Efficient chemical recycling of poly(L-lactic acid) via either alcoholysis to alkyl lactate or thermal depolymerization to L-lactide promoted by Zn (II) catalysts

被引:0
|
作者
Gentile, Maria [1 ,2 ]
Gaeta, Licia [1 ,2 ]
Brenna, Stefano [3 ]
Pellecchia, Claudio [1 ]
机构
[1] Univ Salerno, Dipartimento Chim & Biol A Zambelli, via Giovanni Paolo II 132, I-84084 Fisciano, SA, Italy
[2] Univ Padua, Dipartimento Ingn Ind, Via Gradenigo 6-A, I-35131 Padua, PD, Italy
[3] Univ Insubria, Dipartimento Sci & Alta Tecnol, Via Valleggio 11, I-22100 Como, Italy
关键词
RING-OPENING POLYMERIZATION; ZN(II) COMPLEXES; METHYL LACTATE; DEGRADATION; POLYLACTIDE; COPOLYMERS;
D O I
10.1016/j.polymertesting.2025.108727
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Poly(lactic acid) (PLA), a commercially fully bio-based and biodegradable polymer, stands out as a sustainable alternative to commodity plastics. Its current end-of- life management involves composting, but chemical recycling would be more appropriate for a circular economy model. Here we report two very efficient chemical recycling pathways for commercial high molar mass and highly crystalline PLA samples, both ones promoted by different imidazole[1,5-a]pyrid-3-yl)phenolate Zn(II) catalysts: (i) alcoholysis was easily achieved by simply treating the polymer samples in boiling methanol in the presence of 1 % Zn(II) catalyst, resulting in up to 99 % yield and selectivity in methyl lactate; and (ii) chemical recycling to the monomer was achieved by heating the polymer samples at 180 degrees C under vacuum or in a nitrogen flow in the presence of 0.1 % Zn(II) catalyst and a highly boiling alcohol, resulting in up to 99 % yield of L-lactide, having high chemical and steric purity, which could be repolymerized without any further purification.
引用
收藏
页数:8
相关论文
共 42 条
  • [21] Fermentation and Purification of L-Lactic Acid by Using Biorefinery Concept to Produce a High Molecular Weight Poly(L-Lactide) Polymer
    Boontawan, Pailin
    Baimark, Yodthong
    Boontawan, Apichat
    JOURNAL OF BIOBASED MATERIALS AND BIOENERGY, 2019, 13 (01) : 43 - 52
  • [22] Preparation of stereocomplex powder from polycondensation poly(L-lactic acid) and poly(D-lactic acid) for use as a nucleating agent of high-molecular-weight poly(L-lactide)
    Yodthong Baimark
    Prasong Srihanam
    Theeraphol Phromsopha
    Yaowalak Srisuwan
    Journal of Polymer Research, 2023, 30
  • [23] Preparation of stereocomplex powder from polycondensation poly(L-lactic acid) and poly(D-lactic acid) for use as a nucleating agent of high-molecular-weight poly(L-lactide)
    Baimark, Yodthong
    Srihanam, Prasong
    Phromsopha, Theeraphol
    Srisuwan, Yaowalak
    JOURNAL OF POLYMER RESEARCH, 2023, 30 (08)
  • [24] Surface-grafted silica linked with L-lactic acid oligomer: A novel nanofiller to improve the performance of biodegradable poly(L-lactide)
    Yan, Shifeng
    Yin, Jingbo
    Yang, Yan
    Dai, Zhengzhan
    Ma, Jia
    Chen, Xuesi
    POLYMER, 2007, 48 (06) : 1688 - 1694
  • [25] Improving Flexibility of Poly(L-lactide) by Blending with Poly(L-lactic acid) Based Poly(ester-urethane): Morphology, Mechanical Properties, and Crystallization Behaviors
    Zeng, Jian-Bing
    Li, Yi-Dong
    He, Yi-Song
    Li, Shao-Long
    Wang, Yu-Zhong
    INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 2011, 50 (10) : 6124 - 6131
  • [26] Role of carbon nanotube grafted poly(l-lactide)-block-poly (d-lactide) in the crystallization of poly(l-lactic acid)/poly (d-lactic acid) blends: Suppressed homocrystallization and enhanced stereocomplex crystallization
    Cao, Zhi-Qiang
    Sun, Xiao-Rong
    Bao, Rui-Ying
    Yang, Wei
    Xie, Bang-Hu
    Yang, Ming-Bo
    EUROPEAN POLYMER JOURNAL, 2016, 83 : 42 - 52
  • [27] Electron Beam Radiation Modification on Chemical, Thermal and Crystalline Properties of Poly (L-lactic acid)
    Rao, N. Rajeswara
    Rao, T. Venkatappa
    Rao, B. Sanjeeva
    Shanmukhi, P. S., V
    INDIAN JOURNAL OF PURE & APPLIED PHYSICS, 2021, 59 (10) : 715 - 722
  • [28] Melt polycondensation of L-lactic acid with Sn(II) catalysts activated by various proton acids: A direct manufacturing route to high molecular weight poly(L-lactic acid)
    Moon, SI
    Lee, CW
    Miyamoto, M
    Kimura, Y
    JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY, 2000, 38 (09) : 1673 - 1679
  • [29] Influence of tin(II), aluminum(III) and titanium(IV) catalysts on the transesterification of poly(L-lactic acid)
    Punyodom, Winita
    Meepowpan, Puttinan
    Girdthep, Sutinee
    Limwanich, Wanich
    POLYMER BULLETIN, 2022, 79 (12) : 11409 - 11429
  • [30] Influence of tin(II), aluminum(III) and titanium(IV) catalysts on the transesterification of poly(L-lactic acid)
    Winita Punyodom
    Puttinan Meepowpan
    Sutinee Girdthep
    Wanich Limwanich
    Polymer Bulletin, 2022, 79 : 11409 - 11429