市場調查報告書
商品編碼
1569791
2030 年鋅離子電池市場預測:按產品類型、產能、應用、最終用戶和地區分類的全球分析Zinc-ion Battery Market Forecasts to 2030 - Global Analysis By Product Type, Type, Capacity, Application, End User and By Geography |
根據Stratistics MRC預測,2024年全球鋅離子電池市場規模將達到107億美元,預計2030年將達到148億美元,預測期內複合年成長率為5.6%。
鋅離子電池是使用鋅離子作為主要電荷載體的能源儲存裝置。它通常由鋅製成的負極、由各種材料製成的正極以及促進離子移動的電解組成。這種電池因其比傳統鋰離子電池更安全、成本更低且更環保而受到關注。它提供出色的能量密度和穩定性,同時最大限度地減少火災和毒性風險,使其成為電網儲存和電動車的有前途的解決方案。
鋅離子電池的採用增加
隨著業界尋求鋰離子技術的替代品,鋅離子電池提供了更安全、更實惠、更環保的替代品。在電動車、可再生能源儲存和可攜式電子產品中不斷擴大的應用凸顯了其多功能性。此外,電池效率和性能的進步也引起了製造商和消費者的興趣。隨著越來越多的相關人員優先考慮綠色可靠的能源儲存解決方案,這一趨勢預計將加速。
缺乏足夠的電解質
市場上缺乏合適的電解質會帶來一些負面影響。有限的電解質選擇可能會導致能量密度降低和使用壽命縮短,最終影響消費者信心和市場成長。此外,這種短缺阻礙了技術創新,研究人員可能很難開發出提高離子移動率率的高性能電解質。因此,對次優材料的依賴將減緩鋅離子電池的廣泛採用,並限制其在永續能源解決方案中的潛力。
可再生能源併網需求增加
可再生能源整合需求的不斷成長正在顯著推動市場發展。隨著越來越多的國家採用太陽能和風力發電,需要可靠的能源儲存解決方案來管理能源供應的波動變得至關重要。鋅離子電池為儲存剩餘能源提供了一種有效且環保的替代方案,從而實現向再生能源來源的平穩過渡。其成本效益和安全性進一步增強了其吸引力,並使其成為實現永續能源目標的重要組成部分。
能源儲存空間有限
有限的能源儲存空間為市場帶來了挑戰。隨著對高效能能源解決方案的需求不斷增加,為電池系統找到合適的位置變得非常重要。這種限制可能會阻礙有效可再生能源整合和電網穩定所需的更大儲能設備的部署。此外,對緊湊設計的需求造成了容量與性能的權衡,這可能會限制鋅離子技術在各種應用中的廣泛使用。
COVID-19 大流行對市場產生了重大影響,擾亂了供應鏈並推遲了製造和研究活動。停工和限制阻礙了生產,導致關鍵材料和零件短缺。此外,隨著經濟不確定性的出現,可再生能源計劃的投資放緩。然而,這場危機也加速了人們對永續能源解決方案的興趣,因為疫情凸顯了能源系統彈性的重要性。
靈活細分市場預計在預測期內規模最大
預計靈活細分市場將在預測期內佔據最大的市場佔有率。鋅離子電池的輕量級和適應性強的設計使其能夠整合到小型電器、電動車和可再生能源系統中。此外,軟性電極材料的進步提高了這些電池的性能和擴充性,使鋅離子技術成為需要效率和空間適應性的應用的一個有前途的選擇。
預計汽車業在預測期內複合年成長率最高。
作為傳統鋰離子技術的有前景的替代品,汽車產業預計在預測期內複合年成長率最高。鋅離子電池具有固有的安全性、低成本和環保效益,適用於電動車(EV)和混合模式。隨著產業轉向永續交通,鋅離子技術提供了一個可行的解決方案,可以提高能源效率,同時解決對資源稀缺和環境影響的擔憂。
預計北美地區在預測期內將佔據最大的市場佔有率。主要公司正在投資研發,以提高電池的效率和性能,特別是電動車和可再生能源儲存。政府促進綠色技術的激勵措施和法規進一步支持了這一趨勢。隨著製造商尋求鋰離子電池的替代品,鋅離子技術預計將在該地區的能源模式中發揮關鍵作用。
在技術進步的推動下,亞太地區預計將在預測期內實現最高成長率。人們日益重視太陽能和風能等可再生能源,因此需要可靠的能源儲存系統。電池技術的創新,特別是水基鋅離子電池,預計將提高效率和性能。這些進步對於可攜式電子產品和電網能源儲存解決方案的應用至關重要。
According to Stratistics MRC, the Global Zinc-ion Battery Market is accounted for $10.7 billion in 2024 and is expected to reach $14.8 billion by 2030 growing at a CAGR of 5.6% during the forecast period. A zinc-ion battery is an energy storage device that uses zinc ions as the primary charge carriers. It typically consists of a zinc anode, a cathode made from various materials, and an electrolyte that facilitates ion movement. These batteries are gaining attention for their safety, low cost, and environmental benefits compared to traditional lithium-ion batteries. They offer a promising solution for grid storage and electric vehicles, as they provide good energy density and stability while minimizing the risk of fire or toxicity.
Rising adoptions of zinc-ion batteries
Zinc-ion batteries present a safer, more affordable, and environmentally friendly alternative to lithium-ion technology as industries search for substitutes. Their growing application in electric vehicles, renewable energy storage, and portable electronics highlights their versatility. Additionally, advancements in battery efficiency and performance are driving interest among manufacturers and consumers alike. This trend is expected to accelerate as more stakeholders prioritize eco-friendly and reliable energy storage solutions.
Scarcity of appropriate electrolytes
The scarcity of appropriate electrolytes in the market presents several negative effects. Limited electrolyte options can result in lower energy density and shorter lifespan, ultimately affecting consumer trust and market growth. Furthermore, this scarcity hampers innovation, as researchers may struggle to develop high-performance electrolytes that enhance ion mobility. Consequently, the reliance on suboptimal materials can delay the widespread adoption of zinc-ion batteries, limiting their potential in sustainable energy solutions.
Increasing demand for renewable energy integration
The growing demand for renewable energy integration is significantly boosting the market. As nations increasingly adopt solar and wind power, the need for reliable energy storage solutions becomes essential to manage fluctuations in energy supply. Zinc-ion batteries provide an effective, eco-friendly alternative for storing excess energy, enabling smoother transitions to renewable sources. Their cost-effectiveness and safety further enhance their appeal, positioning them as a vital component in achieving sustainable energy goals.
Limited space for energy storage
Limited space for energy storage presents challenges in the market. As the demand for efficient energy solutions grows, finding adequate locations for battery systems becomes critical. This constraint can hinder the deployment of larger storage units needed for effective renewable energy integration and grid stability. Additionally, the need for compact designs may lead to trade-offs in capacity and performance, potentially limiting the widespread adoption of zinc-ion technology in various applications.
The COVID-19 pandemic had a notable impact on the market, disrupting supply chains and causing delays in manufacturing and research activities. Lockdowns and restrictions hampered production, leading to shortages of key materials and components. Additionally, investment in renewable energy projects slowed as economic uncertainties emerged. However, the crisis also accelerated interest in sustainable energy solutions, as the pandemic highlighted the importance of resilience in energy systems.
The flexible segment is projected to be the largest during the forecast period
The flexible segment is projected to account for the largest market share during the projection period. The lightweight and adaptable design of zinc-ion batteries allows for integration into compact devices, electric vehicles, and renewable energy systems. Moreover, advancements in flexible electrode materials enhance the performance and scalability of these batteries, positioning zinc-ion technology as a promising option for applications requiring both efficiency and spatial adaptability.
The automotive segment is expected to have the highest CAGR during the forecast period
The automotive segment is expected to have the highest CAGR during the extrapolated period as a promising alternative to traditional lithium-ion technologies. With their inherent safety, lower cost, and environmental benefits, zinc-ion batteries are well-suited for electric vehicles (EVs) and hybrid models. As the industry shifts towards sustainable transportation, zinc-ion technology offers a viable solution to enhance energy efficiency while addressing concerns about resource scarcity and environmental impact.
North America region is expected to hold the largest share of the market during the forecast period. Key players are investing in research and development to enhance battery efficiency and performance, particularly for electric vehicles and renewable energy storage. Government incentives and regulations promoting green technologies further support this trend. As manufacturers seek alternatives to lithium-ion batteries, zinc-ion technology is positioned to play a pivotal role in the region's energy landscape.
Asia Pacific is expected to register the highest growth rate over the forecast period driven by technological advancements. The growing emphasis on renewable energy sources such as solar and wind power necessitates reliable energy storage systems. Innovations in battery technology, particularly in aqueous zinc-ion batteries, are expected to lead to increased efficiency and performance. These advancements are crucial for applications in portable electronics and grid energy storage solutions.
Key players in the market
Some of the key players in Zinc-ion Battery market include ZincFive, Inc., FDK CORPORATION, Eastman Kodak Company, ZPower, Nippo Batteries, GPB International Limited, Energizer Holdings, Inc., Panasonic Corporation, Salient Energy, Hindustan Zinc, Form Energy, Jinko Power, Hi-tech Power, Aquion Energy and NexGen Energy Storage.
In July 2024, Panasonic Energy Co., Ltd., announced that it has entered into an agreement regarding joint development with Australia's national science agency, CSIRO. The agreement covers the development of new nickel laterite processing technologies for recovering nickel, an essential raw material in the manufacture of lithium-ion batteries.
In April 2024, Panasonic Energy Co. Ltd., is in talks with Indian Oil Corp. Ltd for a joint venture to manufacture cylindrical lithium-ion batteries for two- and three-wheel vehicles and energy storage systems in the Indian market. It has signed a binding term sheet and initiated discussions with Indian Oil Corp. Ltd to draw a framework for the formation of the joint venture.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.