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Characterization of Emissions from a Desktop 3D Printer

Author

Listed:
  • Luís Mendes
  • Anneli Kangas
  • Kirsi Kukko
  • Bjarke Mølgaard
  • Arto Säämänen
  • Tomi Kanerva
  • Iñigo Flores Ituarte
  • Marika Huhtiniemi
  • Helene Stockmann-Juvala
  • Jouni Partanen
  • Kaarle Hämeri
  • Konstantinos Eleftheriadis
  • Anna-Kaisa Viitanen

Abstract

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Suggested Citation

  • Luís Mendes & Anneli Kangas & Kirsi Kukko & Bjarke Mølgaard & Arto Säämänen & Tomi Kanerva & Iñigo Flores Ituarte & Marika Huhtiniemi & Helene Stockmann-Juvala & Jouni Partanen & Kaarle Hämeri & Konst, 2017. "Characterization of Emissions from a Desktop 3D Printer," Journal of Industrial Ecology, Yale University, vol. 21(S1), pages 94-106, November.
  • Handle: RePEc:bla:inecol:v:21:y:2017:i:s1:p:s94-s106
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    File URL: http://hdl.handle.net/10.1111/jiec.2017.21.issue-S1
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    Cited by:

    1. Lostado-Lorza, Rubén & Corral-Bobadilla, Marina & Sabando-Fraile, Celia & Somovilla-Gómez, Fátima, 2024. "Enhancing thermal conductivity of sinterized bronze (Cu89/Sn11) by 3D printing and thermal post-treatment: Energy efficiency and environmental sustainability," Energy, Elsevier, vol. 299(C).
    2. Panagiotis Karayannis & Stratos Saliakas & Ioannis Kokkinopoulos & Spyridon Damilos & Elias P. Koumoulos & Eleni Gkartzou & Julio Gomez & Constantinos Charitidis, 2022. "Facilitating Safe FFF 3D Printing: A Prototype Material Case Study," Sustainability, MDPI, vol. 14(5), pages 1-26, March.
    3. Shirin Khaki & Maud Rio & Philippe Marin, 2022. "Characterization of Emissions in Fab Labs: An Additive Manufacturing Environment Issue," Sustainability, MDPI, vol. 14(5), pages 1-23, March.

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