![]() |
市场调查报告书
商品编码
1423741
到 2030 年汽车超级电容器市场预测:按类型、车辆类型、电动车、应用和地区进行的全球分析Automotive Ultracapacitor Market Forecasts to 2030 - Global Analysis By Type (Pseudo Capacitor, Double-Layered Capacitors and Hybrid Capacitors), Vehicle Type (Passenger Vehicle and Commercial Vehicle), Electric Vehicle, Application and By Geography |
根据Stratistics MRC的数据,2023年全球汽车超级电容器市场规模为19亿美元,预计到2030年将达到69亿美元,预测期内复合年增长率为19.6%。
汽车超级电容器是汽车工业中用于储存和快速释放电能的能源储存装置。超级电容器具有高功率密度,非常适合需要瞬时能耗的应用,例如电动和混合动力汽车的再生煞车和加速。
汽车电动进展
随着汽车产业向电动和混合动力汽车转型,对先进能源储存解决方案的需求正在迅速增加。超级电容器在这一转变中发挥着至关重要的作用,提供了再生煞车和启动停止系统等应用所必需的快速充电和放电功能。与传统电池不同,超级电容器更擅长快速提供电力,从而提高电动车的整体效率和性能。这些因素正在加速市场需求。
温度敏感性
超级电容器对极端温度很敏感,这种敏感性为无缝整合到汽车应用中带来了挑战。高温会加速超级电容器的劣化并缩短其使用寿命,导致性能劣化和维护要求增加。此外,极端寒冷的温度可能会干扰电容器提供最佳功率的能力,从而影响快速加速和再生煞车等关键操作场景下的效率。
消费者意识不断增强
随着环保意识的增强,消费者越来越意识到传统汽车对环境的影响,并积极寻求更环保的替代方案。此外,消费者越来越了解超级电容器在电动和混合动力汽车中的优势,并认识到超级电容器在加速和煞车过程中快速能源储存的作用。人们对超级电容器技术的认识不断提高,正在改变消费者的期望,并促使汽车製造商在其车辆中提供这些尖端的能源储存选项。
电池技术的竞争
虽然超级电容器提供快速充电和放电功能,但它们面临着来自锂离子和其他先进电池技术的能量密度、成本效益和整体性能不断进步的激烈竞争。此外,成熟的电池生产基础设施以及规模经济有助于提高电池的成本效益,使其成为许多汽车製造商的首选,从而阻碍了市场需求。
COVID-19 的影响
COVID-19 大流行对汽车超级电容器市场产生了重大影响。疫情期间,全球供应链、製造业和消费者需求的广泛中断导致整个汽车产业暂时受挫,影响了超级电容器市场。此外,汽车行业新车销量下降,影响了包括超级电容器在内的先进技术的整合。
双层电容器领域预计将在预测期内成为最大的领域
据估计,双层电容器领域占据最大份额。这些能源储存装置具有独特的双层电极结构,由高表面积多孔碳材料组成。这种设计可以有效地储存和释放电能。与传统电池不同,双壁电容器能够快速充电和放电,非常适合在再生煞车和加速过程中恢復和释放能量。其快速反应时间提高了车辆的整体性能和效率。
电池电动车领域预计在预测期内复合年增长率最高
预计纯电动汽车产业在预测期内将出现良好成长。纯电动车中的超级电容器主要用作补充能源储存系统,解决传统锂离子电池的主要限制。此外,具有快速充电和放电功能的超级电容器可以无缝地满足这些高功率需求,优化能量流并延长电池寿命。将超级电容器纳入纯电动车可以提高能源效率、减少充电时间并提高车辆的整体性能。
在估计期间,北美占据了最大的市场占有率。在该地区,永续和节能交通的努力正在推动对超级电容器的需求,超级电容器是提高电动和混合动力汽车性能的关键组成部分。此外,在北美,更严格的环境法规和对气候变迁意识的增强正在加速向更清洁、更环保的汽车技术的转变。
由于技术创新和汽车行业的快速增长,预计亚太地区在预测期内将实现盈利增长。由于电动车(EV)的快速成长以及对绿色和永续交通解决方案的重视,中国这个全球最大的汽车製造国对超级电容器的需求尤其高。该地区减少碳排放的努力与超级电容器在提高能源效率和支持电动车再生煞车系统方面的优势相一致。
According to Stratistics MRC, the Global Automotive Ultracapacitor Market is accounted for $1.9 billion in 2023 and is expected to reach $6.9 billion by 2030 growing at a CAGR of 19.6% during the forecast period. An automotive ultra capacitor is an energy storage device used in the automotive industry to store and quickly release electrical energy. Ultra capacitors excel at delivering high power density, making them ideal for applications that require quick bursts of energy, such as regenerative braking and acceleration in electric and hybrid vehicles.
Increasing electrification of vehicles
As the automotive industry undergoes a transformative shift towards electric and hybrid vehicles, the demand for advanced energy storage solutions has surged. Ultra capacitors play a pivotal role in this transition, offering rapid charge and discharge capabilities essential for applications like regenerative braking and start-stop systems. Unlike traditional batteries, ultra capacitors excel at delivering quick bursts of power, enhancing the overall efficiency and performance of electrified vehicles. These factors are accelerating market demand.
Temperature sensitivity
Ultra capacitors are sensitive to temperature extremes, and this sensitivity poses challenges for their seamless integration into automotive applications. High temperatures can accelerate aging and reduce the lifespan of ultra capacitors, potentially leading to performance degradation and increased maintenance requirements. Moreover, extremely low temperatures can hinder the capacitors' ability to deliver optimal power, affecting their efficiency during critical operational scenarios like rapid acceleration or regenerative braking.
Rising consumer awareness
As awareness of environmental issues grows, consumers are increasingly conscious of the ecological impact of traditional vehicles and are actively seeking greener alternatives. Furthermore, consumers are becoming more informed about the advantages of ultra capacitors in electric and hybrid vehicles, recognizing their role in quick energy storage and release during acceleration and braking. The heightened awareness of ultra capacitor technology is driving a shift in consumer expectations, which is urging automakers to offer these cutting-edge energy storage options in their vehicles.
Competition from battery technologies
While ultra capacitors offer rapid charge and discharge capabilities, they face stiff competition from the continual advancements in energy density, cost-effectiveness, and overall performance seen in lithium-ion and other advanced battery technologies. Moreover, the established infrastructure for battery production, along with economies of scale, contributes to the cost-effectiveness of batteries, making them a preferred choice for many automakers, which hampers market demand.
Covid-19 Impact
The COVID-19 pandemic had a notable impact on the automotive ultra capacitor market. The widespread disruptions in global supply chains, manufacturing, and consumer demand during the pandemic led to temporary setbacks in the automotive industry as a whole, which affected the ultra capacitor market. Additionally, the automotive sector faced a decline in new vehicle sales, which affected the integration of advanced technologies, including ultra capacitors.
The double-layered capacitors segment is expected to be the largest during the forecast period
The double-layered capacitors segment is estimated to hold the largest share. These energy storage devices are characterized by their unique double-layered electrode structure, consisting of a porous carbon material with a high surface area. This design enables them to store and release electrical energy efficiently. Unlike traditional batteries, double-layered capacitors offer rapid charge and discharge capabilities, making them ideal for capturing and releasing energy during regenerative braking and acceleration. Their quick response time enhances overall vehicle performance and efficiency.
The battery electric vehicles segment is expected to have the highest CAGR during the forecast period
The battery electric vehicles segment is anticipated to have lucrative growth during the forecast period. Ultra capacitors in BEVs primarily serve as supplementary energy storage systems, addressing the key limitations of traditional lithium-ion batteries. Additionally, ultra capacitors, with their rapid charge and discharge capabilities, seamlessly handle these high-power demands, optimizing energy flow and extending the lifespan of the battery. The integration of ultra capacitors in BEVs results in improved energy efficiency, faster charging times, and enhanced overall vehicle performance.
North America commanded the largest market share during the extrapolated period. The region's commitment to sustainable and energy-efficient transportation has driven the demand for ultra capacitors, essential components for enhancing the performance of electric and hybrid vehicles. Moreover, in North America, stringent environmental regulations and a growing awareness of climate change have accelerated the shift towards cleaner and greener automotive technologies.
Asia Pacific is expected to witness profitable growth over the projection period, owing to technological innovation, and a burgeoning automotive sector. In China, a global automotive manufacturing powerhouse, the demand for ultra capacitors is notably high, driven by the rapid growth of electric vehicles (EVs) and the emphasis on green and sustainable transportation solutions. The region's commitment to reducing carbon emissions aligns with the benefits of ultra capacitors in enhancing energy efficiency and supporting regenerative braking systems in electric vehicles.
Key players in the market
Some of the key players in the Automotive Ultracapacitor Market include Maxwell Technologies, Yunasko, Nesscap, Skeleton Technologies, Ioxus, Panasonic, Nippon, NEC Tokin, Tecate Group and Evans Capacitor Company.
In January 2023, Maxwell Energy Systems said it has entered into a long-term partnership with Hero Electric for the supply of advanced battery management systems. Under the partnership, Maxwell will supply more than 10 lakh units of its battery management systems (BMS) over the next three years to Hero Electric.
In October 2022, Skeleton Technologies introduced its Super Battery and unveiled Shell as a partner. Super Battery is an innovative technology combining the characteristics of super capacitors and batteries.
In July 2022, Skeleton Technologies and Siemens have agreed on a far-reaching technology partnership for the development, planning and implementation of a fully automated, digital manufacturing technology for the production of super capacitors in Germany.