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市场调查报告书
商品编码
1438026
到 2030 年锂离子电池回收市场预测:按来源、电池组成、回收流程、电池化学、最终用户和地区进行全球分析Lithium Ion Battery Recycling Market Forecasts to 2030 - Global Analysis By Source, Battery Component, Recycling Process, Battery Chemistry, End User, and By Geography |
据Stratistics MRC称,2023年全球锂离子电池回收市场规模为37.6亿美元,预计2030年将达到112.2亿美元,预测期内复合年增长率为16.9%。
锂离子电池回收是一个重要的过程,旨在从废弃或报废的锂离子电池(LIB)中回收有价值的材料。回收过程通常包括收集、分类和拆卸废弃电池。然后使用先进技术提取和精製有价值的金属,并重新用于製造新电池。因此,这种封闭式方法促进了资源节约,支持循环经济和对有限资源的负责任管理。
BILITI Electric估计,美国约有300万辆电动车,约占道路上车辆总数的1%。
电动车 (EV) 需求不断增长
随着汽车产业向永续交通转型,电动车越来越普及,锂离子电池产量迅速增加。虽然产量的增加将促进清洁能源解决方案,但也会产生大量废弃电池,需要有效的回收解决方案。此外,退役电动车产生的废弃电池的大量涌入正在推动市场对高效、永续的锂离子电池回收流程的需求。
缺乏统一规定
由于锂离子电池回收缺乏统一的法规,市场环境分散且不确定。由于回收标准、通讯协定和要求因地区和国家而异,因此不存在统一性。此外,这种缺乏统一性为电池製造商、回收商和其他相关人员应对复杂的监管环境带来了挑战。此外,缺乏明确的指导方针和标准减少了回收技术和基础设施的投资和创新,阻碍了该市场的规模。
政府奖励和政策
由于不当处置对环境的影响以及永续资源管理的战略重要性,世界各国政府正在实施支持措施。赠款和津贴等奖励鼓励公司和回收设施投资先进技术和基础设施,以实现高效的锂离子电池回收。此外,这鼓励生产商在设计电池时考虑到回收,并投资回收和回收系统,从而推动该市场的规模。
缺乏意识
由于缺乏认识,电池经常被丢弃到正常废弃物流中或送往垃圾掩埋场,造成污染并对生态系统造成潜在危害。关于锂离子电池不当处置相关的环境和健康风险的知识有限。然而,如果没有适当的认识,个人和企业可能不会意识到回收的经济奖励,并选择不能最大限度地回收资源的处置方法,从而阻碍该市场的成长。
COVID-19 的影响
COVID-19 的爆发在多个方面对市场产生了负面影响。由于封锁、旅行限制和製造能力下降而导致的供应链中断阻碍了废弃电池的收集和运输以供回收。这造成了物流挑战和处理废弃电池的延误,影响了回收业务的整体效率。此外,疫情期间的经济不确定性正在影响消费行为,从而阻碍了该市场。
预计电动车产业在预测期内将是最大的
由于电动车推进系统为传统内燃机提供了更清洁、永续的替代方案,因此电动车细分市场预计将占据最大份额。电动车的普及导致废弃锂离子电池显着增加,从而需要有效的回收解决方案。此外,有效的回收不仅有助于满足对这些关键材料的需求,还可以解决与不当处置相关的环境问题,从而推动该领域的扩张。
火法冶金加工产业预计在预测期内复合年增长率最高
预计火法冶金加工产业在预测期内将出现最高的复合年增长率,因为它提供了一种透过高温加工从废弃电池中提取有价值金属的方法。由于废电池暴露在高热下,会发生热解,更容易分离不同的组件。此外,火法冶金方法还具有金属回收率高和处理各种电池化学物质的能力等优点,从而推动了该领域的成长。
由于家用电子电器、电动车和可再生能源等依赖这些电池的产业快速成长,亚太地区在预测期内占据了最大的市场占有率。电动车的快速普及以及政府推广清洁能源技术的努力正在增加对高效锂离子电池回收流程的需求。此外,法律规范和环保意识提升宣传活动也有助于该地区强劲的锂离子电池回收市场的发展。
由于减少碳排放和向更清洁的交通方式过渡的雄心勃勃的目标的推动,电动车的迅速普及,预计欧洲在预测期内将以最高的复合年增长率增长。该地区的主要企业包括 Green Technology Solutions, Inc.、Glencore PLC、Duesenfeld GmbH、Raw Materials Company 和 Redwood Materials Inc.。此外,公私合作正在推动循环经济倡议,并促进从废弃电池中回收有价值的材料,从而推动该地区的市场发展。
According to Stratistics MRC, the Global Lithium Ion Battery Recycling Market is accounted for $3.76 billion in 2023 and is expected to reach $11.22 billion by 2030 growing at a CAGR of 16.9% during the forecast period. Lithium-ion battery recycling is a crucial process aimed at recovering valuable materials from used or end-of-life lithium-ion batteries (LIBs). The recycling process typically involves the collection, sorting, and disassembly of spent batteries. Advanced technologies are then employed to extract and purify the valuable metals, which can be reintegrated into the manufacturing of new batteries. Thus, this closed-loop approach promotes resource conservation and supports the circular economy and the responsible management of finite resources.
According to the administration of BILITI Electric estimates, there are about 3 million electric cars in the U.S., representing approximately 1% of the total number of cars on the road.
Rising demand for electric vehicles (EVs)
The automotive industry undergoes a transformative shift toward sustainable transportation, the increased adoption of electric vehicles has led to a parallel surge in lithium-ion battery production. This heightened production, while advancing clean energy solutions, also generates a substantial volume of end-of-life batteries, necessitating effective recycling solutions. Additionally, the influx of spent batteries from retired electric vehicles creates a robust market demand for efficient and sustainable lithium-ion battery recycling processes.
Absence of uniform regulations
The absence of consistent regulations pertaining to lithium-ion battery recycling has resulted in a fragmented and uncertain market landscape. Different regions and countries have implemented varying recycling standards, protocols, and requirements, leading to a lack of harmonization. Furthermore, this lack of uniformity creates challenges for battery manufacturers, recyclers, and other stakeholders in navigating the complex regulatory landscape. The absence of clear guidelines and standards also decreases investment and innovation in recycling technologies and infrastructure, which is impeding this market size.
Government incentives and policies
The environmental impact of improper disposal and the strategic importance of sustainable resource management have led governments worldwide to implement supportive measures. Incentives, such as subsidies and grants, encourage businesses and recycling facilities to invest in advanced technologies and infrastructure for efficient lithium-ion battery recycling. Moreover, this encourages producers to design batteries with recycling in mind and invest in collection and recycling systems, which drive this market size.
Lack of awareness
The lack of awareness often leads to batteries being discarded in regular waste streams or sent to landfills, contributing to pollution and potential harm to ecosystems. There is limited knowledge regarding the environmental and health risks associated with the improper disposal of lithium-ion batteries. However, without proper awareness, individuals and businesses may not realize the economic incentives of recycling and may opt for disposal methods that do not maximize resource recovery, which is hindering this market growth.
Covid-19 Impact
The COVID-19 pandemic has negatively impacted the market in several ways. Supply chain disruptions, stemming from lockdowns, travel restrictions, and reduced manufacturing capacities, have hindered the collection and transportation of end-of-life batteries for recycling. This has led to logistical challenges and delays in processing used batteries, impacting the overall efficiency of recycling operations. Moreover, economic uncertainties during the pandemic have influenced consumer behavior, which is impeding this market.
The electric vehicles segment is expected to be the largest during the forecast period
The electric vehicles segment is estimated to hold the largest share due to the propulsion systems of EVs, which offer a cleaner and more sustainable alternative to traditional internal combustion engines. The rising adoption of electric vehicles results in a substantial increase in end-of-life lithium-ion batteries, creating a need for effective recycling solutions. In addition, efficient recycling not only helps meet the demand for these critical materials but also addresses environmental concerns associated with improper disposal, which is boosting this segment's expansion
The pyrometallurgical process segment is expected to have the highest CAGR during the forecast period
The pyrometallurgical process segment is anticipated to have highest CAGR during the forecast period due to the fact that it offers a method to extract valuable metals from spent batteries through high-temperature treatment. These are subjected to intense heat, causing them to undergo thermal decomposition and facilitating the separation of different components. Furthermore, the pyrometallurgical approach offers advantages such as high metal recovery rates and the ability to handle a variety of battery chemicals, which are driving this segment's growth.
Asia Pacific commanded the largest market share during the extrapolated period owing to the rapid growth of industries relying on these batteries, such as consumer electronics, electric vehicles, and renewable energy. The surge in electric vehicle adoption and government initiatives promoting clean energy technologies have intensified the demand for efficient lithium-ion battery recycling processes. Moreover, regulatory frameworks and environmental awareness campaigns further contribute to the development of a robust lithium-ion battery recycling market in the region.
Europe is expected to witness highest CAGR over the projection period, owing to a surge in electric vehicle adoption, driven by ambitious targets to reduce carbon emissions and transition towards cleaner transportation. This region is home to some of the major key players, such as Green Technology Solutions, Inc., Glencore PLC, Duesenfeld GmbH, Raw Materials Company, and Redwood Materials Inc. Furthermore, collaborations between the public and private sectors are fostering a circular economy approach, promoting the recovery of valuable materials from used batteries, which is driving this region's market.
Key players in the market
Some of the key players in the Lithium Ion Battery Recycling Market include Retriev Technologies, Inc., Glencore PLC, Duesenfeld GmbH, Raw Materials Company, Umicore SA, Contemporary Amperex Technology Co., Green Technology Solutions, Inc., American Battery Technology Company, Stena Recycling, The International Metals Reclamation Company, Neometals Ltd. and Redwood Materials Inc.
In October 2023, Marathon Oil Corporation announced that through its wholly-owned subsidiaries it has entered into a five-year firm LNG sales agreement with Glencore Energy UK Ltd, a subsidiary of Glencore PLC, for a portion of its equity natural gas produced from the Alba Field.
In July 2023, Glencore International AG (Glencore) and Pan American Silver Corp. announced they have reached an agreement for Glencore to acquire the 56.25% stake in the MARA Project (MARA or the Project) from Pan American.
In January 2023, Australian Titanium (ATI), Battery materials producer Neometals (NMT) has signed a term sheet with Australian Vanadium (AVL) to explore opportunities involving the former's rock titanium-vanadium deposit.