International comparison of impurities mixing and accumulation in steel scrap

Author:

Panasiuk Daryna1ORCID,Daigo Ichiro1,Hoshino Takeo2,Hayashi Hideo3,Yamasue Eiji4,Tran Duc Huy5,Sprecher Benjamin6ORCID,Shi Feng7,Shatokha Volodymyr8

Affiliation:

1. Research Center for Advanced Science and Technology University of Tokyo Tokyo Japan

2. Department of Materials Engineering, Graduate School of Engineering University of Tokyo Tokyo Japan

3. Commercialization Support Department Tokyo Metropolitan Industrial Technology Research Institute Tokyo Japan

4. Department of Mechanical Engineering, College of Science and Engineering Ritsumeikan University Kusatsu Japan

5. School of Material Science and Engineering Hanoi University of Science and Technology Hanoi Vietnam

6. Department of Sustainable Design Engineering Technical University Delft Delft The Netherlands

7. Lishui Institute of Ecology and Environment Nanjing University Nanjing China

8. Ironmaking and Steelmaking Department National Metallurgical Academy of Ukraine Dnipro Ukraine

Publisher

Wiley

Subject

General Social Sciences,General Environmental Science

Reference51 articles.

1. Dataset on the evaluation of chemical and mechanical properties of steel rods from local steel plants and collapsed building sites

2. Amoyaw‐Osei Y. Agyekum O. O. Pwamang J. Thiébaud (‐Müller) E. Fasko R. &Schluep M.(2011).Ghana e‐waste country assessment(p. 123). [SBC e‐Waste Africa Project].

3. Pathways to a low-carbon iron and steel industry in the medium-term – the case of Germany

4. Atsbaha A.(2017).Mechanical analysis on locally produced reinforcement bars for building construction application[Master thesis] Mekelle University.https://www.academia.edu/34321294

5. The potential for material circularity and independence in the U.S. steel sector

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