Biopolymer from industrial residues: Life cycle assessment of poly(hydroxyalkanoates) from whey
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DOI: 10.1016/j.resconrec.2013.01.017
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References listed on IDEAS
- Merrild, Hanna & Damgaard, Anders & Christensen, Thomas H., 2008. "Life cycle assessment of waste paper management: The importance of technology data and system boundaries in assessing recycling and incineration," Resources, Conservation & Recycling, Elsevier, vol. 52(12), pages 1391-1398.
- Devdatt Kurdikar & Laurence Fournet & Steven C. Slater & Mark Paster & Kenneth J. Gruys & Tillman U. Gerngross & Remi Coulon, 2000. "Greenhouse Gas Profile of a Plastic Material Derived from a Genetically Modified Plant," Journal of Industrial Ecology, Yale University, vol. 4(3), pages 107-122, July.
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Cited by:
- Meeks, Diana & Hottle, Troy & Bilec, M.M. & Landis, A.E., 2015. "Compostable biopolymer use in the real world: Stakeholder interviews to better understand the motivations and realities of use and disposal in the US," Resources, Conservation & Recycling, Elsevier, vol. 105(PA), pages 134-142.
- Hottle, Troy A. & Bilec, Melissa M. & Landis, Amy E., 2017. "Biopolymer production and end of life comparisons using life cycle assessment," Resources, Conservation & Recycling, Elsevier, vol. 122(C), pages 295-306.
- Miller, Sabbie A. & Srubar, Wil V. & Billington, Sarah L. & Lepech, Michael D., 2015. "Integrating durability-based service-life predictions with environmental impact assessments of natural fiber–reinforced composite materials," Resources, Conservation & Recycling, Elsevier, vol. 99(C), pages 72-83.
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Keywords
Bio-based plastics; Life cycle assessment; Poly(hydroxyalkanoates); Surplus materials; Sustainable process index; Whey;All these keywords.
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