学结构,使纤维基材料具有良好的力学性能、阻隔性、可降解性,较好地应用在不同包装材料中。结论 纤维基复合材料具有性能优良、可生物降解、经济环保等特点,在包装领域具有较大发展潜力,在原料的选择、制备工艺绿色化及性能的可控性等方面还有较大的研究空间。 |
英文摘要: |
The work aims to review the application and research status of fiber-based composites in packaging. The application status of biomass fiber-based composites in different types of packaging materials (such as foamed materials, films and plates) at home and abroad was introduced. The substrates and preparation technology of various packaging materials were respectively summarized. The differences in the properties of different fiber-based composites were compared. The deficiencies in the preparation technology and properties of the composites were pointed out. The development of the fiber-based packaging composites was also prospected. The natural chemical structure of cellulose enabled the fiber-base materials to have good mechanical property, barrier property and biodegradability, so that it had better application in different packaging materials. Fiber-based composite materials featured by excellent performance, biodegradability, economical efficiency and environmental protection have great development potential in the field of packaging. There is still more room for the research on the selection of raw materials, completely green preparation technology and performance controllability. |
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