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Electric car battery: An overview on global demand, recycling and future approaches towards sustainability

机译:电动车电池:概述全球需求,回收和未来可持续发展方法

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摘要

Li-ion batteries are daily present in our electronic devices. These batteries are used in electric and hybrid vehicles supporting the current agreements to decrease greenhouse gas emissions. As a result, the electric vehicle demand has increased in the world. As Li-ion batteries are composed of critical metals in which there is a risk of interruption of supply in the medium term, recycling is the key to a sustainable future without internal combustion vehicles. Understanding the current scenario and future perspectives is important for strategies of new battery design, recycling routes and reverse logistics, as well as policies for sustainable development. This paper presents an overview of current and future vehicles used worldwide. An increase from 1.3 to 2 billion vehicles is expected worldwide until 2030; an outstanding demand will occur mainly in BRICS countries. The data demonstrated a correlation between the number of vehicles in use and GDP. Patents and processes designed for recycling Li-ion batteries and the new developments on pyro-, hydro-, and bio-metallurgical routes have been revised. The manuscript describes the importance and benefits of recycling as regards the supply of critical metals and future trends towards a circular economy.
机译:我们的电子设备中每天都存在锂离子电池。这些电池用于电动和混合动力汽车,支持当前的协议,以减少温室气体排放。结果,世界上电动车辆需求增加。由于锂离子电池由临界金属组成,其中在中期供应中断的风险中,回收是无需内燃车辆的可持续未来的关键。了解目前的情景和未来的观点对于新电池设计,回收路线和逆向物流的策略以及可持续发展的政策非常重要。本文概述了全球使用的当前和未来的车辆。在2030年之前,全球预计将增加1.3亿到20亿车辆;优秀的需求将主要在金砖国家发生。数据显示使用车辆数量与GDP之间的相关性。设计用于回收锂离子电池的专利和工艺以及在Pyro-,Hydro-and Bio-Metallurgical路线上进行的新发展已经进行了修订。稿件描述了回收的重要性和益处,以便为循环经济提供关键金属和未来趋势。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|113091.1-113091.16|共16页
  • 作者单位

    Department of Chemical Engineering Polytechnic School of the University of Sao Paulo. Rua do Logo 250 - 2° andar CEP 05508-080 Sao Paulo SP Brazil;

    Department of Chemical Engineering Polytechnic School of the University of Sao Paulo. Rua do Logo 250 - 2° andar CEP 05508-080 Sao Paulo SP Brazil;

    Department of Chemical Engineering Polytechnic School of the University of Sao Paulo. Rua do Logo 250 - 2° andar CEP 05508-080 Sao Paulo SP Brazil;

    Department of Chemical Engineering Polytechnic School of the University of Sao Paulo. Rua do Logo 250 - 2° andar CEP 05508-080 Sao Paulo SP Brazil;

    Department of Chemical Engineering Polytechnic School of the University of Sao Paulo. Rua do Logo 250 - 2° andar CEP 05508-080 Sao Paulo SP Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Li-ion battery; Critical metals; Sustainability; Recycling routes;

    机译:锂离子电池;关键金属;可持续性;回收路线;

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