Towards sustainable additive manufacturing: The need for awareness of particle and vapor releases during polymer recycling, making filament, and fused filament fabrication 3-D printing

Author:

Stefaniak Aleksandr B.ORCID,Bowers Lauren N.,Cottrell Gabe,Erdem Ergin,Knepp Alycia K.,Martin Stephen B.,Pretty Jack,Duling Matthew G.,Arnold Elizabeth D.,Wilson Zachary,Krider Benjamin,Fortner Alyson R.,LeBouf Ryan F.ORCID,Virji M. AbbasORCID,Sirinterlikci Arif

Funder

Centers for Disease Control and Prevention

National Institute for Occupational Safety and Health

U.S. Consumer Product Safety Commission

Publisher

Elsevier BV

Subject

Economics and Econometrics,Waste Management and Disposal

Reference57 articles.

1. Mechanical properties of specimens 3D printed with virgin and recycled polylactic acid;Anderson;3D Print Addit. Manuf.,2017

2. E741-11: standard test method for determining air change in a single zone by means of a tracer gas dilution;ASTM, West Conshohocken, PA,2017

3. Distributed recycling of waste polymer into RepRap feedstock;Baechler;Rapid Proto. J.,2013

4. Ventilation rates in recently constructed U.S. school classrooms;Batterman;Indoor Air,2017

5. Characterizing particle emissions from a direct energy deposition additive manufacturing process and associated occupational exposure to airborne particles;Bau;J. Occup. Environ. Hyg.,2020

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