![]() |
市場調查報告書
商品編碼
2069175
相變材料(PCM)儲能市場預測-按材料類型、應用、最終用戶和地區分類的全球分析——2034年Phase Change Material (PCM) Storage Market Forecasts to 2034 - Global Analysis By Material Type (Organic PCM, Inorganic PCM and Bio-based PCM), Application, End User and By Geography |
||||||
全球相變材料(PCM)儲存市場預計到 2026 年將達到 8 億美元,並在預測期內以 12.0% 的複合年成長率成長,到 2034 年將達到 21 億美元。
相變材料(PCM)儲能是一種利用材料在固體和液態之間轉換時吸收和釋放熱量來儲存熱能的方法。在相變過程中,大量潛熱會在穩定的溫度下累積或釋放,從而實現有效的溫度控管。 PCM技術廣泛應用於建築、冷凍系統和可再生能源解決方案,有助於提高尖峰時段效率並降低能耗。這些材料種類繁多,包括有機材料、無機材料和共晶材料等,具有不同的熱性能,並廣泛應用於各種領域,以最佳化能源利用並提高性能。
據美國能源局稱,將基於相變材料 (PCM) 的熱儲存系統引入聚光型太陽熱能發電(CSP) 工廠,可延長運作時間,並將工廠的年效率提高 10%。
建築節能需求日益成長
住宅和商業建築日益重視降低能耗,這成為相變材料(PCM)儲能市場發展的主要驅動力。 PCM透過吸收和釋放熱量來調節室內溫度,從而減少對暖通空調系統的依賴。嚴格的節能政策和永續建築認證系統的推行,促進了這些材料在現代建築中的應用。這些措施有助於降低電力消耗、減少溫室氣體排放,並提高居住者舒適度。隨著城市快速發展和能源價格上漲,預計基於PCM的儲熱技術在全球建築領域的應用將穩步擴展。
高昂的初始成本和投資需求
相變材料(PCM)儲能系統高昂的初始成本是其市場擴張的主要障礙。這些系統通常涉及先進材料、封裝流程和客製化設計,導致其安裝成本高於傳統的熱能儲存方法。這種經濟負擔往往會阻礙其普及,尤其是在中小企業和注重成本的使用者群體中。雖然PCM能夠帶來長期的節能效益,但初始投資仍是阻礙因素。此外,有限的大規模生產和缺乏顯著的規模經濟效應也使得價格居高不下,降低了其與傳統熱能儲存技術的競爭力。
綠建築與永續建築的推廣
永續建築實踐的日益普及為相變材料(PCM)儲熱市場創造了巨大的成長潛力。隨著建築業將能源效率置於優先地位,PCM正被應用於牆體和隔熱材料等結構構件中,以改善熱控制。這些解決方案有助於降低暖氣和冷氣需求,同時滿足環境目標和綠色認證要求。人們對氣候變遷的日益關注以及向淨零能耗建築的轉型進一步推動了PCM的應用。政府鼓勵環保建築的政策也在加速市場需求,為PCM儲熱技術在全球的廣泛應用創造了有利條件。
嚴格的環境和安全法規
針對相變材料(PCM)日益嚴格的環境和安全法規可能會對市場發展產生負面影響。某些類型的PCM,特別是化學材料,可能引發人們對毒性、火災隱患或對生態系統影響的擔憂。滿足監管要求通常需要額外的測試、認證和產品重新設計成本。這些因素可能會延緩商業化進程,或限制某些材料在特定市場的使用。隨著全球環境標準的日益嚴格,企業將需要增加合規的投入,這可能會限制創新步伐,並阻礙PCM儲熱解決方案的廣泛應用。
新冠疫情為相變材料(PCM)儲存市場帶來了挑戰和機會。疫情初期,全球供應鏈中斷、製造地暫時停工、勞動力短缺導致產量下降,興建中工程延長。經濟放緩和投資延遲也導致建築和工業活動的需求減弱。另一方面,疫情凸顯了可靠的溫控儲存的重要性,尤其是在疫苗分發和藥品物流方面,並促進了PCM在低溫運輸系統中的應用。隨著經濟復甦,人們對能源效率和永續性的日益關注進一步推動了全球PCM技術的發展。
在預測期內,有機相變材料細分市場預計將佔據最大的市場佔有率。
由於有機相變材料(PCM)具有卓越的熱穩定性、可靠性和廣泛的應用前景,預計在預測期內,有機相變材料將佔據最大的市場佔有率。這些材料,例如石蠟化合物和脂肪酸,表現出穩定的相變行為,確保在反覆循環中有效地儲存和釋放熱量。它們還具有化學穩定性好、無腐蝕性,可安全用於建築和工業環境。其使用壽命長、性能劣化小,使其成為暖通空調系統、建築和能源管理應用的理想選擇。人們對能源效率和永續建築解決方案日益成長的關注,也進一步鞏固了有機相變材料在全球市場的強勢地位。
預計在預測期內,低溫運輸和冷凍領域將實現最高的複合年成長率。
在預測期內,受製藥、食品加工和生物技術產業需求成長的推動,低溫運輸和冷凍領域預計將呈現最高的成長率。疫苗、生技藥品和生鮮產品需求的不斷成長,推動了對可靠溫度控制系統的需求。相變材料 (PCM) 有助於在儲存和運輸過程中維持穩定的溫度條件,而無需過度依賴持續的能源供應。此外,全球供應鏈的擴張、日益嚴格的品質法規以及醫療保健領域投資的增加,都在推動基於 PCM 的解決方案在國際市場的低溫運輸應用中迅速普及。
在預測期內,歐洲地區預計將佔據最大的市場佔有率,這主要得益於其對節能、永續性目標和嚴格環境法規的高度重視。該地區已製定了先進的建築能源效率標準和減排政策,從而促進了排放(PCM)解決方案在建築和工業領域的應用。德國、法國和英國等主要國家正大力投資環保建築和可再生能源系統,其中PCM技術被廣泛用於溫度控制。日益增強的環保意識和政府的支持進一步鞏固了歐洲在全球PCM儲熱產業的主導地位。
在預測期內,亞太地區預計將呈現最高的複合年成長率,這主要得益於快速的城市化發展、工業擴張以及對節能解決方案日益成長的需求。中國、印度、日本和韓國等主要國家正在智慧基礎設施、可再生能源系統和現代低溫運輸網路方面進行大量投資。人口成長、蓬勃發展的建設活動以及不斷成長的能源消耗正在加速對先進儲熱技術的需求。此外,政府的支持、日益增強的環保意識以及強大的製造能力也推動了該地區在預測期內相變材料(PCM)應用的顯著成長。
According to Stratistics MRC, the Global Phase Change Material (PCM) Storage Market is accounted for $0.8 billion in 2026 and is expected to reach $2.1 billion by 2034 growing at a CAGR of 12.0% during the forecast period. Phase Change Material (PCM) storage is a method of storing thermal energy by utilizing materials that absorb and release heat as they transition between solid and liquid states. During this phase change, significant latent heat is stored or discharged at a stable temperature, ensuring effective thermal management. PCM technology is commonly applied in construction, cooling systems, and renewable energy solutions to improve efficiency and lower energy consumption during peak periods. These materials, which include organic, inorganic, and eutectic types, provide varied thermal characteristics, enabling their use across diverse applications for better energy optimization and performance.
According to the U.S. Department of Energy, incorporating PCM-based thermal storage in concentrated solar power (CSP) plants can extend operational hours and increase annual plant efficiency by up to 10%.
Rising demand for energy efficiency in buildings
Increasing focus on minimizing energy use in both residential and commercial infrastructure is strongly boosting the Phase Change Material (PCM) storage market. PCMs regulate indoor temperatures by absorbing and releasing heat, thereby decreasing dependence on HVAC systems. The introduction of strict energy-saving policies and sustainable building certifications is encouraging the use of these materials in modern construction. They help cut electricity consumption, lower greenhouse gas emissions, and enhance comfort levels for occupants. With rapid urban development and rising energy prices, the integration of PCM-based thermal storage technologies is projected to grow steadily in the global building sector.
High initial costs and investment requirements
Elevated upfront expenses associated with Phase Change Material storage systems act as a major obstacle to market expansion. These systems typically involve sophisticated materials, encapsulation processes, and customized designs, leading to higher installation costs compared to traditional storage methods. This financial burden often discourages adoption, especially among smaller businesses and cost-conscious users. While PCMs can deliver energy savings over time, the initial capital requirement remains a limiting factor. Furthermore, limited mass production and the absence of strong economies of scale keep prices relatively high, reducing competitiveness against conventional thermal energy storage technologies.
Expansion in green building and sustainable construction
The increasing adoption of sustainable construction practices offers strong growth potential for the Phase Change Material storage market. As the building sector emphasizes energy efficiency, PCMs are being incorporated into structural components such as walls and insulation to improve thermal regulation. These solutions help lower heating and cooling demands while supporting environmental objectives and green certification requirements. Growing concerns about climate change and the movement toward net-zero buildings are further encouraging their use. Government policies promoting eco-conscious construction are also accelerating demand, creating favorable conditions for the wider implementation of PCM-based thermal storage technologies globally.
Stringent environmental and safety regulations
Tightening environmental and safety rules concerning Phase Change Materials can negatively impact market development. Certain PCM types, particularly chemical-based variants, may raise concerns about toxicity, fire hazards, or ecological effects. Meeting regulatory requirements often involves additional costs for testing, certification, and product redesign. These factors can slow down commercialization and restrict the use of specific materials in different markets. As environmental standards become more rigorous worldwide, companies must invest more in compliance, which can limit innovation speed and create obstacles for the widespread adoption of PCM storage solutions.
The COVID-19 outbreak created both challenges and opportunities for the PCM storage market. In the early stages, disruptions in global supply chains, temporary shutdowns of manufacturing units, and workforce shortages reduced production and delayed ongoing projects. Demand from construction and industrial activities also weakened due to economic slowdown and postponed investments. On the other hand, the crisis highlighted the importance of reliable temperature-controlled storage, especially for vaccine distribution and pharmaceutical logistics, increasing PCM usage in cold chain systems. As economies recovered, focus on energy efficiency and sustainability further supported renewed growth of PCM technologies worldwide.
The organic PCM segment is expected to be the largest during the forecast period
The organic PCM segment is expected to account for the largest market share during the forecast period because of their strong thermal stability, reliability, and versatility in multiple applications. These materials, such as paraffin-based compounds and fatty acids, exhibit consistent phase transition behaviour, which ensures efficient heat storage and release over repeated cycles. They are chemically stable, non-corrosive, and safe to use in building and industrial environments. Their long operational life and minimal performance degradation make them highly suitable for HVAC systems, construction, and energy management applications. Increasing focus on energy efficiency and sustainable building solutions continues to support the strong position of organic PCMs in the global market.
The cold chain & refrigeration segment is expected to have the highest CAGR during the forecast period
Over the forecast period, the cold chain & refrigeration segment is predicted to witness the highest growth rate, driven by expanding demand from pharmaceuticals, food processing, and biotechnology sectors. The rising need for vaccines, biologics, and perishable goods is increasing the requirement for dependable temperature regulation systems. Phase Change Materials help maintain consistent thermal conditions during storage and transport without relying heavily on continuous energy input. Additionally, the growth of global supply chains, stricter quality regulations, and increased healthcare investments are supporting the rapid adoption of PCM-based solutions in cold chain applications across international markets.
During the forecast period, the Europe region is expected to hold the largest market share because of its strong emphasis on energy conservation, sustainability goals, and stringent environmental regulations. The region has established advanced building efficiency standards and emission reduction policies that promote the use of PCM solutions across construction and industrial sectors. Major countries like Germany, France, and the UK are heavily investing in eco-friendly buildings and renewable energy systems where PCM technology is widely used for thermal regulation. Growing environmental awareness and supportive government initiatives continue to reinforce Europe's leading position in the global PCM storage industry.
Over the forecast period, the Asia-Pacific region is anticipated to exhibit the highest CAGR, driven by rapid urban development, industrial expansion, and rising need for energy-efficient solutions. Key countries including China, India, Japan, and South Korea are heavily investing in smart infrastructure, renewable energy systems, and modern cold chain networks. Increasing population, booming construction activities, and higher energy consumption are accelerating the demand for advanced thermal storage technologies. Furthermore, supportive government initiatives, rising environmental consciousness and strong manufacturing capabilities are contributing to the region's significant growth in PCM adoption during the forecast period.
Key players in the market
Some of the key players in Phase Change Material (PCM) Storage Market include Henkel, Honeywell International Inc., Croda International Plc, DuPont de Nemours, Inc., Sasol Germany GmbH, Rubitherm Technologies GmbH, PLUSS Advanced Technologies, Phase Change Material Products Ltd., Microtek Laboratories Inc., Outlast Technologies LLC, Cold Chain Technologies, Inc., Phase Change Energy Solutions, Climator Sweden AB, BASF SE, va-Q-tec, Sunamp, PureTemp LLC and Laird PLC.
In December 2025, Honeywell International Inc. has been awarded a $58.79 million contract modification from the U.S. Department of War for work related to the automotive gas turbine 1500 engine platform. The modification, identified as P00026 to contract W56HZV-20-D-0062, is for program services and systems technical support engineering services. This latest award increases the total cumulative value of the contract to $2.69 billion.
In October 2025, BASF SE and ANDRITZ Group have signed a license agreement for the use of BASF's proprietary gas treatment technology, OASE(R) blue, in a carbon capture project planned to be implemented in the city of Aarhus, Denmark. The project aims to capture approximately 435,000 tons of CO2 annually from the flue gases of a waste-to-energy plant for sequestration; the city of Aarhus has set itself the goal of becoming CO2-neutral by 2030.
Note: Tables for North America, Europe, APAC, South America, and Rest of the World (RoW) Regions are also represented in the same manner as above.