市场调查报告书
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1569841
2030年分散式能源储存市场预测:按容量类型、应用、最终用户和地区进行的全球分析Distributed Energy Storage Market Forecasts to 2030 - Global Analysis by Type Capacity Type, Application, End User and By Geography |
根据Stratistics MRC的数据,2024年全球分散式能源储存市场规模为61.1亿美元,预计到2030年将达到119.2亿美元,预测期内复合年增长率为11.79%。
分散式能源储存是指部署在电网内不同位置、靠近能源消耗或产生地点的能源储存技术系统。与安装在大型中央发电厂的集中式储能係统不同,分散式储能单元安装在家庭、企业和小型设施中。这些系统通常使用电池,可以储存来自太阳能或风能等再生能源来源的多余能量,并在需要时释放以平衡供需。这种方法提高了电网可靠性,支援能源独立,并透过提供局部的按需储存来优化可再生能源的使用。
根据国际能源总署《2020年全球电动车展望》报告,2019年全球电动车销量为210万辆。
增加可再生能源整合
增加可再生能源整合是指增加太阳能和风能等再生能源来源的采用。这种转变将对市场产生重大影响,创造对储存解决方案的需求,以管理可再生能源的间歇性。能源储存系统平衡供需,确保电力供应稳定可靠。随着更多可再生能源的引入,对分散式能源储存的需求将会增加,推动市场扩张和创新。因此,它促进了市场的成长。
经济和市场波动
经济和市场动态的变化是指可能影响投资和消费行为的经济状况和能源市场动态的变化。这些波动可能导致新计画的资金筹措减少、采用率降低以及相关人员的不确定性增加。景气衰退和能源价格波动可能会减少对能源储存系统的需求,阻碍市场成长。
技术进步
分散式能源储存的技术进步,例如电池化学、能量密度和成本效率的改进,将显着推动市场成长。增强的技术将带来更可靠、更持久和更实惠的能源储存解决方案,使其对消费者和企业更具吸引力。技术创新也将能够更好地与再生能源来源和智慧电网系统集成,从而增强整体能源管理。随着技术的发展,它推动了更广泛的采用,并增加了能源独立性和永续性的市场潜力,从而推动了市场成长。
监管和市场壁垒
监管和市场壁垒是指阻碍分散式能源储存系统采用和部署的障碍,例如不一致的政策、复杂的法规和限制性的市场结构。这些障碍造成了不确定性,增加了合规成本并限制了市场进入。影响包括市场成长放缓、投资减少以及整合能源储存系统的挑战。因此,市场的成长受到阻碍。
COVID-19 影响了分散式能源储存市场,由于封锁和限制导致供应链中断和计划安装延迟。由于企业面临财务不确定性,疫情也导致投资减少和采用率放缓。然而,人们越来越认识到能源弹性和可靠电源的重要性,可能会加速未来对分散式能源储存解决方案的需求。
网格储存领域预计将在预测期内成为最大的领域
预计网格储存部门在预测期内将是最大的,因为它为间歇性再生能源来源提供缓衝,稳定电网并减少尖峰发电的需求。此功能透过确保稳定的能源供应,促进住宅太阳能板等分散式能源的整合。因此,网格储存透过增加对分散式系统的信任并鼓励分散式能源解决方案的广泛采用来支持市场成长。
液流电池产业预计在预测期内复合年增长率最高
液流电池可以储存大量能量并长时间放电,使其成为平衡太阳能和风能等间歇性再生能源来源的理想选择。此外,液流电池易于扩展且具有较长的生命週期,可以促进更有效的能源管理并减少对传统石化燃料能源来源的依赖。
预计北美在预测期内将占据最大的市场占有率,因为它支持再生能源来源的整合,减少对集中式发电厂的依赖,并有助于有效管理高峰需求。它还促进能源独立并具有降低消费者电费的效果。透过推进技术和基础设施,分散式能源储存培育了更永续和高效的能源系统,有助于实现北美减少碳排放和提高能源安全的目标。
亚太地区预计在预测期内复合年增长率最高,因为该地区透过提高能源可靠性和实现局部储存解决方案来支援可再生能源整合。它还可以提高电网稳定性,降低能源成本,并在停电期间提供备用电源。这个市场促进技术创新和基础设施开拓,推动经济成长和创造就业机会。它还有助于管理能源成本,并透过促进更清洁、更有效率的能源使用,为当地永续性目标做出贡献。
According to Stratistics MRC, the Global Distributed Energy Storage Market is accounted for $6.11 billion in 2024 and is expected to reach $11.92 billion by 2030 growing at a CAGR of 11.79% during the forecast period. Distributed energy storage refers to a system of energy storage technologies deployed at various locations within the electrical grid, close to where energy is consumed or generated. Unlike centralized storage systems, which are located at large, central power plants, distributed energy storage units are installed in homes, businesses, or small-scale facilities. These systems, often using batteries, can store excess energy from renewable sources like solar or wind, and release it when needed to balance supply and demand. This approach enhances grid reliability, supports energy independence, and optimizes the use of renewable energy by providing localized, on-demand storage.
According to the International Energy Agency's Global EV Outlook 2020 report, 2.1 million electric vehicles were sold globally in 2019.
Rising Renewable Energy Integration
Rising renewable energy integration refers to the increased adoption of renewable sources like solar and wind power. This shift significantly impacts the market by creating a demand for storage solutions to manage the intermittent nature of renewable energy. Energy storage systems help balance supply and demand, ensuring a stable and reliable power supply. As more renewable are deployed, the need for distributed energy storage grows, driving market expansion and innovation. Thus, it boosts the growth of the market.
Economic and Market Fluctuations
Economic and market fluctuations refer to variations in economic conditions and energy market dynamics that can impact investment and consumer behavior, these fluctuations can lead to reduced funding for new projects, slower adoption rates, and increased uncertainty for stakeholders. Economic downturns or volatile energy prices may decrease demand for energy storage systems, thus it hinders the growth of the market.
Technological Advancements
Technological advancements in distributed energy storage, such as improvements in battery chemistry, energy density, and cost-efficiency, significantly boost market growth. Enhanced technologies lead to more reliable, longer-lasting, and affordable storage solutions, making them more attractive to consumers and businesses. Innovations also enable better integration with renewable energy sources and smart grid systems, enhancing overall energy management. As technology evolves, it drives broader adoption and increases the market's potential for energy independence and sustainability, thus it drives the growth of the market.
Regulatory and Market Barriers
Regulatory and market barriers refer to obstacles such as inconsistent policies, complex regulations, and restrictive market structures that hinder the adoption and deployment of distributed energy storage systems. These barriers can create uncertainties, increase compliance costs, and limit market access. Their effects include slowed market growth, reduced investment, and challenges in integrating storage systems. Thus, it hampers the growth of the market.
COVID-19 impacted the distributed energy storage market by causing supply chain disruptions and delays in project installations due to lockdowns and restrictions. The pandemic also led to decreased investments and slowed adoption rates as businesses faced financial uncertainty. However, it heightened awareness of energy resilience and the importance of reliable power sources, potentially accelerating future demand for distributed energy storage solutions.
The grid storage segment is expected to be the largest during the forecast period
The grid storage segment is expected to be the largest during the forecast period because it provides a buffer for intermittent renewable energy sources, stabilizes the grid, and reduces the need for peak power generation. This capability promotes the integration of distributed energy resources, such as residential solar panels, by ensuring a consistent energy supply. As a result, grid storage supports market growth by boosting confidence in distributed systems and encouraging broader adoption of decentralized energy solutions.
The flow batteries segment is expected to have the highest CAGR during the forecast period
The flow batteries segment is expected to have the highest CAGR during the forecast period because their ability to store large amounts of energy and discharge over extended periods makes them ideal for balancing intermittent renewable sources like solar and wind. Additionally, flow batteries can be easily scaled and have long lifecycles, promoting more efficient energy management and reducing dependency on traditional fossil fuel-based energy sources.
North America is projected to hold the largest market share during the forecast period because this market supports the integration of renewable energy sources, reduces reliance on centralized power plants, and helps manage peak demand more effectively. It also promotes energy independence and lowers electricity costs for consumers. By advancing technology and infrastructure, distributed energy storage fosters a more sustainable and efficient energy system, contributing to North America's goals of reducing carbon emissions and improving energy security.
Asia Pacific is projected to witness the highest CAGR over the forecast period because it enhances energy reliability and supports renewable integration by enabling localized storage solutions. It improves grid stability, reduces energy costs, and provides backup power during outages. This market fosters technological innovation and infrastructure development, driving economic growth and job creation. Additionally, it helps in managing energy costs and contributes to the region's sustainability goals by promoting cleaner, more efficient energy use.
Key players in the market
Some of the key players in Distributed Energy Storage Market include Abu Dhabi National Oil, Company, Bahrain Lube Distributed energy storage system Company, Bharat Petroleum Corporation Limited, BP p.l.c, Chevron Corporation, CNOOC Limited., EDistributed Energy StorageonMobil Corporation, GS Caltex Corporation, H&R OWS Chemie GmbH & Co. KG, Indian Oil Corporation Ltd., LUKOIL, Neste, PetroCanada Lubricants Inc., PetroChina Co., Ltd., Petroleum & Chemical Corp. (SINOPEC), PT Pertamina (Persero), Repsol, Saudi Arabian Oil Co., Sepahan Oil, Shell plc. and SK Lubricants Co.,Ltd.
In August 2024, Repsol and Volotea have reached an agreement for the supply of sustainable aviation fuel (SAF) on flights operated by the airline from airports in Spain. The multi-energy company plans to supply Volotea with up to 6.1 million litres of SAF.
In August 2024, Neste expanded its logistics infrastructure for liquefied recycled raw materials at its refinery in Porvoo, Finland, including materials such as liquefied waste plastic and liquefied rubber tires.
In March 2024, Repsol and Bunge have agreed to partner in the development of new opportunities to help meet the growing demand for lower carbon intensity feedstocks for the production of renewable fuels. This alliance, the first of its kind in Europe, will help to accelerate the ramp-up of production of these fuels mandated by the European Union.