Wind Turbine Blades Using Recycled Carbon Fibers: An Environmental Assessment

Author:

Upadhyayula Venkata K.K.12ORCID,Gadhamshetty Venkataramana34ORCID,Athanassiadis Dimitris2,Tysklind Mats1,Meng Fanran5ORCID,Pan Qing6,Cullen Jonathan M.5,Yacout Dalia M.M.7

Affiliation:

1. Department of Chemistry, Umeå University, Umeå SE 90187, Sweden

2. Department of Forest Biomaterials and Technology, Swedish University of Agricultural Sciences, Umeå SE 90183, Sweden

3. Civil and Environmental Engineering, South Dakota School of Mines and Technology, 501 E. Saint Joseph Blvd., Rapid City, South Dakota 57701, United States

4. 2-Dimensional Materials for Biofilm Engineering Science and Technology (2D BEST) Center, South Dakota School of Mines and Technology, 501 E. St. Joseph Street, Rapid City, South Dakota 57701, United States

5. Department of Engineering, University of Cambridge, Trumpington Street, Cambridge CB2 1PZ, United Kingdom

6. LMAT Ltd., Bristol BS34 8RB, United Kingdom

7. Department of Energy and Technology, Swedish University of Agricultural Sciences, E-750 07 Uppsala Sweden

Funder

South Dakota School of Mines and Technology

Ume? Universitet

Bio4Energy

National Science Foundation and the South Dakota Board of Regents

Publisher

American Chemical Society (ACS)

Subject

Environmental Chemistry,General Chemistry

Reference54 articles.

1. CompositesWorld compositesworld.com Removing barriers to lightweighting ships with composites; https://www.compositesworld.com/articles/removing-barriers-to-lightweighting-ships-with-composites, (accessed Aug 19th 2020 2020).

2. Kauts, M. A. Competitive strategy for entering wind turbine manufacturing industry; KTH Royal Institute of Technology: Stockholm, Sweden 2015; pp. 1–54.

3. Das, S.; Warren, J.; West, D.; Schexnayder, S.M. Global carbon fiber composites supply chain competitiveness analysis: ORNL/SR-2016/100; Oak Ridge Institute of National Labs: Oak Ridge, TN, USA 2016; pp. 1–116.

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