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作 者:Puyou Jia Fei Song Qiaoguang Li Haoyu Xia Mei Li Xugang Shu Yonghong Zhou
机构地区:[1]Institute of Chemical Industry of Forest Products,Chinese Academy of Forestry(CAF)/Key Lab.of Biomass Energy and Material/Co-Innovation Center of Efficient Processing and Utilization of Forest Resources,Nanjing Forestry University/Key and Open Laboratory of Forest Chemical Engineering,SFA/National Engineering Laboratory for Biomass Chemical Utilization,Nanjing,China [2]School of Chemistry and Chemical Engineering,Zhongkai University of Agriculture and Engineering,Guangzhou,China [3]College of Chemical Engineering,Nanjing Tech University,Nanjing,China
出 处:《Journal of Renewable Materials》2019年第7期601-619,共19页可再生材料杂志(英文)
基 金:supported by the Open Fund Project of Jiangsu Key Laboratory of Biomass Energy and Materials(Grants No.JSBEM201907);the National Natural Science Foundation of China(No.31570563);the fund project of Yele Science and Technology Innovation(Grants No.YL201807).
摘 要:Polymers from renewable resources are receiving tremendous attention due to the increasing concerns on the depletion of fossil oils and deteriorated environments.Cardanol,as an abundant and renewable chemical raw material,has been widely used for the production of renewable polymer materials via converting into various of chemical monomers with active functional groups.This comprehensive review deals with various aspects of cardanol as a starting material the preparing various polymer and polymer composites such as benzoxazine resins,phenolic resin,polyurethanes,epoxy resin,vinyl ester polymers,polyamide and cyanate ester resins.The assessment of the future prospects for the use of cardanol to synthesise novel and valuable renewable materials is presented.
关 键 词:CARDANOL sustainable synthesis platform chemical epoxy resin POLYURETHANE
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