Study of the Life Cycle of the Elemental Composition of Batteries

Author:

Ruda Mariia1ORCID,Bubela Tetiana2ORCID,Kiselychnyk Myroslav3ORCID,Boyko Oksana4ORCID,Trishch Roman5ORCID,Kolach Tetyana4

Affiliation:

1. Lviv Polytechnic National University,Department of Ecological Safety and Nature Protection Activity,Lviv,Ukraine

2. Lviv Polytechnic National University,Department of Measuring Information Technologies,Lviv,Ukraine

3. National University,Department of Theoretical Radio Engineering and Radio Measurement Lviv Polytechnic,Lviv,Ukraine

4. Danylo Halytsky Lviv National Medical University,Medical Informatics Department,Lviv,Ukraine

5. National Aerospace University «Kharkiv Aviation Institute»,Department of Mechatronics and Electrical Engineering,Kharkiv,Ukraine

Publisher

IEEE

Reference21 articles.

1. Common mode noise rejection in measuring channels

2. High-throughput combinatorial screening of multi-component electrolyte additives to improve the performance of Li metal secondary batteries

3. ISO 14044:2006 Environmental management - Life cycle assessment — Requirements and guidelines;International Organization for Standardization (ISO),0

4. The Eco-indicator 95 (NOH report 9514);goedkoop;Amersfoort/Amsterdam,1995

5. Environmentally Sound Design and Recycling of Future Wind Power Systems. In: IEA R&D Wind's Topical expert meeting on Material recycling and life cycle analysis (LCA) of wind turbines;andersen;FOI Swedish Defence Research Agency,0

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