Plastic recycling in additive manufacturing: A systematic literature review and opportunities for the circular economy
Переработка пластмасс в аддитивном производстве: систематический обзор литературы и возможности для циркулярной экономики
2020-04-15
SCID: 54.1/tmztkuan
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3D printingDistributed Recycling via Additive Manufacturing (DRAM)circular economysystematic literature reviewthermoplastic recycling
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Abstract (AI)
The rapid technical evolution of additive manufacturing (AM) enables a new path to a circular economy using distributed recycling and production. This concept of Distributed Recycling via Additive Manufacturing (DRAM) is related to the use of recycled materials by means of mechanical recycling process in the 3D printing process chain. This paper aims to examine the current advances on thermoplastic recycling processes via additive manufacturing technologies. After proposing a closed recycling global chain for DRAM, a systematic literature review including 92 papers from 2009 to 2019 was performed using the scopus, web of science and springer databases. This work examines main topics from six stages (recovery, preparation, compounding, feedstock, printing, quality) of the proposed DRAM chain. The results suggested that few works have been done for the recovery and preparation stages, while a great progress has already been done for the other stages in order to validate the technical feasibility, environmental impact, and economic viability. Potential research paths in the pre-treatment of recycled material at local level and printing chain phases were identified in order to connect the development of DRAM with the circular economy ambition at micro, meso and macro level. The development of each stage proposed using the open source approach is a relevant path to scale DRAM to reach the full technical potential as a centerpiece of the circular economy.
Key Findings
1
A systematic review of 92 papers published from 2009 to 2019 examines six DRAM stages: recovery, preparation, compounding, feedstock, printing, and quality.
2
Open-source development of all DRAM stages is highlighted as a pathway to scaling distributed recycling and realizing its circular-economy potential.
3
Research is sparse on recycled-material recovery and preparation, whereas later stages show substantial progress demonstrating technical feasibility, environmental impact, and economic viability.
4
The paper proposes a closed Distributed Recycling via Additive Manufacturing (DRAM) chain for using mechanically recycled thermoplastics in 3D printing.
5
The review identifies local pre-treatment and printing-chain research as priorities for connecting DRAM development with circular-economy goals across micro, meso, and macro levels.
Research Object
thermoplastic recycling processes integrated with additive manufacturing technologies in the Distributed Recycling via Additive Manufacturing (DRAM) chain
Research Subject
advances, technical feasibility, environmental impact, economic viability, and research gaps across the recovery, preparation, compounding, feedstock, printing, and quality stages of the DRAM recycling chain
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2020-04-15
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