纺丝级生物基聚呋喃二甲酸乙二醇酯的改性研究进展

王银1, 马海燕2*, 马海军1, 侯史晨1, 曹楚涵1

化工新型材料 ›› 2025, Vol. 53 ›› Issue (7) : 35 -40.

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化工新型材料 ›› 2025, Vol. 53 ›› Issue (7) : 35-40. DOI: 10.19817/j.cnki.issn1006-3536.2025.07.047
综述与专论

纺丝级生物基聚呋喃二甲酸乙二醇酯的改性研究进展

    王银1, 马海燕2*, 马海军1, 侯史晨1, 曹楚涵1
作者信息 +

Research progress on the modification of spining-grade bio-based polyethylene furan dicarboxylate

  • Wang Yin1, Ma Haiyan2, Ma Haijun1, Hou Shichen1, Cao Chuhan1
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摘要

生物质化工逐步替代石油化工是我国实现“3060”碳中和碳达峰的必经之路,且生物质化工在包装,纺织品和塑料等领域都表现出巨大潜力,其中以聚呋喃二甲酸乙二醇酯(PEF)为代表性化学品,它已成为生物炼制与绿色化工领域研究的热点之一。与石油基产物聚对苯二甲酸乙二醇酯(PET)相比,合成PEF的原料更为绿色,机械强度与耐热性方面较PET也更为优异,尤其是在阻隔气体渗透的性能上十分突出,被认为是PET的完美替代品。然而,在研究过程中也暴露出PEF断裂伸长率过低、结晶速度缓慢,降解困难等问题,因此,在实际应用中需要对其进行改性。重点综述了PEF改性研究以及降解技术的进展,并对PEF的发展趋势和未来前景进行展望。

Abstract

The gradual replacement of petrochemicals by biomass chemicals is the only way for China to achieve “3060” carbon neutrality and carbon peaking,and biomass chemicals has shown great potential in packaging,textiles and plastics and other fields.Among them,polyethylene furan diformate (PEF),as a representative chemical,has become one of the hotspots in biorefinery and green chemical research.Compared with the petroleum-based product polyethylene terephthalate (PET),the raw material for the synthetic of PEF is more environmentally friendly,and the mechanical strength and heat resistance are better than those of PET,especially in the performance of blocking gas penetration,and it is considered to be the perfect substitute for PET.However,during the research process,the problems such as low elongation at break,slow crystallization rate,and dificulty in degradation of PEF are also exposed,and it needs to be modified in practical applications.In this paper,we reviewed the research progress on the modification and degradation technology of PEF,and looked forward to the development trend and future prospects of PEF.

关键词

生物基聚酯 / 聚呋喃二甲酸乙二醇酯 / 改性 / 纺丝

Key words

bio-based polyester / PEF / modification / spinning

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纺丝级生物基聚呋喃二甲酸乙二醇酯的改性研究进展[J]. 化工新型材料, 2025, 53(7): 35-40 DOI:10.19817/j.cnki.issn1006-3536.2025.07.047

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参考文献

[1] Hu Lei,Wu Zhen,Jiang Yetao,et al.Recent advances in catalytic and autocatalytic production of biomass-derived 5-hydroxymethylfurfural[J].Renewable and Sustainable Energy Reviews,2020,134:110317.
[2] Lokhande Priya,Sonone Kalyani,Dhepe Paresh L.Industry-oriented method for the aqueous phase oxidation of crude 5-hydroxymethyl furfural (HMF) to 2,5-furandicarboxylic acid (FDCA)[J].New Journal of Chemistry,2023,47(32):15325-154335.
[3] 赫爽,孙莉娜,胡红梅,等.纺丝级生物基聚呋喃二甲酸乙二醇酯的合成及纤维制备[J].东华大学学报,2023,49(3):53-60.
[4] 吴佳萍.生物基聚呋喃二甲酸乙二醇酯的合成及链结构和结晶性调控[D].杭州:浙江大学,2017.
[5] Sousa Andreia F,Matos Marina,Freire Carmen S R,et al.New copolyesters derived from terephthalic and 2,5-furandicarboxylic acids:a step forward in the development of biobased polyesters[J].Polymer,2013,54(2):513-519.
[6] Burgess S K,Leisen J K,Kraftschik B E,et al.Chain mobility,thermal,and mechanical properties of poly(ethylene furanoate) compared to poly(ethylene terephthalate)[J].Macromolecules,2014,47(4):1383-1391.
[7] Wu Jiaping,Xie Hongzhou,Wu Linbo,et al.DBU-catalyzed biobased poly(ethylene 2,5-furandicarboxylate) polyester with rapid melt crystallization:synthesis,crystallization kinetics and melting behavior[J].RSC Advances,2016,6(103):101578-101586.
[8] Van Berkel Jesper G,Guigo Nathanaël,Kolstad Jeffrey J,et al.Isothermal crystallization kinetics of poly(ethylene 2,5-furandicarboxylate)[J].Macromolecular Materials and Engineering,2015,300(4):466-474.
[9] Van Berkel Jesper G,Guigo Nathanaël,Kolstad Jeffrey J,et al.Isothermal crystallization kinetics of poly(ethylene 2,5-furandicarboxylate)[J].Crystal Growth and Design,2015,15(11):5505-5512.
[10] Maini Lucia,Gigli Matteo,Gazzano Massimo,et al.Structural investigation of poly(ethylene furanoate) polymorphs[J].Polymers,2018,10(3):296.
[11] Tsanaktsis Vasilios,Vouvoudi Evangelia,Papageorgiou George Z,et al.Thermal degradation kinetics and decomposition mechanism of polyesters based on 2,5-furandicarboxylic acid and low molecular weight aliphatic diols[J].Journal of Analytical and Applied Pyrolysis,2015,112:369-378.
[12] Wang Guoqiang,Jiang Min,Zhang Qiang,et al.Biobased copolyesters:synthesis,crystallization behavior,thermal and mechanical properties of poly(ethylene glycol sebacate-co-ethylene glycol 2,5-furan dicarboxylate)[J].RSC Advances,2017,7(23):13798-13807.
[13] Van Berkel Jesper G,Guigo Nathanaël,Kolstad Jeffrey J,et al.Biaxial orientation of poly(ethylene 2,5-furandicarboxylate):an explorative study[J].Macromolecular Materials and Engineering,2018,303(3):1700507.
[14] Hong Sungmin,Min Kyung-Deok,Nam Byeong-Uk,et al.High molecular weight bio furan-based co-polyesters for food packaging applications:synthesis,characterization and solid-state polymerization[J].Green Chemistry,2016,18(19):5142-5150.
[15] de Jong E,Dam M A,Sipos L,et al.Furandicarboxylic acid (FDCA),a versatile building block for a yery interesting class of polyesters[J].ACS Symposium Series,2012,1105:1-13.
[16] Steven K Burgess,Dharmik S Mikkilineni,Daniel B Yu,et al.Water sorption in poly(ethylene furanoate) compared to poly(ethylene terephthalate).part 2:kinetic sorption[J].Polymer,2014,55(26):6870-6882.
[17] Burgess Steven K,Karvan Oguz,Johnson J R,et al.Oxygen sorption and transport in amorphous poly(ethylene furanoate)[J].Polymer,2014,55(18):4748-4756.
[18] Burgess Steven K,Kriegel Robert M,Koros William J.Carbon dioxide sorption and transport in amorphous poly(ethylene furanoate)[J].Macromolecules,2015,48(7):2184-2193.
[19] Burgess Steven K,Wenz Graham B,Kriegel Robert M,et al.Penetrant transport in semicrystalline poly(ethylene furanoate)[J].Polymer,2016,98:305-310.
[20] Cocca Mariacristina,Lorenzo Maria Laura Di,Malinconico Mario,et al.Influence of crystal polymorphism on mechanical and barrier properties of poly(l-lactic acid)[J].European Polymer Journal,2011,47(5):1073-1080.
[21] Matos Marina,Sousa Andreia F,Fonseca Ana C,et al.A new generation of furanic copolyesters with enhanced degradability:poly(ethylene 2,5-furandicarboxylate)-co-poly(lactic acid) copolyesters[J].Macromolecular Chemistry and Physics,2014,215:2175-2184.
[22] Terzopoulou Zoe,Tsanaktsis Vasilios,Bikiaris Dimitrios N,et al.Biobased poly(ethylene furanoate-co-ethylene succinate) copolyesters:solid state structure,melting point depression and biodegradability[J].RSC Advances,2016,6(87):84003.
[23] Jia Zhen,Wang Jinggang,Sun Liyuan,et al.Fully bio-based polyesters derived from 2,5-furandicarboxylic acid (2,5-FDCA) and dodecanedioic acid (DDCA):from semicrystalline thermoplastic to amorphous elastomer[J].Journal of Applied Polymer Science,2018,135:46076.
[24] Wang Jinggang,Liu Xiaoqing,Zhang Yajie,et al.Modification of poly(ethylene 2,5-furandicarboxylate) with 1,4-cyclohexanedimethylene:Influence of composition on mechanical and barrier properties[J].Polymer,2016,103:1-8.
[25] Wang Jinggang,Liu Xiaoqing,Jia Zhen,et al.Modification of poly(ethylene 2,5-furandicarboxylate) (PEF) with 1,4-cyclohexanedimethanol:influence of stereochemistry of 1,4-cyclohexylene units[J].Polymer,2018,137:173-185.
[26] Xie Hongzhou,Wu Linbo,Li Bogeng,et al.Biobased poly(ethylene-co-hexamethylene 2,5-furandicarboxylate) (PEHF) copolyesters with superior tensile properties[J].Industrial and Engineering Chemistry Research,2018,57:13094-13102.
[27] Wang Xiansong,Liu Shaoying,Wang Qingyin,et al.Synthesis and characterization of poly(ethylene 2,5-furandicarboxylate-co-ε-caprolactone) copolyesters[J].European Polymer Journal,2018,109:191-197.
[28] 姜敏,芦婷婷,姜国伟,等.聚对苯二甲酸-2,5呋喃二甲酸乙二醇无规共聚酯的合成与表征[J].高分子学报,2013(8):1092-1098.
[29] Liu Fei,Zhang Junwu,Wang Jinggang,et al.Incorporation of 1,4-cyclohexanedicarboxylic acid into poly(butylene terephthalate)-b-poly(tetramethylene glycol) to alter thermal properties without compromising tensile and elastic properties[J].RSC Advances,2015,5(114):94091-94098.
[30] 贾宏涛.PET-PTMG聚醚酯的合成及其弹性纤维的研究[D].天津:天津大学,2000.
[31] 陈烨.PTMG对玉米基EG/PTA聚合改性的研究[D].上海:东华大学,2007.
[32] Wang Guoqiang,Jiang Min,Zhang Qiang,et al.Biobased multiblock copolymers:synthesis,properties and shape memory performance of poly(ethylene 2,5-furandicarboxylate)-b-poly(ethylene glycol)[J].Polymer Degradation and Stability,2017,144:121-127.
[33] Zhou Weidong,Zhang Yajie,Xu Ying,et al.Synthesis and characterization of bio-based poly(butylene furandicarboxylate)-b-poly(tetramethylene glycol) copolymers[J].Polymer Degradation and Stability,2014,109:21-26.
[34] Kwiatkowska Magdalena,Kowalczyk Inez,Kwiatkowski Konrad,et al.Fully biobased multiblock copolymers of furan-aromatic polyester and dimerized fatty acid:synthesis and characterization[J].Polymer,2016,99:503-512.
[35] Xie Hongzhou,Wu Linbo,Li Bogeng,et al.Poly(ethylene 2,5-furandicarboxylate-mb-poly(tetramethylene glycol)) multiblock copolymers:from high tough thermoplastics to elastomers[J].Polymer,2018,155:89-98.
[36] Kwiatkowska Magdalena,Kowalczyk Inez,Szymczyk Anna.Poly(ethylene furanoate) modified with dimerized fatty acid diol towards multiblock copolymers:microstructure-property relationship[J].Materials Today Communications,2019,20:100577.
[37] 吴林波,谢鸿洲.一种基于2,5-呋喃二甲酸聚酯和脂肪族聚碳酸酯的多嵌段共聚物及其制备方法:CN110407991B[P].2020-07-17.
[38] 王公应,王贤松,李建国,等.一种增韧2,5-呋喃二甲酸共聚酯及其制备方法:CN108467479B[P].2021-07-06.
[39] 林晓清,陶顺辉,胡蕾,等.生物基聚2,5-呋喃二甲酸乙二醇酯的改性研究进展[J].林产化学与工业,2022,42(2):125-136.
[40] 陈英,姜敏,孙长江,等.聚2,5-呋喃二甲酸乙二醇酯/聚丁二酸丁二醇酯共混物的制备与表征[J].应用化学,2015,32(9):1022-1027.
[41] Paszkiewicz Sandra,Irska Izabela,Piesowicz Elzbieta.Environmentally friendly polymer blends based on post-consumer glycol-modified poly(ethylene terephthalate)(PET-G) foils and poly(ethylene 2,5-furanoate) (PEF):preparation and characterization[J].Materials,2020,13(12):2673.
[42] Yang Y,Tian A P,Fang Y J,et al.Improvement in toughness of poly(ethylene 2,5-furandicarboxylate) by melt blending with biobased polyamide11 in the presence of a reactive compatibilizer[J].Chinese Journal of Polymer Science,2020,38:1099-1106.
[43] 刘嘉铨,郭熙桃,邱志明,等.生物基聚2,5-呋喃二甲酸乙二醇酯的改性及纺丝技术进展[J].高分子材料科学与工程,2023,38(2):184-190.
[44] 李毕忠.无机/有机纳米复合聚酯材料-技术开发和应用市场[J].化工新型材料,2007,35(S1):43-46.
[45] Martino Lucrezia,Niknam Volga,Guigo Nathanaël,et al.Morphology and thermal properties of novel clay-based poly(ethylene 2,5-furandicarboxylate)(PEF) nanocomposites[J].RSC Advances,2016,6:59800.
[46] Martino Lucrezia,Guigo Nathanaël,van Berkel Jesper Gabriël,et al.Influence of organically modified montmorillonite and sepiolite clays on the physical properties of bio-based poly(ethylene 2,5-furandicarboxylate)[J].Composites Part B Engineering,2017,110:96-105.
[47] Xie Hongzhou,Meng Hongxu,Wu Linbo,et al.In-situ synthesis,thermal and mechanical properties of biobased poly(ethylene 2,5-furandicarboxylate)/montmorillonite (PEF/MMT) nanocomposites[J].European Polymer Journal,2019,121:109266.
[48] 李钰炫,赵昱昊,代雨泽,等.聚2,5-呋喃二甲酸乙二醇酯/纳米二氧化钛/硅藻土复合材料的制备与表征[J].应用化学,2023,40(9):1277-1287.
[49] 王新雷,谢静思,廖尾英.生物基2,5-呋喃二甲酸(FDCA)及聚酯(PEF)的性能与应用[J].广东化工,2020,47(7):140-142.
[50] Araujo Catarina F,Nolasco Mariela M,Ribeiro-Claro Paulo J A,et al.Inside PEF:chain conformation and dynamics in crystalline and amorphous domains[J].Macromolecules,2018,51(9):3515-3526.
[51] Fei Xuan,Wang Jinggang,Zhu Jin,et al.Biobased poly(ethylene 2,5-furancoate):no longer an alternative,but an irreplaceable polyester in the polymer industry[J].ACS Sustainable Chemistry & Engineering,2020,8(23):8471-8485.
[52] 芦长椿.生物基聚酯的技术现状与趋势[J].纺织导报,2020(9):57-60.
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