市场调查报告书
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到 2030 年锂离子电池市场预测:按类型、外形规格、循环寿命、电压、应用、最终用户和地区进行的全球分析Lithium-ion Battery Market Forecasts to 2030 - Global Analysis By Type, Form Factor, Cycle Life, Voltage, Application, End User and By Geography |
根据Stratistics MRC预测,2024年全球锂离子电池市场规模将达660亿美元,预计2030年将达到1,624.7亿美元,预测期内复合年增长率为16.2%。
锂离子电池是可充电能源储存装置,在充电和放电循环期间使用锂离子在负极和正极之间移动。它们以其高能量密度、轻重量和长循环寿命而闻名,为各种应用提供动力,包括电动车 (EV)、消费性电子产品和可再生能源系统。锂离子电池因其效率高且能够以紧凑的尺寸储存大量能量而受到青睐,这使得它们对于智慧型手机和电动车等现代技术至关重要。
电动车 (EV) 需求不断增长
对电动车不断增长的需求提供了高能量密度、轻量化设计和长循环寿命,使其成为电动车应用的理想选择。随着各国政府推动绿色交通和收紧排放法规,从内燃机转变为电动车的转变正在加速。此外,车辆行驶里程和性能的增加将增加对先进高效锂离子电池的需求,从而推动该领域的创新和市场成长。
生产成本高
由于锂、钴和镍等原材料昂贵,製造成本可能会根据市场需求和地缘政治因素而波动。此外,复杂的製造流程和对先进技术的需求也推高了整体成本。这些高成本可能会阻碍製造商扩大生产或投资新技术,最终减缓锂离子电池在电动车、消费性电子产品和可再生能源应用的采用。这限制了市场成长并降低了替代能源储存解决方案的竞争力。
电网应用中的能源储存
对于太阳能和风能等电网应用中的能源储存,锂离子电池提供了高效且可扩展的能源储存解决方案,有助于稳定电网、管理尖峰负载并提供备用电源。随着政府和公用事业公司优先考虑脱碳和能源弹性,对大型电池储存系统的需求正在增加。此外,锂离子电池可以快速储存和放电能量,使其成为平衡供需的理想选择,从而推动其在电网应用中的采用。
严格的环境法规
对锂、钴和镍的严格环境法规可能会对环境产生负面影响,包括栖息地破坏、水污染和高碳排放。各国政府和监管机构越来越多地为永续采矿方法、废弃物管理和电池回收制定更严格的指导方针。遵守这些规定会增加生产成本并限製材料的可用性。此外,环境问题正在推动该行业开发替代环保电池技术,这可能会减缓市场成长。
COVID-19 的影响
COVID-19的爆发对锂离子电池市场产生了多方面的影响。最初,由于工厂关闭、供应链中断以及电动车 (EV) 和消费性电子产品产量减少,市场面临混乱。采矿作业的延误也导致锂和钴等关键原料短缺,进一步阻碍了生产。然而,在疫情后的恢復期,由于加速转向可再生能源、电动车的采用增加以及对能源储存系统的兴趣增加,需求激增。
预计在预测期内圆柱形部分将是最大的
由于圆柱形部分广泛应用于高性能应用和家用电子电器,因此预计将出现良好的成长。其统一的形状有利于堆迭和模组化设计,提高製造商的扩充性。此外,製造流程和材料的进步提高了性能并降低了成本,从而提高了各个领域的采用率。该领域的成长对于满足对可靠、高效的能源储存解决方案不断增长的需求至关重要。
工业领域预计在预测期内复合年增长率最高
由于各种应用中可靠的能源储存解决方案,预计工业领域在预测期内将出现最高的复合年增长率。製造和物料输送等行业越来越多地使用锂离子电池,因为与传统电池技术相比,锂离子电池具有更高的能量密度、更长的循环寿命和更少的维护。随着各行业追求永续性和能源效率,在工业环境中采用锂离子电池将提高生产力和业务效率,进一步推动市场成长。
由于对家用电子电器和可再生能源解决方案的高需求,预计亚太地区在预测期内将占据最大的市场占有率。中国、日本和韩国等国家处于锂离子电池生产和创新的前沿,在製造和研究方面投入大量资金。该地区致力于减少碳排放和推广清洁能源技术,进一步推动市场成长。此外,政府对电动车和可再生能源计划的补贴等倡议,以及当地供应链的开拓,正在加剧亚太地区锂离子电池市场的竞争。
由于对先进能源储存系统的需求不断增加,预计北美在预测期内将出现最高的复合年增长率。Panasonic和特斯拉等大公司正在扩大生产基地,以满足消费者和商业部门日益增长的需求。鼓励使用再生能源来源和减少排放的政府政策也推动了市场扩张。消费性电子产业的成长也增加了对高效电池的需求。凭藉对创新和永续性的重视,北美预计在全球锂离子电池产业中占据关键地位。
According to Stratistics MRC, the Global Lithium-ion Battery Market is accounted for $66.00 billion in 2024 and is expected to reach $162.47 billion by 2030 growing at a CAGR of 16.2% during the forecast period. A lithium-ion battery is a rechargeable energy storage device that uses lithium ions to move between the anode and cathode during charging and discharging cycles. Known for its high energy density, lightweight nature, and long cycle life, it powers various applications, including electric vehicles (EVs), consumer electronics, and renewable energy systems. Lithium-ion batteries are favoured for their efficiency and ability to store large amounts of energy in a compact size, making them essential in modern technologies like smartphones and electric cars.
Growing electric vehicle (EV) demand
The growing demand for electric vehicles offer high energy density, lightweight design, and long cycle life, making them ideal for EV applications. As governments push for greener transportation and stricter emission regulations, the shift from internal combustion engines to EVs accelerates. Moreover, this increases the need for advanced, efficient lithium-ion batteries to enhance vehicle range and performance, driving technological innovations and market growth in this sector.
High production costs
High production costs from expensive raw materials like lithium, cobalt, and nickel, which can fluctuate due to market demand and geopolitical factors. Additionally, complex manufacturing processes and the need for advanced technology contribute to overall expenses. These high costs can deter manufacturers from scaling production and investing in new technologies, ultimately slowing down the adoption of lithium-ion batteries in electric vehicles, consumer electronics, and renewable energy applications. This limits market growth and reduces competitiveness against alternative energy storage solutions.
Energy storage in grid applications
Energy storage in grid applications, such as solar and wind, into the power grid, lithium-ion batteries offer efficient and scalable energy storage solutions that help stabilize the grid, manage peak loads, and provide backup power. As governments and utilities prioritize decarbonisation and energy resilience, the demand for large-scale battery storage systems has increased. Moreover, the ability of lithium-ion batteries to store and discharge energy rapidly makes them ideal for balancing supply and demand, driving their adoption in grid applications.
Stringent environmental regulations
Stringent environmental regulations like lithium, cobalt, and nickel can have adverse environmental effects, such as habitat destruction, water pollution, and high carbon emissions. Governments and regulatory bodies are increasingly setting stricter guidelines on sustainable mining practices, waste management, and battery recycling. Compliance with these regulations raises production costs and limits material availability. Additionally, environmental concerns are pushing the industry toward developing alternative, eco-friendlier battery technologies, potentially slowing market growth.
Covid-19 Impact
The COVID-19 pandemic had a mixed impact on the lithium-ion battery market. Initially, the market faced disruptions due to factory shutdowns, supply chain interruptions, and reduced production of electric vehicles (EVs) and consumer electronics. Delays in mining operations also caused shortages in key raw materials like lithium and cobalt, further hindering production. However, the post-pandemic recovery saw a surge in demand driven by the accelerated shift to renewable energy, increased EV adoption, and growing interest in energy storage systems.
The cylindrical segment is expected to be the largest during the forecast period
The cylindrical segment is estimated to have a lucrative growth, due to its widespread use in high-performance applications and consumer electronics. Their uniform shape facilitates easy stacking and modular design, enhancing scalability for manufacturers. Additionally, advancements in manufacturing processes and materials have improved their performance and reduced costs, driving increased adoption across various sectors. This segment's growth is essential for meeting the rising demand for reliable and efficient energy storage solutions.
The industrial segment is expected to have the highest CAGR during the forecast period
The industrial segment is anticipated to witness the highest CAGR growth during the forecast period, due to reliable energy storage solutions across various applications. Industries such as manufacturing and material handling increasingly utilize lithium-ion batteries for their superior energy density, longer cycle life, and reduced maintenance compared to traditional battery technologies. As industries strive for sustainability and energy efficiency, the adoption of lithium-ion batteries in industrial settings enhances productivity and operational efficiency, further boosting market growth.
Asia Pacific is projected to hold the largest market share during the forecast period due to high demand for consumer electronics, and renewable energy solutions. Countries like China, Japan, and South Korea are at the forefront of lithium-ion battery production and innovation, with significant investments in manufacturing and research. The region's focus on reducing carbon emissions and promoting clean energy technologies further drives market growth. Additionally, government initiatives, such as subsidies for EVs and renewable energy projects, along with the development of local supply chains, are enhancing the competitiveness of the Asia-Pacific lithium-ion battery market.
North America is projected to have the highest CAGR over the forecast period, owing to increasing demand for advancements in energy storage systems. Major companies, including Panasonic and Tesla, are growing their production sites to keep up with the growing demands of the consumer and business sectors. Government policies that encourage the use of renewable energy sources and lower emissions also spur market expansion. The growing consumer electronics industry also adds to the need for efficient batteries. North America, with its emphasis on innovation and sustainability, is positioned to hold a prominent position in the worldwide lithium-ion battery industry.
Key players in the market
Some of the key players profiled in the Lithium-ion Battery Market include A123 Systems LLC, Amperex Technology Limited (ATL), BASF SE, BYD Company Limited, CATL (Contemporary Amperex Technology Co., Limited), EVE Energy Co., Ltd., Farasis Energy, Inc., Furukawa Electric Co., Ltd., Hitachi Chemical Co., Ltd., LG Energy Solution, Murata Manufacturing Co., Ltd., Northvolt AB, Panasonic Corporation, QuantumScape Corporation, Saft Groupe S.A., Samsung SDI, Sion Power Corporation, SK Innovation, Tesla, Inc. and Toshiba Corporation.
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Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.