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Upcycling of contaminated post-industrial polypropylene waste : a design from recycling case study

Kim Ragaert (UGent) , Sara Hubo (UGent) , Laurens Delva (UGent) , Lore Veelaert and Els Du Bois
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POLYMER BLENDS, PARTICLE-SIZE, POLYETHYLENE, COMPATIBILIZATION, TOUGHNESS, POLY(ETHYLENE-TEREPHTHALATE), COALESCENCE, MORPHOLOGY, ELASTOMER, COPOLYMER

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Citation

Please use this url to cite or link to this publication:

Chicago
Ragaert, Kim, Sara Hubo, Laurens Delva, Lore Veelaert, and Els Du Bois. 2018. “Upcycling of Contaminated Post-industrial Polypropylene Waste : a Design from Recycling Case Study.” Polymer Engineering and Science 58 (4): 528–534.
APA
Ragaert, K., Hubo, S., Delva, L., Veelaert, L., & Du Bois, E. (2018). Upcycling of contaminated post-industrial polypropylene waste : a design from recycling case study. POLYMER ENGINEERING AND SCIENCE, 58(4), 528–534.
Vancouver
1.
Ragaert K, Hubo S, Delva L, Veelaert L, Du Bois E. Upcycling of contaminated post-industrial polypropylene waste : a design from recycling case study. POLYMER ENGINEERING AND SCIENCE. Wiley; 2018;58(4):528–34.
MLA
Ragaert, Kim, Sara Hubo, Laurens Delva, et al. “Upcycling of Contaminated Post-industrial Polypropylene Waste : a Design from Recycling Case Study.” POLYMER ENGINEERING AND SCIENCE 58.4 (2018): 528–534. Print.
@article{8560879,
  author       = {Ragaert, Kim and Hubo, Sara and Delva, Laurens and Veelaert, Lore and Du Bois, Els},
  issn         = {0032-3888},
  journal      = {POLYMER ENGINEERING AND SCIENCE},
  language     = {eng},
  number       = {4},
  pages        = {528--534},
  publisher    = {Wiley},
  title        = {Upcycling of contaminated post-industrial polypropylene waste : a design from recycling case study},
  url          = {http://dx.doi.org/10.1002/pen.24764},
  volume       = {58},
  year         = {2018},
}

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