▶ 調査レポート

相変化材料のグローバル市場(2023~2028):有機、無機、バイオベース

• 英文タイトル:Phase Change Materials Market - Growth, Trends, Covid-19 Impact, and Forecasts (2023 - 2028)

Mordor Intelligenceが調査・発行した産業分析レポートです。相変化材料のグローバル市場(2023~2028):有機、無機、バイオベース / Phase Change Materials Market - Growth, Trends, Covid-19 Impact, and Forecasts (2023 - 2028) / MRC2303D138資料のイメージです。• レポートコード:MRC2303D138
• 出版社/出版日:Mordor Intelligence / 2023年1月23日
• レポート形態:英文、PDF、150ページ
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• 産業分類:化学&部品
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レポート概要
Mordor Intelligence社の本調査資料では、世界の相変化材料市場規模が、予測期間中(2022年〜2027年)に年平均15%で拡大すると推測しています。本書は、相変化材料の世界市場について調査・分析し、イントロダクション、調査手法、エグゼクティブサマリー、市場動向、製品種類別(有機、無機、バイオベース)分析、カプセル化技術別(マクロ、マイクロ、分子)分析、産業別(建築&建設、包装、繊維、電子、その他)分析、地域別(中国、インド、日本、韓国、アメリカ、カナダ、メキシコ、ドイツ、イギリス、イタリア、フランス、ブラジル、サウジアラビア、南アフリカ)分析、競争状況、市場機会・将来の動向などをまとめています。なお、主要参入企業として、Aavid Kunze GmbH (Boyd Corporation)、Appvion Inc.、Croda International PLC、Cryopak A TCP Company、Entropy Solutions LLC、Henkel AG & Co. KGAA、Kaplan Energy、Laird Technologies、MICROTEK LABORATORIES INC.、National Gypsum Company、Outlast Technologies LLC、Parker Hannifin Corporation、Rubitherm Technologies Ltdなどの企業情報が含まれています。
・イントロダクション
・調査手法
・エグゼクティブサマリー
・市場動向
・世界の相変化材料市場規模:製品種類別
- 有機相変化材料の市場規模
- 無機相変化材料の市場規模
- バイオベース相変化材料の市場規模
・世界の相変化材料市場規模:カプセル化技術別
- マクロカプセル化技術の市場規模
- マイクロカプセル化技術の市場規模
- 分子カプセル化技術の市場規模
・世界の相変化材料市場規模:産業別
- 建築&建設産業における市場規模
- 包装産業における市場規模
- 繊維産業における市場規模
- 電子産業における市場規模
- その他産業における市場規模
・世界の相変化材料市場規模:地域別
- アジア太平洋の相変化材料市場規模
中国の相変化材料市場規模
インドの相変化材料市場規模
日本の相変化材料市場規模

- 北米の相変化材料市場規模
アメリカの相変化材料市場規模
カナダの相変化材料市場規模
メキシコの相変化材料市場規模

- ヨーロッパの相変化材料市場規模
ドイツの相変化材料市場規模
イギリスの相変化材料市場規模
イタリアの相変化材料市場規模

- 南米/中東の相変化材料市場規模
ブラジルの相変化材料市場規模
アルゼンチンの相変化材料市場規模
サウジアラビアの相変化材料市場規模

- その他地域の相変化材料市場規模
・競争状況
・市場機会・将来の動向

The phase change materials market is expected to register a CAGR of greater than 15% during the forecast period (2022-2027).

The phase change materials market was affected negatively due to the COVID-19 pandemic. However, the market has now reached pre-pandemic levels.

Key Highlights

  • The major factor driving the market is the growing global trend toward energy-saving and sustainable development. However, the hazardous nature of phase change materials is expected to hinder the growth of the market studied.
  • The organic product segment dominated the market, and it is expected to grow during the forecast period, owing to the growth of construction industries in North America and Asia-Pacific.
  • Development of phase change thermal interface material is likely to act as an opportunity in the future.

Phase Change Materials Market Trends

Growing Global Trend toward Energy Saving and Sustainable Development

  • The growing demand for sustainable energy from consumers and industries is constantly changing. Periods of extreme cold or warm weather are the triggering factors for increasing the demand for heating or cooling equipment.
  • Power generation and its costs can be managed efficiently if some of the peak load could be shifted to an off-peak load period. This can be achieved by thermal storage for space heating and cooling purposes. Phase Change Materials (PCM) are used the most for this purpose, as they effectively store and release thermal energy in the form of latent heat.
  • The use of PCM in developing and constructing sustainable energy systems is crucial to the efficiency of these systems, owing to these materials’ ability to harness different temperatures in an effective and sustainable way.
  • The main applications of PCM are in harnessing solar energy, thermal comfort in buildings, and vehicle applications. They have been used extensively for harnessing solar energy, especially in the manufacturing of solar cookers. This has aided in the reduction of costs, since solar cookers do not use fuel and they further contribute to reduce air pollution.
  • PCM can also be used for temperature regulation to minimize heat loss or gain through building walls. Moreover, since a small amount of PCM is sufficient to store solar energy, thermal comfort is achieved without a substantial increase in the weight of construction materials.
  • Owing to growing global trend toward energy saving and sustainable development, the applications for PCMs are increasing.

China to Dominate the Asia-Pacific Region

  • China has the highest share in the market in the Asia-Pacific region. The market is primarily driven by the increase in demand from the end-user industries, including building and construction, packaging, textile, electronics, and transportation.
  • In China, the packaging is also one of the major industries where phase change materials are used for food packaging, medical packaging, and biological and chemical packaging.
  • The uses of phase change materials are prominent in the construction industry, as the country is focusing on energy-efficient buildings. However, the construction industry has been largely affected by the Evergrande Crisis.
  • Phase change materials are widely used in electronics. The electronics industry in China holds a major share in the Asia-Pacific region and also across the world, aiding its significant turnover over the years.
  • Phase change materials are widely used in heating, ventilation, and air conditioning (HVAC) systems. With the increasing domestic and global demand for electronics and the country’s transition toward renewable energies, the demand for phase change materials in the electronics industry is also expected to grow during the forecast period.
  • All the aforementioned factors are likely to increase the demand for phase change materials over the forecast period.

Phase Change Materials Market Competitor Analysis

The phase change materials market is fragmented. The major companies (not in any particular order) include Cryopak A TCP Company, Microtek Laboratories Inc., Henkel AG & Co. KGaA, Parker Hannifin Corp., and Croda International PLC.

Additional Benefits:

  • The market estimate (ME) sheet in Excel format
  • 3 months of analyst support
レポート目次

1 INTRODUCTION
1.1 Study Deliverables
1.2 Study Assumptions
1.3 Scope of the Study

2 RESEARCH METHODOLOGY

3 EXECUTIVE SUMMARY

4 MARKET DYNAMICS
4.1 Drivers
4.1.1 Environmental Concerns over Reducing Greenhouse Emissions
4.1.2 Growing Global Trend toward Energy Saving and Sustainable Development
4.2 Restraints
4.2.1 Hazardous Nature of Phase Change Materials
4.2.2 Other Restraints
4.3 Industry Value Chain Analysis
4.4 Porter’s Five Forces Analysis
4.4.1 Bargaining Power of Suppliers
4.4.2 Bargaining Power of Consumers
4.4.3 Threat of New Entrants
4.4.4 Threat of Substitute Products and Services
4.4.5 Degree of Competition
4.5 Raw Material Analysis
4.6 Patent Analysis

5 MARKET SEGMENTATION
5.1 By Product Type
5.1.1 Organic
5.1.2 Inorganic
5.1.3 Bio-based
5.2 By Encapsulation Technology
5.2.1 Macro
5.2.2 Micro
5.2.3 Molecular
5.3 By End-user Industry
5.3.1 Building and Construction
5.3.2 Packaging
5.3.3 Textiles
5.3.4 Electronics
5.3.5 Transportation
5.3.6 Other End-user Industries
5.4 Geography
5.4.1 Asia-Pacific
5.4.1.1 China
5.4.1.2 India
5.4.1.3 Japan
5.4.1.4 South Korea
5.4.1.5 Rest of Asia-Pacific
5.4.2 North America
5.4.2.1 United States
5.4.2.2 Canada
5.4.2.3 Mexico
5.4.3 Europe
5.4.3.1 Germany
5.4.3.2 United Kingdom
5.4.3.3 Italy
5.4.3.4 France
5.4.3.5 Rest of Europe
5.4.4 Rest of the World
5.4.4.1 Brazil
5.4.4.2 Saudi Arabia
5.4.4.3 South Africa
5.4.4.4 Other Countries

6 COMPETITIVE LANDSCAPE
6.1 Mergers and Acquisitions, Joint Ventures, Collaborations, and Agreements
6.2 Market Share(%)**/Ranking Analysis
6.3 Strategies Adopted by Leading Players
6.4 Company Profiles
6.4.1 Aavid Kunze GmbH (Boyd Corporation)
6.4.2 Appvion Inc.
6.4.3 Croda International PLC
6.4.4 Cryopak A TCP Company
6.4.5 Entropy Solutions LLC
6.4.6 Henkel AG & Co. KGAA
6.4.7 Kaplan Energy
6.4.8 Laird Technologies
6.4.9 MICROTEK LABORATORIES INC.
6.4.10 National Gypsum Company
6.4.11 Outlast Technologies LLC
6.4.12 Parker Hannifin Corporation
6.4.13 Rubitherm Technologies Ltd
6.4.14 Shenzhen Aochuan Technology Co. Ltd
6.4.15 Shin-Etsu Chemical Co. Ltd
6.4.16 Sonoco Thermosafe (SON)

7 MARKET OPPORTUNITIES AND FUTURE TRENDS
7.1 Development of Phase Change Thermal Interface Material
7.2 Rising Awareness of Bio-based Phase Change Materials