市场调查报告书
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2030 年先进铅酸电池市场预测:按类型、施工方法、最终用户和地区分類的全球分析Advanced Lead Acid Battery Market Forecasts to 2030 - Global Analysis By Type, Construction Method (Flooded Battery, VRLA, Absorbent Glass Mat Batteries, Gel Batteries and Other Construction Methods), End User and by Geography |
根据Stratistics MRC的数据,2024年全球先进铅酸电池市场规模为266.2亿美元,预计到2030年将达到429.6亿美元,预测期内复合年增长率为8.3%。
与传统铅酸电池相比,先进材料和改进设计的结合提高了先进铅酸电池的性能和使用寿命。这些电池通常采用创新技术,实现更高的能量密度、更好的循环寿命和更好的充电接受能力。此外,新型铅酸电池是固定和行动应用的热门选择,因为它们能够为多种应用提供可靠的电力,包括备用电源、汽车系统和可再生能源储存。
根据国际电池理事会(2023年1月)的数据,北美铅酸电池的年产能超过206GWh。
可再生能源储存需求不断成长
随着世界各地对清洁、可再生能源的努力不断扩大,迫切需要能够有效储存和管理太阳能和风能产生的间歇性电力的能源储存系统。先进的铅酸电池越来越多地用于电网规模的能源储存计划,因为它们具有扩充性、价格实惠,并且能够短期和长期储存能量。随着离网可再生能源装置和微电网在偏远和服务不足地区的扩张,对先进铅酸电池的需求越来越大。此外,这些设施提供了一种可靠且经济高效的方式来储存多余电力并确保能源的稳定供应。
与替代品相比能量密度较低
与锂离子电池和固态电池等现代电池技术相比,现代铅酸电池的低能量密度是其主要缺点之一。这项限制限制了其在重量和空间至关重要的行业中的使用,例如现代电动车和便携式电子产品。此外,铅酸电池的能量密度较低,需要更复杂的技术才能储存与高密度电池相同的能量,这使得它们对于需要轻质、紧凑解决方案的应用来说不太有吸引力。
先进电池技术的进步
先进铅酸电池技术的持续研究和开发为市场扩张提供了许多机会。透过更好的板栅材料、改进的电解配方和改进的电池管理系统等技术创新,铅酸电池的性能和寿命不断提高。製造商可以透过投资研发来开发提高能量密度、延长循环寿命和提高效率的新产品,从而解决铅酸电池技术目前的一些缺点。此外,探索将锂离子或超级电容与铅酸电池整合的混合电池选择可能会创造新的应用和市场机会。
来自替代技术的激烈竞争
先进铅酸电池市场与液流电池、固态电池、锂离子电池等新型电池技术竞争激烈。这些替代技术通常可以提供更好的安全特性、更长的循环时间和更高的能量密度。例如,锂离子电池正在成为需要高能量密度和长期可靠性的应用(例如电动车和便携式电子设备)的行业标准。此外,随着先进铅酸电池技术的进一步发展和价格的降低,其市场占有率和成长潜力受到直接威胁。
COVID-19 大流行导致生产放缓、扰乱国际供应链和改变原材料成本,对先进铅酸电池市场产生了重大影响。疫情导致工业活动下降和生产设施暂时关闭,导致前置作业时间延长并减缓了电池製造零件的供应。此外,由于消费者支出减少和经济不确定性,对先进铅酸电池的需求下降,这影响了能源和基础设施计划的投资。为了部分抵消这种负面影响并刺激一些行业的需求,疫情加速了数位解决方案和远端工作的采用,导致对可靠备用电源系统的需求增加。
VRLA(阀控式铅酸电池)产业预计在预测期内规模最大
VRLA(阀控铅酸电池)细分市场在先进铅酸电池市场中占最大份额。 VRLA 电池因其可靠的效能和最少的维护要求而被广泛应用于各种应用。 VRLA 电池的密封结构可最大限度地减少洩漏并消除频繁充电的需要,使其成为备用电源应用和关键系统的理想选择。此外,VRLA 电池的效率、安全性和多功能性使其成为工业和消费应用的最佳选择,从而支撑了其在该领域的主导地位。
预计汽车和运输业在预测期内复合年增长率最高
在先进铅酸电池市场中,汽车和运输业的复合年增长率最高。电动和混合动力汽车越来越多地使用先进的铅酸电池,这些电池提供可靠且经济实惠的能源储存选择,推动了该行业的成长。先进的铅酸电池比传统铅酸电池更耐用,能量密度更高,对于寻求降低成本、提高车辆性能和电池寿命的汽车製造商来说是一个有吸引力的选择。此外,该细分市场的成长显示了交通技术电气化的主要趋势。
北美在先进铅酸电池市场中占据压倒性份额。这一优势得益于该地区先进的汽车工业,极大地推动了混合动力汽车和电动车对高性能电池的需求。此外,由于北美强大的基础设施和技术进步,先进的铅酸电池广泛应用于各种应用,包括备用电源系统和可再生能源储存。该地区大量的研发支出进一步巩固了其在市场中的主导地位。
先进铅酸电池市场正以亚太地区最高的复合年增长率成长。该地区快速的工业化、对能源储存技术不断增长的需求以及蓬勃发展的汽车工业(尤其是在中国和印度等国家)是这一繁荣的关键驱动力。在亚太地区,人们越来越关注电动车和再生能源来源,推动了先进铅酸电池的使用。此外,基础设施发展的大量投资和政府的支持性政策进一步支持了该地区的动态成长轨迹。
According to Stratistics MRC, the Global Advanced Lead Acid Battery Market is accounted for $26.62 billion in 2024 and is expected to reach $42.96 billion by 2030 growing at a CAGR of 8.3% during the forecast period. The performance and longevity of advanced lead-acid batteries are increased by combining advanced materials and improved design over traditional lead-acid batteries. Innovations that enable higher energy density, better cycle life, and better charge acceptance are commonly found in these batteries. Moreover, newer lead-acid batteries are a popular option for both stationary and mobile applications because of their consistent power delivery in multiple applications, including backup power, automotive systems, and renewable energy storage.
According to Battery Council International (January 2023), the annual manufacturing capacity of lead batteries in North America is over 206 GWh.
Increasing requirement for storage of renewable energy
Energy storage systems that can efficiently store and manage intermittent power produced by solar and wind sources are critically needed as the world's push toward clean and renewable energy grows. Because they are scalable, affordable, and capable of storing energy for both short and long periods of time, advanced lead-acid batteries are being utilized more and more in grid-scale energy storage projects. Advanced lead-acid batteries are becoming more and more in demand as off-grid renewable energy installations and micro grids expand in remote or underserved areas. Additionally, these installations offer a dependable and cost-effective way to store excess power and guarantee a steady supply of energy.
Low energy density in relation to alternatives
The lower energy density of modern lead-acid batteries in comparison to more recent battery technologies, like lithium-ion and solid-state batteries is one of their main drawbacks. This constraint limits their use in industries where weight and space are essential, like in contemporary electric cars and portable electronics. Furthermore, more sophisticated lead-acid batteries are needed to store the same amount of energy as their higher-density counterparts due to the lower energy density, which may reduce their appeal in applications that call for lightweight and compact solutions.
Advancement of advanced battery technologies
There are plenty of chances for market expansion in the ongoing research and development of advanced lead-acid battery technologies. The performance and lifespan of lead-acid batteries are constantly being improved by innovations like better grid materials, improved electrolyte formulations, and improved battery management systems. Manufacturers can address some of the present drawbacks of lead-acid technology by investing in R&D to create new products with improved energy density, extended cycle life, and increased efficiency. Moreover, investigating hybrid battery options that integrate lithium-ion or super capacitors with lead-acid could lead to new applications and market opportunities.
Vigorous rivalry from alternative technologies
The market for advanced lead-acid batteries is highly competitive, with new battery technologies like flow, solid-state, and lithium-ion batteries. Better safety features, longer cycle times, and higher energy densities are frequently provided by these substitutes. In applications like electric vehicles and portable electronics that demand a high energy density and long-term dependability, lithium-ion batteries, for example, have emerged as the industry standard. Additionally, the market share and growth potential of advanced lead-acid batteries are directly threatened by these technologies as they develop further and become more affordable.
The COVID-19 pandemic had a major effect on the market for advanced lead-acid batteries by delaying production, upsetting international supply chains, and altering the cost of raw materials. The pandemic caused a decrease in industrial activity and the temporary closure of production facilities, which prolonged lead times and slowed down the supply of parts for battery manufacturing. Furthermore, the demand for advanced lead-acid batteries declined as a result of reduced consumer spending and economic uncertainty affecting investments in energy and infrastructure projects. To partially offset the negative effects and boost demand in some industries, the pandemic also accelerated the adoption of digital solutions and remote work, which in turn increased the need for dependable backup power systems.
The VRLA (Valve Regulated Lead Acid Battery) segment is expected to be the largest during the forecast period
The VRLA (Valve Regulated Lead Acid) Batteries market segment has the largest share in the advanced lead acid battery market. VRLA batteries are widely used in many different applications because of their reputation for dependable performance and minimal maintenance needs. They are perfect for use in backup power applications and critical systems because of their sealed construction, which minimizes spills and lessens the need for frequent water refilling. Moreover, the efficiency, safety, and versatility of VRLA batteries, which make them a top option for both industrial and consumer applications, are what propel this segment's dominance.
The Automotive and Transportation segment is expected to have the highest CAGR during the forecast period
The Automotive and Transportation segment of the Advanced Lead Acid Battery Market has the highest CAGR. The increasing use of advanced lead-acid batteries in electric and hybrid vehicles, which provide dependable and affordable energy storage options, is fueling the growth of this industry. Because advanced lead-acid batteries are more durable and have a higher energy density than traditional lead-acid batteries, they present a compelling alternative for automakers looking to reduce costs and increase vehicle performance and battery life. Additionally, the growth of this segment is indicative of a larger trend in transportation technologies toward electrification.
North America has a dominant market share in the advanced lead-acid battery market. This dominance is attributable to the advanced automotive industry in the region, which fuels a significant demand for high-performance batteries in hybrid and electric cars. Furthermore, advanced lead-acid batteries are widely used in many different applications, such as backup power systems and renewable energy storage, owing to North America's strong infrastructure and technological advancements. Significant R&D expenditures made by the area support its dominant position in the market even more.
The market for advanced lead-acid batteries is growing at the highest CAGR in the Asia-Pacific region. The region's fast industrialization, rising need for energy storage technologies, and thriving automotive industry-particularly in nations like China and India-are the main drivers of this boom. The Asia-Pacific region's increasing focus on electric vehicles and renewable energy sources is propelling the use of advanced lead-acid batteries. Moreover, the region's dynamic growth trajectory is further bolstered by substantial investments in infrastructure development and supportive policies from the government.
Key players in the market
Some of the key players in Advanced Lead Acid Battery market include Exide Technologies, Crown Battery Manufacturing Co., Gs Yuasa International Ltd, Enersys, Hitachi, Amara Raja Batteries Ltd, Narada Power Source Co. Ltd., Leoch International Technology Ltd., Midac Batteries S.P.A, Panasonic Holdings Corporation, Trojan Battery Company, Clarios, Furukawa Battery Co., Ltd, East Penn Manufacturing Co. Inc. and Chaowei Power Holdings Limited.
In June 2024, Amara Raja Advanced Cell Technologies Pvt Ltd on said it has signed a licensing agreement with GIB EnergyX Slovakia s.r.o., for lithium-ion cells technology. As part of the agreement, GIB EnergyX, a subsidiary of Gotion High-Tech Co Ltd, will license Gotion's 'LFP technology' for lithium-ion cells to Amara Raja Advanced Cell Technologies (ARACT), a wholly-owned arm of Amara Raja Energy & Mobility Ltd (ARE&M), the company said in a statement.
In May 2024, Stored energy technologies provider EnerSys has entered into a definitive agreement to acquire for $208 million Bren-Tronics, a manufacturer of portable power products for defense customers. EnerSys said it expects to close the all-cash transaction by the second quarter of 2024.
In May 2023, GS Yuasa International Ltd. (GS Yuasa) and Honda Motor Co., Ltd. (Honda) announced that they have signed a joint venture agreement toward the establishment of a new company. Honda and GS Yuasa Reach Basic Agreement Toward Collaboration for a High-capacity, High-output Lithium-ion Battery, the two companies have been discussing specifics for collaboration on high-capacity, high-output lithium-ion batteries, mainly for EVs.