1 序文
2 調査範囲と方法論
2.1 調査の目的
2.2 ステークホルダー
2.3 データソース
2.3.1 一次情報源
2.3.2 二次情報源
2.4 市場推定
2.4.1 ボトムアップ・アプローチ
2.4.2 トップダウンアプローチ
2.5 予測方法
3 エグゼクティブ・サマリー
4 はじめに
4.1 概要
4.2 主要産業動向
5 先進相変化材料の世界市場
5.1 市場概要
5.2 市場パフォーマンス
5.3 COVID-19の影響
5.4 タイプ別市場構成
5.5 形状別市場
5.6 用途別市場構成比
5.7 地域別市場構成比
5.8 市場予測
5.9 SWOT分析
5.9.1 概要
5.9.2 強み
5.9.3 弱点
5.9.4 機会
5.9.5 脅威
5.10 バリューチェーン分析
5.10.1 概要
5.10.2 研究開発
5.10.3 原材料調達
5.10.4 製造
5.10.5 流通
5.10.6 輸出
5.10.7 最終用途
5.11 ポーターズファイブフォース分析
5.11.1 概要
5.11.2 買い手の交渉力
5.11.3 供給者の交渉力
5.11.4 競争の程度
5.11.5 新規参入の脅威
5.11.6 代替品の脅威
5.12 価格分析
5.12.1 主要価格指標
5.12.2 価格構造
5.12.3 価格動向
6 タイプ別市場
6.1 有機PCM
6.1.1 市場動向
6.1.2 市場予測
6.2 無機PCM
6.2.1 市場動向
6.2.2 市場予測
6.3 バイオベースPCM
6.3.1 市場動向
6.3.2 市場予測
7 形態別市場
7.1 カプセル化
7.1.1 市場動向
7.1.2 市場予測
7.2 非カプセル化
7.2.1 市場動向
7.2.2 市場予測
8 用途別市場
8.1 建築・建設
8.1.1 市場動向
8.1.2 市場予測
8.2 包装
8.2.1 市場動向
8.2.2 市場予測
8.3 HVAC
8.3.1 市場動向
8.3.2 市場予測
8.4 テキスタイル
8.4.1 市場動向
8.4.2 市場予測
8.5 エレクトロニクス
8.5.1 市場動向
8.5.2 市場予測
8.6 その他
8.6.1 市場動向
8.6.2 市場予測
9 地域別市場内訳
9.1 欧州
9.1.1 市場動向
9.1.2 市場予測
9.2 北米
9.2.1 市場動向
9.2.2 市場予測
9.3 アジア太平洋
9.3.1 市場動向
9.3.2 市場予測
9.4 中東・アフリカ
9.4.1 市場動向
9.4.2 市場予測
9.5 中南米
9.5.1 市場動向
9.5.2 市場予測
10 先進相変化材料の製造プロセス
10.1 製品概要
10.2 原材料要件
10.3 製造プロセス
10.4 主な成功要因とリスク要因
11 競争環境
11.1 市場構造
11.2 主要プレーヤー
11.3 主要企業のプロフィール
11.3.1 BASF SE
11.3.2 クライオパック
11.3.3 エントロピー・ソリューションズ
11.3.4 ハネウェル・インターナショナル社
11.3.5 アウトラスト・テクノロジーズLLC
11.3.6 クライメーター・スウェーデンAB
11.3.7 クロダ・インターナショナル Plc
11.3.8 フェーズチェンジ・マテリアル・プロダクツ・リミテッド
11.3.9 フェーズチェンジ・エナジー・ソリューションズ
11.3.10 Pluss Advanced Technologies Pvt.
11.3.11 RGEES, LLC.
11.3.12 ルビザーム・テクノロジーズGmbH
11.3.13 Salca BV
11.3.14 SGLグループ
図1:世界:先進相変化材料市場:主な推進要因と課題
図2:先進相変化材料の世界市場:販売額(単位:億米ドル)、2019年~2024年
図3:先進相変化材料の世界市場:タイプ別内訳(単位:%)、2024年
図4:先進相変化材料の世界市場:形態別構成比(単位:%)、2024年先進相変化材料の世界市場:形態別構成比(%)、2024年
図5:先進相変化材料の世界市場:形態別構成比(%)、2024年先進相変化材料の世界市場:用途別構成比(%)、2024年
図6:先進相変化材料の世界市場:用途別構成比(%)、2024年先進相変化材料の世界市場:地域別構成比(%)、2024年
図7:先進相変化材料の世界市場予測:販売額(単位:億米ドル)、2025年~2033年
図8:先進相変化材料の世界市場:SWOT分析
図9: 世界: 先進相変化材料産業:バリューチェーン分析
図10: 世界: 先進相変化材料産業:ポーターのファイブフォース分析
図 11:有機 PCM(パラフィンベース)製造:総生産コスト内訳(%)
図12:世界:先進相変化材料市場:平均価格(単位:米ドル/トン)、2019年~2033年
図13:先進相変化材料(有機PCM)の世界市場:販売額(単位:百万米ドル)、2019年・2024年
図14:先進相変化材料(有機PCM)の世界市場予測:販売額(単位:百万米ドル)、2025年~2033年
図15:先進相変化材料(無機PCM)の世界市場:販売額(単位:百万米ドル販売額(単位:百万米ドル)、2019年・2024年
図16:先進相変化材料(無機PCM)の世界市場予測:販売額(単位:百万米ドル)、2025年~2033年
図17:先進相変化材料(バイオベースPCM)の世界市場:販売額(単位:百万米ドル)、2019年・2024年
図18:先進相変化材料(バイオベースPCM)の世界市場予測:販売額(単位:百万米ドル)、2025年~2033年
図19: 先進相変化材料(カプセル化)の世界市場:販売額(単位:百万米ドル)、2019年・2024年
図20:先進相変化材料(カプセル化)の世界市場予測:販売額(単位:百万米ドル)、2025年~2033年
図21: 先進相変化材料(非カプセル化)の世界市場:販売額(単位:百万米ドル)、2019年・2024年
図22:先進相変化材料(非カプセル化)の世界市場予測:販売額(単位:百万米ドル)、2025年~2033年
図23:先進相変化材料(建築・建設用途)の世界市場:販売額(単位:百万米ドル)、2019年・2024年
図24:先進相変化材料(建築・建設用途)の世界市場予測:販売額(単位:百万米ドル)、2025年~2033年
図25:世界:先端相変化材料(包装用途)市場:販売額(単位:百万米ドル)、2019年・2024年
図26:世界:先端相変化材料(包装用途)市場予測:販売額(単位:百万米ドル)、2025年~2033年
図27:世界:先端相変化材料(空調用途)市場:販売額(単位:百万米ドル)、2019年・2024年
図28:世界:先進相変化材料(HVACにおける用途)市場予測:販売額(単位:百万米ドル)、2025年~2033年
図29:世界:先端相変化材料(繊維への応用)市場:販売額(単位:百万米ドル)、2019年・2024年
図30:世界:先端相変化材料(繊維製品への応用)市場予測:販売額(単位:百万米ドル)、2025年~2033年
図31:世界:先端相変化材料(エレクトロニクスへの応用)市場:販売額(単位:百万米ドル)、2019年・2024年
図32:世界:先端相変化材料(エレクトロニクス用途)市場予測:販売額(単位:百万米ドル)、2025年~2033年
図33:世界:先端相変化材料(その他の用途)市場:販売額(単位:百万米ドル)、2019年・2024年
図34:世界:先端相変化材料(その他の用途)市場予測:販売額(単位:百万米ドル)、2025年~2033年
図35:欧州:先進相変化材料市場:販売額(単位:百万米ドル)、2019年および2024年
図36:欧州:先進相変化材料市場予測先進相変化材料の市場予測:販売額(単位:百万米ドル)、2025年~2033年
図37:北米:先進相変化材料市場:販売額(単位:百万米ドル)、2019年および2024年
図 38:北米:先進相変化材料の市場予測:販売額(単位:百万米ドル)、2025年~2033年
図39:アジア太平洋:先進相変化材料市場:販売額(単位:百万米ドル)、2019年および2024年
図40:アジア太平洋地域:先進相変化材料の市場予測:販売額(単位:百万米ドル)、2025年~2033年
図 41:中東およびアフリカ:先進相変化材料市場:販売額(単位:百万米ドル)、2019年および2024年
図42:中東およびアフリカ:先進相変化材料の市場予測:販売額(単位:百万米ドル)、2025年~2033年
図43:ラテンアメリカ:先進相変化材料市場:販売額(単位:百万米ドル)、2019年および2024年
図44:ラテンアメリカ:先端相変化材料の市場予測:販売額(単位:百万米ドル)、2025年~2033年
図45:先進相変化材料の製造:詳細なプロセスフロー
[表一覧]
表1:世界:先進相変化材料市場:主要産業ハイライト、2024年と2033年
表2:先進相変化材料の世界市場予測:タイプ別内訳(単位:百万米ドル)、2025年〜2033年
表3:先進相変化材料の世界市場予測:形態別内訳(単位:百万米ドル)、2025年~2033年
表4:先進相変化材料の世界市場予測:先進相変化材料の世界市場予測:用途別構成比(単位:百万米ドル)、2025-2033年
表5:先進相変化材料の世界市場予測:先進相変化材料の世界市場予測:地域別内訳(単位:百万米ドル)、2025-2033年
表6:先進相変化材料の製造:原材料要件
表7:先進相変化材料の世界市場:競争構造
表8:先進相変化材料の世界市場:競争構造主要プレーヤー
The global advanced phase change materials market size reached USD 1.8 Billion in 2024. Looking forward, IMARC Group expects the market to reach USD 4.4 Billion by 2033, exhibiting a growth rate (CAGR) of 10.7% during 2025-2033. A considerable rise in the demand for energy-efficient solutions, increasing emphasis on sustainability and environmental conservation, and continual advancements in thermal management technologies in the automotive industry are some of the major factors propelling the market.
Advanced phase change materials (PCMs) are innovative substances engineered to store and release thermal energy during phase transitions, thereby providing efficient temperature regulation. These materials possess the ability to change their physical state, such as from solid to liquid or vice versa, at specific temperature ranges. By harnessing the principles of latent heat, Advanced PCMs enable effective heat transfer and control, ensuring optimal energy utilization and enhanced system performance. Advanced PCMs have gained significant attention across various industries for their remarkable heat storage and release capabilities, making them ideal for applications where thermal management is crucial.
The global market is primarily driven by the increased adoption of advanced PCMs in medical devices and temperature-controlled packaging in the healthcare sector. In line with this, the rapid utilization of thermal regulation properties of PCMs to enhance comfort and insulation in sportswear and outdoor fabrics and garments is fueling the market. Moreover, the growing product adoption in thermal energy storage systems to facilitate uninterrupted power generation in the renewable energy sector is providing an impetus to the market. Additionally, extensive research and development (R&D) efforts focused on improving the performance and cost-effectiveness of advanced PCMs are contributing to the market growth. Some of the other factors contributing to the market include rapid urbanization, the introduction of smart grid facilities, increasing vehicle electrification, and continual product innovations.
Advanced Phase Change Materials Market Trends/Drivers:
Rise in the demand for energy-efficient solutions
The demand for energy-efficient solutions in buildings and infrastructure has significantly contributed to the adoption of advanced PCMs. These innovative materials are being incorporated into various construction components, such as concrete and insulation, to improve thermal insulation properties and reduce heating and cooling loads. By integrating Advanced PCMs, buildings can enhance energy conservation, leading to reduced energy consumption and improved sustainability. These materials effectively store and release thermal energy during phase transitions, providing efficient temperature regulation and contributing to the overall energy efficiency of structures. As the focus on energy efficiency continues to grow, the utilization of Advanced PCMs in construction is expected to expand, enabling the development of greener and more sustainable buildings.
An enhanced focus on sustainable development
The market is impelled by an increasing emphasis on sustainability and environmental conservation. Advanced PCMs offer a greener alternative to conventional heating and cooling systems, making them an attractive choice for environmentally conscious businesses and individuals. By leveraging the unique properties of PCMs, such as their ability to store and release thermal energy, these materials minimize energy consumption and contribute to a significant reduction in greenhouse gas emissions. Advanced PCMs play a crucial role in enhancing energy efficiency and sustainability across various industries, including construction, transportation, and renewable energy. As businesses strive to adopt eco-friendly practices and comply with environmental regulations, the demand for Advanced PCMs is expected to rise, further driving the market growth.
Continual advancements in thermal management technologies
The automotive industry is witnessing a rapid adoption of advanced PCMs for thermal management, particularly in electric vehicles (EVs) and hybrid vehicles. These innovative materials are employed in battery packs and thermal management systems to regulate the temperature of the batteries, resulting in enhanced efficiency and extended lifespan. By effectively managing thermal conditions, Advanced PCMs play a critical role in optimizing battery performance and ensuring safe operation. Additionally, the utilization of PCMs in EVs and hybrid vehicles contributes to reduced energy consumption and increased overall vehicle efficiency. As the demand for electric and hybrid vehicles continues to grow, the automotive industry's reliance on Advanced PCMs is expected to expand, driving further advancements in thermal management technologies and propelling the market forward.
Advanced Phase Change Materials Industry Segmentation:
IMARC Group provides an analysis of the key trends in each segment of the global advanced phase change materials market report, along with forecasts at the global and regional levels from 2025-2033. Our report has categorized the market based on type, form and application.
Breakup by Type:
• Organic PCM
• Inorganic PCM
• Bio-Based PCM
Organic PCM dominates the market
The report has provided a detailed breakup and analysis of the market based on the product type. This includes organic PCM, inorganic PCM and bio-based PCM. According to the report, organic PCM represented the largest segment.
The organic PCM segment is being driven by the rising demand for sustainable and environmentally friendly materials, particularly in industries including HVAC, textiles, packaging, and electronics. The growing emphasis on energy efficiency in buildings and construction further fuels the adoption of organic PCM, which is supported by favorable government regulations promoting energy conservation. Additionally, advancements in material science and technology have led to the development of improved organic PCM with enhanced properties, thereby contributing to the segment growth.
On the other hand, inorganic PCM offers high thermal conductivity and stability, making it suitable for a wide range of applications in energy storage, automotive, aerospace, and construction industries. The increasing emphasis on thermal management and waste heat recovery in various sectors is driving the demand for inorganic PCM. Additionally, stringent regulations on greenhouse gas emissions are promoting the adoption of inorganic PCM as an environmentally sustainable solution, leading to increased investments in research and development to further enhance its performance.
Furthermore, the bio-based PCM segment is fueled by increasing awareness and preference for renewable materials, supported by government initiatives to reduce dependence on fossil fuels. The growing demand for bio-based PCM in various applications such as cold chain logistics, textiles, and food processing is driven by its sustainable attributes. Advancements in bio-based PCM technology are leading to enhanced thermal performance and stability, aligning with the heightened focus on reducing carbon footprints and achieving sustainability goals.
Breakup by Form:
• Encapsulated
• Non-Encapsulated
Encapsulated dominates the market
The report has provided a detailed breakup and analysis of the market based on the form. This includes encapsulated and non-encapsulated. According to the report, encapsulated PCM represented the largest segment.
The compatibility and stability of PCM have significantly improved with the advancement of encapsulation technology, providing enhanced protection against leakage or degradation. This has led to an increasing demand for encapsulated PCM, as it allows for controlled and targeted release in specific applications, and its application areas have expanded to include textiles, electronics, and energy storage. Consequently, there is a rising investment in research and development to develop more efficient and cost-effective encapsulation techniques.
On the other hand, non-encapsulated PCM is favored due to its cost-effectiveness and simplicity, allowing for easy integration into existing systems and products. The construction, building materials, and thermal regulation sectors are experiencing a growing demand for bulk PCM, as it offers an efficient solution. Moreover, the availability of a wide range of non-encapsulated PCM with varying melting temperatures caters to diverse application requirements. This has further fueled the focus on customized solutions and tailored PCM formulations to meet specific needs.
Breakup by Application:
• Building and Construction
• Packaging
• HVAC
• Textiles
• Electronics
• Others
Building and construction hold the largest share in the market
A detailed breakup and analysis of the market based on the application has also been provided in the report. This includes building and construction, packaging, HVAC, textiles, electronics and others. According to the report, building and construction accounted for the largest market share.
The main factors that are driving the growth of this segment are the rising number of dental offices around the world and the widespread use of aesthetic dentistry by both small- and large-scale dental offices. Additionally, the rise of the market is predicted to increase because of the rising number of dental clinics, majorly in developed countries.
The expansion of the multi-specialty hospitals in both established and developing countries and improved reimbursement rules for operations are also expected to support the expansion of the hospital segment during the forecast period.
Depending on the area, public healthcare tends to provide dentists in industrialized nations with adequate compensation for their services and treatments. Additionally, there might be room for the dental clinics to expand given the growing popularity of the dental franchise model. The advantages of a dental franchise model comprise of enhanced negotiation leverage and cost savings through economies of scale.
Regional Insights:
• Europe
• North America
• Asia Pacific
• Middle East and Africa
• Latin America
Europe exhibits a clear dominance, accounting for the largest market share
The report has also provided a comprehensive analysis of all the major regional markets, which include Europe, North America, Asia Pacific, Middle East and Africa, and Latin America.
Europe held the biggest market share since the region is focusing on increased implementation of energy-efficient practices in buildings and construction projects. The market in this region is primarily driven by strict regulations and initiatives that promote energy efficiency and sustainability.
Additionally, there is a growing demand for advanced thermal management solutions across various industries in the region. The presence of supportive government policies and incentives further encourages the adoption of PCM technology.
Moreover, there is a strong emphasis on reducing carbon emissions and achieving climate targets, driving the need for innovative solutions such as PCM in the region. Furthermore, the growing interest in renewable energy sources, such as solar and wind power, leading to the accelerating need for PCM in energy storage applications.
Competitive Landscape:
The top players in the market are focusing on research and development activities to innovate and improve the performance of PCM materials and expanding their range of applications. These players are also actively collaborating with industry partners, including manufacturers, researchers, and end-users, to develop customized solutions and address specific market demands. Additionally, they are investing in marketing and promotional activities to raise awareness about the benefits of advanced PCM materials for targeting key sectors and geographies. Furthermore, the major companies are expanding their global presence through strategic mergers and acquisitions, and investments in production facilities. Besides this, they are also emphasizing sustainability by developing environmentally friendly PCM solutions and promoting their use in sustainable systems and building practices.
The report has provided a comprehensive analysis of the competitive landscape in the market. Detailed profiles of all major companies have also been provided. Some of the key players in the market include:
• BASF SE
• Cryopak
• Entropy Solutions
• Honeywell International Inc.
• Outlast Technologies LLC
• Climator Sweden AB
• Croda International Plc
• Phase Change Material Products Limited
• Phase Change Energy Solutions
• Pluss Advanced Technologies Pvt. Ltd.
• RGEES, LLC.
• Rubitherm Technologies GmbH
• Salca BV
• SGL Group
Key Questions Answered in This Report
1.What was the size of the global advertising market in 2024?
2.What is the expected growth rate of the global advertising market during 2025-2033?
3.What has been the impact of COVID-19 on the global advertising market?
4.What are the key factors driving the global advertising market?
5.What is the breakup of the global advertising market based on the type?
6.What are the key regions in the global advertising market?
7.Who are the key players/companies in the global advertising market?
