市場調查報告書
商品編碼
1288859
全球鋰空氣電池市場研究報告 - 行業分析、規模、佔有率、成長、趨勢和2023至2030年預測Global Lithium-air Batteries Market Research Report - Industry Analysis, Size, Share, Growth, Trends and Forecast 2023 to 2030 |
全球鋰空氣電池市場的需求預計到2030年將從2022年的26.61百萬美元達到近11.69百萬美元的市場規模,在2023-2030年研究期間的複合成長率為10.3%。在數量方面,市場在2022年被計算為XX單位,預測到2030年將達到XX單位,在2023-2030年期間的複合年成長率為XX%。
鋰空氣電池是一種可充電電池,使用鋰金屬和氧氣作為其活性成分。這些電池也被稱為鋰-氧電池或鋰-空氣電池。在鋰-空氣電池中,金屬鋰被用作陽極,而氧氣被用作陰極。氧氣通過多孔電極從空氣中提供,這使得氧氣與陰極上的鋰離子和電子反應,形成過氧化鋰並釋放能量。然後,鋰離子通過電解質到達陽極,與金屬鋰反應,釋放出更多的能量並形成氧化鋰。
隨著電動汽車的日益普及,對可以提供更長續航里程和更快充電時間的高容量電池的需求不斷增長。鋰空氣電池有可能提供比鋰離子電池高得多的能量密度,鋰離子電池是目前電動汽車市場上佔主導地位的電池技術。因此,鋰空氣電池被視為電動汽車的有前途的候選者。風能和太陽能等可再生能源對能源的需求不斷增長,推動了對更高效、更可靠的儲能解決方案的需求。鋰空氣電池具有提供高能量密度和長期存儲能力的潛力,使其成為可再生能源存儲的有前途的候選者。鋰空氣電池有可能提供比鋰離子電池高得多的能量密度,這意味著它們可以在單位重量上存儲更多的能量。它們還具有更長生命週期的潛力,這意味著它們可以充電和使用更長的時間,這使得它們適用於電動汽車的便攜式電子產品。世界各地的政府和私營公司正在投資電池開發的新技術,包括鋰空氣電池。這包括研發資金,以及鼓勵採用清潔能源技術的激勵措施和法規。然而,在鋰空氣電池商業化之前,必須克服一些技術挑戰。這些問題包括與陰極穩定性、氧電極效率和電池長期耐用性有關的問題。研究人員正在努力克服這些挑戰並提高鋰空氣電池的性能,使其在實際應用中更加實用。
該報告涵蓋了波特五力模型、市場吸引力分析和價值鏈分析。這些工具有助於清楚地了解行業的結構,並在全球範圍內評估競爭的吸引力。此外,這些工具還對全球鋰空氣電池市場的每個細分市場進行了全面評估。鋰空氣電池行業的成長和趨勢為這項研究提供了一個整體的方法。
這一部分涵蓋了區域前景,強調了北美、歐洲、亞太、拉美、中東和非洲的鋰空氣電池市場的當前和未來需求。此外,該報告重點關注所有突出地區的個別應用部門的需求、估計和預測。
該研究報告還涵蓋了市場主要參與者的全面概況和對全球競爭格局的深入看法。鋰空氣電池市場的主要參與者包括Phinergy, EV Dynamics (Holdings) Limited, Fuji Pigment Co.Ltd., 新疆聯合世界股份有限公司Ltd., ACTXE Limited, De Nora Tech Inc, Duracell Inc, IBM Corporation, PolyPlus, Lithium Air Industries Inc.這一部分包括對競爭格局的整體看法,包括各種戰略發展,如主要的合併和收購,未來的能力,夥伴關係,財務概況,合作,新產品的開發,新產品的推出,以及其他發展。
如果你有任何定製要求,請寫信給我們。我們的研究團隊可以根據您的需要提供定製報告。
注意- 在公司簡介中,財務細節和最近的發展情況取決於可用性,可能不包括私人公司在內。
The global demand for Lithium-air Batteries Market is presumed to reach the market size of nearly USD 11.69 MN by 2030 from USD 26.61 MN in 2022 with a CAGR of 10.3% under the study period of 2023 - 2030. Regarding volume, the market was calculated XX Units in 2022 and forecast to touch XX Units by 2030 with a CAGR of XX% during 2023-2030.
Lithium-air batteries are a type of rechargeable battery that use lithium metal and oxygen as their active components. These batteries are also known as lithium-oxygen batteries or Li-air batteries. In a lithium-air battery, lithium metal is used as the anode, while oxygen is used as the cathode. The oxygen is supplied from the air through a porous electrode, which allows the oxygen to react with the lithium ions and electrons on the cathode, forming lithium peroxide and releasing energy. The lithium ions then travel through the electrolyte to the anode and react with the lithium metal, releasing more energy and forming lithium oxide.
With the increasing adoption of EVs, there is a growing demand for high-capacity batteries that can provide longer ranges and faster charging times. Lithium-air batteries have the potential to offer significantly higher energy densities than lithium-ion batteries, which are currently the dominant battery technology in the EV market. As a result, lithium-air batteries are seen as a promising candidate for use in EVs. The growing demand for energy from sources such as wind and solar power, which are renewable, is driving the need for more efficient and reliable energy storage solutions. Lithium-air batteries have the potential to offer high energy density and long-term storage capabilities, making them a promising candidate for renewable energy storage. Lithium-air batteries have the potential to offer much higher energy densities than lithium-ion batteries, which means they can store more energy per unit weight. They also have the potential for longer life cycles, meaning they can be recharged and used for a longer period of time which makes them applicable in portable electronics to EVs. Governments and private companies around the world are investing in the new technologies for battery development, including lithium-air batteries. This includes funding for research and development, as well as incentives and regulations that encourage the adoption of clean energy technologies. However, there are several technical challenges that must be overcome before lithium-air batteries can be commercialized. These include issues related to the stability of the cathode, the efficiency of the oxygen electrode, and the long-term durability of the battery. Researchers are working to overcome these challenges and improve the lithium-air batteries performance, making them more practical for real-world applications.
The report covers Porter's Five Forces Model, Market Attractiveness Analysis, and Value Chain analysis. These tools help to get a clear picture of the industry's structure and evaluate the competition attractiveness at a global level. Additionally, these tools also give an inclusive assessment of each segment in the global market of lithium-air batteries. The growth and trends of Lithium-air Batteries Industry provide a holistic approach to this study.
This section of the lithium-air batteries market report provides detailed data on the segments by analyzing them at country and regional level, thereby assisting the strategist in identifying the target demographics for the respective product or services with the upcoming opportunities.
This section covers the regional outlook, which accentuates current and future demand for the Lithium-air Batteries market across North America, Europe, Asia-Pacific, Latin America, and Middle East & Africa. Further, the report focuses on demand, estimation, and forecast for individual application segments across all the prominent regions.
The research report also covers the comprehensive profiles of the key players in the market and an in-depth view of the competitive landscape worldwide. The major players in the lithium-air batteries market include Phinergy, EV Dynamics (Holdings) Limited, Fuji Pigment Co. Ltd., Xinjiang Joinworld Co. Ltd., ACTXE Limited, De Nora Tech Inc, Duracell Inc, IBM Corporation, PolyPlus, Lithium Air Industries Inc. This section consists of a holistic view of the competitive landscape that includes various strategic developments such as key mergers & acquisitions, future capacities, partnerships, financial overviews, collaborations, new product developments, new product launches, and other developments.
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Kindly note that the above listed are the basic tables and figures of the report and are not limited to the TOC.