4.7 Article

Evaluation of the Technical Viability of Distributed Mechanical Recycling of PLA 3D Printing Wastes

期刊

POLYMERS
卷 13, 期 8, 页码 -

出版社

MDPI
DOI: 10.3390/polym13081247

关键词

poly (lactic acid); 3D printing; distributed recycling; mechanical recycling

资金

  1. European Union's Horizon 2020 research and innovation program [860407 BIO-PLASTICS EUROPE]
  2. MINECO-Spain [CTM2017-88989-P]
  3. Universidad Politecnica de Madrid [UPM RP 160543006]
  4. CircularizatE project

向作者/读者索取更多资源

The study on recycling 3D printing PLA wastes into films showed that mechanical recycling increases crystallinity and decreases viscosity, while recycled materials degrade faster under composting conditions compared to the original filament. Additionally, solid-state polymerization process can improve intrinsic viscosity of recycled materials derived from a well-known reference grade.
3D printing PLA wastes were recovered from a well-known reference grade and from different sources. The recovered wastes were subjected to an energic washing step and then reprocessed into films by melt-extrusion, followed by compression molding to simulate the industrial processing conditions. The obtained materials were characterized and the optical, structural, thermal and crystallization behavior are reported. The mechanical recycling process leads to an increase of the crystallinity and a decrease of the intrinsic viscosity of the formulations, particularly in the sample based on blends of different 3D-PLA wastes. Moreover, the obtained films were disintegrated under composting conditions in less than one month and it was observed that recycled materials degrade somewhat faster than the starting 3D-PLA filament, as a consequence of the presence of shorter polymer chains. Finally, to increase the molecular weight of the recycled materials, the 3D-PLA wastes were submitted to a solid-state polymerization process at 110, 120, and 130 degrees C, observing that the recycled 3D-wastes materials based on a well-known reference grade experiences an improvement of the intrinsic viscosity, while that coming from different sources showed no significant changes. Thus, the results show that 3D printing PLA products provides an ideal environment for the implementation of distributed recycling program, in which wastes coming from well-known PLA grades can successfully be processed in films with good overall performance.

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