市场调查报告书
商品编码
1449233
非水电解质市场 - 全球和区域分析:重点关注应用、最终用途行业、类型以及区域和国家层面分析 - 分析和预测,2023-2032 年Non-Aqueous Electrolyte Market - A Global and Regional Analysis: Focus on Application, End-Use Industry, Type, and Regional and Country-Level Analysis - Analysis and Forecast, 2023-2032 |
全球非水电解质市场:产业概况
随着汽车、消费性电子和能源储存等最终用途产业需求的增加,预计对非水电解质的需求也会成长。此外,预计在2023年至2032年的预测期内,美国、加拿大、德国、法国、中国和印度等几个已开发经济体的汽车产业将越来越多地采用非水电解液。其他,预计将进一步增加非水电解液市场的进展。然而,人们对锂离子电池需求的日益重视,是有机、无机等非水电解液需求不断增长的关键驱动力,而汽车产量的激增则显着影响了非水电解液的增长。电解液市场。然而,在价格敏感的市场中,原物料价格的波动可能会阻碍消费者的采用,并对全球非水电解质市场构成挑战。
市场生命週期阶段
主要市场统计数据 | |
---|---|
预测期 | 2023 - 2032 |
2023年评估 | 36.4 亿美元 |
2032年预测 | 146.5 亿美元 |
CAGR | 16.71% |
非水电解液市场正处于成长期。该市场受到全球电动车日益普及的推动,预计将提振市场。此外,全球对储能解决方案的投资不断增长、城市化进程不断加快以及消费者支出也促进了非水电解质市场的整体成长。此外,非水电解质市场预计将受益于新兴市场生产设施的扩张,这是一项策略性倡议,对已开发经济体在非水电解质市场具有巨大潜力。
工业影响
非水电解质具有许多优点。非水电解质可显着增强锂离子电池的性能,尤其是在电动车等高能量密度应用中。碳酸乙烯酯等溶剂可拓宽电压窗口,提高能量密度并满足扩展续航里程和快速充电的需求。此外,这些电解质具有更广泛的温度范围,确保电池在各种气候下都能发挥最佳功能。它们在极端条件下的稳定性符合汽车安全标准,有助于实现更安全、更可靠的汽车操作。此外,非水电解质的低自放电率有助于延长设备的使用寿命,满足消费者对耐用和持久电子产品的期望。他们的不断进步推动创新,塑造消费科技的未来。它们的适应性跨越产业,促进材料和技术的创新,促进医疗设备、建筑材料以及航空航天和国防系统的进步,展示其多功能应用。
市场区隔:
细分 1:按应用
从应用来看,锂离子电池在非水力发电解液市场处于领先地位。
细分 2:依最终用途产业
就最终用途产业而言,全球非水电解质市场预计将由汽车领域主导。
细分 3:按类型
就类型而言,预计该市场将由有机市场主导。
细分 4:按地区
在非水电解液市场中,由于有机和无机等非水电解液的持续增长,预计亚太地区在生产和采用方面将获得牵引力,而北美地区预计将拥有关键的电解液。该地区的製造商。
全球非水电解质市场最新动态
需求 - 驱动因素与挑战
以下是全球非水电解质市场的需求驱动因素:
由于以下挑战,预计市场也将面临一些限制:
该报告如何为组织增加价值?
产品/创新策略:产品部分帮助读者了解锂离子电池、钠离子电池、固态电池等各种应用的不同非水电解质。此外,该研究也为读者提供了基于最终用途产业(包括汽车、消费性电子产品、能源储存等)的非水电解质市场的详细了解。
成长/行销策略:非水电解质市场已经看到市场主要参与者的重大发展,例如业务扩张、伙伴关係、合作、併购和合资企业。这些公司青睐的策略是产品开发、业务扩张和收购,以加强其在非水电解质市场的地位。例如,三星电子有限公司、英伟达公司、英特尔公司、IBM 和美光科技公司等公司都非常积极地制定策略决策。
竞争策略:研究中分析和描述的市场主要参与者包括非水电解质製造商和整个生态系统。此外,还对非水电解质市场的参与者进行了详细的竞争基准测试,以帮助读者了解参与者如何相互竞争,呈现出清晰的市场格局。此外,合作伙伴关係、协议、收购和合作等全面的竞争策略将帮助读者了解市场上未开发的收入空间。
主要市场参与者和竞争摘要
所介绍的公司是根据主要专家收集的意见、分析公司覆盖范围、产品组合和市场渗透率而选择的。
非水电解液市场按类型细分,其中无机电解液约占2022年非水电解液总收入的61.6%,有机电解液约占38.4%。
该市场的一些知名品牌包括:
不属于上述调查的公司在报告的不同部分(如果适用)都有很好的代表性。
范围和定义
Global Non-Aqueous Electrolyte Market: Industry Overview
The demand for the non-aqueous electrolyte is anticipated to grow with the increasing demand from end-use industries such as automotive, consumer electronics, and energy storage. Furthermore, it is anticipated that during the projected period, i.e., 2023-2032, the increasing adoption of non-aqueous electrolyte in the automotive industry in several advanced economies, including the U.S., Canada, Germany, France, China, and India, among others, are expected to further increase the advancement of the non-aqueous electrolyte market. However, the escalating emphasis on the demand for lithium-ion batteries acts as a key driving force behind the increasing demand for non-aqueous electrolytes, such as organic and inorganic, and the surge in vehicle production significantly affects the growth of the non-aqueous electrolyte market. However, in a price-sensitive market, fluctuation in raw material prices can hinder consumer adoption and act as a challenge in the global non-aqueous electrolyte market.
Market Lifecycle Stage
KEY MARKET STATISTICS | |
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Forecast Period | 2023 - 2032 |
2023 Evaluation | $3.64 Billion |
2032 Forecast | $14.65 Billion |
CAGR | 16.71% |
The non-aqueous electrolyte market is in the growth phase. The market is propelled by the growing adoption of electric vehicles worldwide and is expected to boost the market. Furthermore, growing investments in energy storage solutions, rising urbanization, and consumer spending across the globe contribute to the overall growth of the non-aqueous electrolyte market. Moreover, the non-aqueous electrolyte market is expected to benefit from the expansion of manufacturing facilities in emerging markets, which represents a strategic move that holds immense potential for advanced economies in the non-aqueous electrolyte market.
Industrial Impact
Non-aqueous electrolytes offer numerous advantages. Non-aqueous electrolytes significantly enhance lithium-ion batteries, especially in high-energy-density applications such as electric vehicles. Solvents such as ethylene carbonate widen the voltage window, boosting energy density and meeting demands for extended range and rapid charging. Furthermore, these electrolytes offer a broader tolerance of temperature ranges, ensuring optimal battery function across various climates. Their stability under extreme conditions aligns with automotive safety standards, contributing to safer and more reliable automotive operations. Furthermore, low self-discharge rates attributed to non-aqueous electrolytes contribute to prolonged device lifespan, meeting consumer expectations for durable and long-lasting electronics. Their continual advancements drive innovation, shaping the future of consumer tech. Their adaptability spans industries, fostering innovation in materials and technology, contributing to advancements in healthcare devices, construction materials, and aerospace and defense systems, showcasing their versatile applications.
Market Segmentation:
Segmentation 1: by Application
The lithium-ion battery leads the non-aqueous electrolyte market based on application.
Segmentation 2: by End-Use Industry
The global non-aqueous electrolyte market is estimated to be led by the automotive segment in terms of end-use industry.
Segmentation 3: by Type
The market is estimated to be led by the organic segment in terms of type.
Segmentation 4: by Region
In the non-aqueous electrolyte market, Asia-Pacific is anticipated to gain traction in terms of production and adoption, owing to the continuous growth of non-aqueous electrolytes such as organic and inorganic, and North America is anticipated to have a presence of key manufacturers in the region.
Recent Developments in the Global Non-Aqueous Electrolyte Market
Demand - Drivers and Challenges
The following are the demand drivers for the global non-aqueous electrolyte market:
The market is expected to face some limitations as well due to the following challenges:
How can this report add value to an organization?
Product/Innovation Strategy: The product segment helps the reader understand the different non-aqueous electrolytes for various applications such as lithium-ion battery, sodium-ion battery, solid-state battery, and others. Moreover, the study provides the reader with a detailed understanding of the non-aqueous electrolyte market based on the end-use industries, including automotive, consumer electronics, energy storage, and others.
Growth/Marketing Strategy: The non-aqueous electrolyte market has seen major development by key players operating in the market, such as business expansions, partnerships, collaborations, mergers and acquisitions, and joint ventures. The favored strategy for the companies has been product developments, business expansions, and acquisitions to strengthen their position in the non-aqueous electrolyte market. For instance, Samsung Electronics Co., Ltd., NVIDIA Corporation, Intel Corporation, IBM, and Micron Technology Inc. are a few companies that have been highly active in undertaking strategic decisions.
Competitive Strategy: Key players in the market analyzed and profiled in the study involve non-aqueous electrolyte manufacturers and the overall ecosystem. Moreover, a detailed competitive benchmarking of the players operating in the non-aqueous electrolyte market has been done to help the reader understand how players stack against each other, presenting a clear market landscape. Additionally, comprehensive competitive strategies such as partnerships, agreements, acquisitions, and collaborations will aid the reader in understanding the untapped revenue pockets in the market.
Key Market Players and Competition Synopsis
The companies that are profiled have been selected based on input gathered from primary experts, analyzing company coverage, product portfolio, and market penetration.
The non-aqueous electrolyte market has been segmented based on type, among which inorganic accounted for around 61.6% and organic held for approximately 38.4% of the total non-aqueous electrolyte revenue in the year 2022.
Some of the prominent established names in this market are:
Companies that are not a part of the previously mentioned poll have been well represented across different sections of the report (wherever applicable).
Scope and Definition