纳米纤维素由于其生物可降解性、低密度、高机械性能和可再生性而受到广泛关注。本文主要介绍了由木材或农业/林业剩余物生产的纳米纤维素的分类及制备方法,包括制备纤维素纳米晶体的无机酸水解法和酶水解法以及有机酸水解法、固体酸水...纳米纤维素由于其生物可降解性、低密度、高机械性能和可再生性而受到广泛关注。本文主要介绍了由木材或农业/林业剩余物生产的纳米纤维素的分类及制备方法,包括制备纤维素纳米晶体的无机酸水解法和酶水解法以及有机酸水解法、固体酸水解法、离子液体法、低共熔溶剂法和美国高附加值制浆法(American value added pulping,AVAP)等新型制备方法,同时介绍了制备纤维素纳米纤丝常用的预处理法和后续机械处理法,其中预处理法主要包括氧化、酶、有机酸、高碘酸盐氧化、低共熔溶剂、离子液体和溶剂辅助等多种预处理手段。最后分析了纳米纤维素的制备方法中亟待解决的问题,并展望了纳米纤维素的广阔应用前景。展开更多
Nanocellulose is a biodegradable, renewable, nonmeltable polymeric material that is insoluble in most solvents due to hydrogen bonding and crystallinity. Nanocellulose has attracted considerable attention in recent de...Nanocellulose is a biodegradable, renewable, nonmeltable polymeric material that is insoluble in most solvents due to hydrogen bonding and crystallinity. Nanocellulose has attracted considerable attention in recent decades owing to its environmental friendliness, wide availability, good biocompatibility, high crystallinity, and high Young's modulus. This review presents the recent achievements in preparation and applications of nanocellulose, including a discussion of the advantages and disadvantages of various preparation methods and a summary of the applications of nanocellulose in composite materials research. Finally, we examine the mounting evidence of more widespread potential applications of nanocellulose.展开更多
Nanocellulose composites combine the advantages of nanocellulose and composites. Recently, nanocellulose composites have been received more attentions due to their improved properties and promising broad applications....Nanocellulose composites combine the advantages of nanocellulose and composites. Recently, nanocellulose composites have been received more attentions due to their improved properties and promising broad applications. In the past, rapid progress has been made in the synthesis, properties, and mechanism of nanocellulose composites and potential applications were reported. There are a few reports on the increasing applications of nanocellulose composites with focus on the biomedical field, environmental field, electrode and sensor applications. In this article, the recent development of nanocellulose composites was reviewed via some typical examples. In addition to the synthesis methods, improved properties and potential applications were discussed. The problems and future applications of nanocellulose composites were also suggested.展开更多
Recently,nanocellulose and its applications gain high attraction in both research and industrial areas due to its attractive properties such as excellent mechanical properties,high surface area,rich hydroxyl groups fo...Recently,nanocellulose and its applications gain high attraction in both research and industrial areas due to its attractive properties such as excellent mechanical properties,high surface area,rich hydroxyl groups for modification,and natural properties with 100%environmental friendliness.In this review,the background of nanocellulose originated from lignocellulosic biomass and the typical extraction methods and general applications are summarized,in which the nanocellulose extraction methods related to ball milling are mainly introduced.Also,an outlook on its future is given.It is expected to provide guidance on the effective extraction of nanocellulose from biomass and its most possible applications in the future.展开更多
文摘纳米纤维素由于其生物可降解性、低密度、高机械性能和可再生性而受到广泛关注。本文主要介绍了由木材或农业/林业剩余物生产的纳米纤维素的分类及制备方法,包括制备纤维素纳米晶体的无机酸水解法和酶水解法以及有机酸水解法、固体酸水解法、离子液体法、低共熔溶剂法和美国高附加值制浆法(American value added pulping,AVAP)等新型制备方法,同时介绍了制备纤维素纳米纤丝常用的预处理法和后续机械处理法,其中预处理法主要包括氧化、酶、有机酸、高碘酸盐氧化、低共熔溶剂、离子液体和溶剂辅助等多种预处理手段。最后分析了纳米纤维素的制备方法中亟待解决的问题,并展望了纳米纤维素的广阔应用前景。
基金financially supported by the National Natural Science Foundation of China(51603050)the Natural Science Foundation of Guangxi Autonomous Region(2016GXNSFBA380064,2016GXNSFAA380029)+1 种基金the Startup Foundation for Doctors of Guilin University of Technologythe Open Project Foundation of the Guangxi Key Laboratory of New Energy and Building Energy Saving(16-J-21-3)
文摘Nanocellulose is a biodegradable, renewable, nonmeltable polymeric material that is insoluble in most solvents due to hydrogen bonding and crystallinity. Nanocellulose has attracted considerable attention in recent decades owing to its environmental friendliness, wide availability, good biocompatibility, high crystallinity, and high Young's modulus. This review presents the recent achievements in preparation and applications of nanocellulose, including a discussion of the advantages and disadvantages of various preparation methods and a summary of the applications of nanocellulose in composite materials research. Finally, we examine the mounting evidence of more widespread potential applications of nanocellulose.
基金Financial supported from the Fundamental Research Funds for the Central Universities (No. 2017ZY49)the Foundation (No. KF201607) of Key Laboratory of Pulp and Paper Science and Technology of Ministry of Education/Shandong Province of China
文摘Nanocellulose composites combine the advantages of nanocellulose and composites. Recently, nanocellulose composites have been received more attentions due to their improved properties and promising broad applications. In the past, rapid progress has been made in the synthesis, properties, and mechanism of nanocellulose composites and potential applications were reported. There are a few reports on the increasing applications of nanocellulose composites with focus on the biomedical field, environmental field, electrode and sensor applications. In this article, the recent development of nanocellulose composites was reviewed via some typical examples. In addition to the synthesis methods, improved properties and potential applications were discussed. The problems and future applications of nanocellulose composites were also suggested.
文摘Recently,nanocellulose and its applications gain high attraction in both research and industrial areas due to its attractive properties such as excellent mechanical properties,high surface area,rich hydroxyl groups for modification,and natural properties with 100%environmental friendliness.In this review,the background of nanocellulose originated from lignocellulosic biomass and the typical extraction methods and general applications are summarized,in which the nanocellulose extraction methods related to ball milling are mainly introduced.Also,an outlook on its future is given.It is expected to provide guidance on the effective extraction of nanocellulose from biomass and its most possible applications in the future.