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Cross-polymerization between the model furans and phenolics in bio-oil with acid or alkaline catalysts 被引量:2

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摘要 Polymerization is a major challenge for the upgrading of bio-oil to biofuels,but is preferable for the production of carbon material from biooil.Understanding the mechanism for polymerization is of importance for tailoring property of carbon material.This study investigated the characteristics for the polymerisation of furfural,vanillin,their cross-polymerization and the impacts of catalysts on their polymerization.The results indicated that the organic acids like acetic acid and formic acid could catalyze the polymerisation of furfural,while H_(2)SO_(4)or NaOH as catalyst could drastically enhance the degree of polymerization of furfural.Vanillin showed a higher tendency towards polymerization than furfural and H_(2)SO_(4)or NaOH significantly facilitated the polymerization of vanillin via shifting the pasty product to solid polymer.The crosspolymerization between furfural and vanillin occurred even in the absence of catalyst,while the presence of H_(2)SO_(4)or NaOH catalyst resulted in the formation of more solid polymer via cross-polymerization.The polymerisation reactions were accompanied with the consumption of–C¼O via aldol addition/condensation reactions.In addition,the morphology and thermal stability of the polymers formed were affected by both the type of the catalysts employed,which can in turn enhance the cross-polymerization between furfural and vanillin.
出处 《Green Energy & Environment》 SCIE CSCD 2021年第1期138-149,共12页 绿色能源与环境(英文版)
基金 the National Natural Science Foundation of China(No.51876080) Australian Research Council(ARC)Discovery Project scheme(DP180101788) the Australian Government through ARENA's Emerging Renewables Programs the Strategic International Scientific and Technological Innovation Cooperation Special Funds of National Key R&D Program of China(No.2016YFE0204000) the Program for Taishan Scholars of Shandong Province Government the Recruitment Program of Global Young Experts(Thousand Youth Talents Plan) the Natural Science Fund of Shandong Province(ZR2017BB002) the Key R&D Program of Shandong Province(2018GSF116014).
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