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Europe Inorganic Advanced Phase Change Materials Market

  • Report Code: IN 1003
  • Publish Date: Upcoming
  
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Phase Change Material (PCM) is basically an energy storage technology. They are used mainly in the thermal packaging industry to maintain a temperatureā€sensitive product within the manufacturer’s required temperature range during all transportation phases. It is the Advanced PCMs that are used at commercial level. These materials also help adhere to the carbon credits allotted to the buildings.

 

The European advanced phase change materials market is one of the emerging markets in the temperature controlled packaging and textile industries. The market is expected to grow at a CAGR of 21.9% from 2013 to 2018. The growth in the market is triggered by the increasing consumption of eco-friendly applications like heating ventilation and air conditioning system (HVAC). Also, the climatic conditions in the region fuel the demand of textile industry. This in turn would accelerate the market growth of the advanced PCMs market as the textile industry is one of its important application areas.

 

The European bio-based advanced phase change materials market is segmented on the basis of application, sub-markets, and geography. The market segmented in terms of application covers building & construction, energy storage systems, HVAC system, phase change memory, refrigeration, supply chain, textile application, and others. On the basis of sub-markets, the market includes organic, inorganic, and bio-based PCMs.

 

The market further segmented on the basis of geography includes countries such as, Germany, France, the U.K., and others. Europe offers a lucrative market to PCM players due to its focus on energy security. It significantly reduces energy consumption in applications such as HVAC systems and solar heaters.

 

The market report also covers some of the leading companies operating in this region. Some of the key players are BASF SE, Ewald Dörken AG, Intel Corporation, Honeywell Electronics Materials Inc., Micron Technologies Inc., and others.

      

The emerging opportunities in this market have been identified in the report on the basis of secondary research. The research involves press releases, industry white papers, and many more.

 

Lastly, the report also provides product portfolio, recent developments, growth strategies & trends, financials, and market share, and helps the user of this report to determine competition and devise business strategy. Also, the drivers, restraints, and opportunities of the market are covered in the report.



1 Introduction

1.1 Objective of the study

1.2 Market Definitions and scope of the study

1.3 Markets Covered

1.4 Stakeholders

2. Research Methodology

2.1 Integrated Ecosystem of Europe Inorganic Advanced Phase Change Material

2.2 Arriving at Europe Inorganic Advanced Phase Change Material Size

2.3 Top Down Approach

2.4 Bottom Up

2.5 Assumptions 

3 Executive Summary

4 Market Overview

4.1 Introduction

4.2 Parent Market Comparison

4.3 Drivers and Inhibitors of Europe Inorganic Advanced Phase Change Material

4.3.1 Drivers of Europe Inorganic Advanced Phase Change Material

4.3.1.1 Energy Saving  

4.3.1.2 Used for both heating and cooling purposes 

4.3.2 Inhibitors of Europe Inorganic Advanced Phase Change Material

4.3.2.1 Low stability of phase change memory in harsh conditions 

4.3.2.2 Shifting Cost 

5 Inorganic Advanced Phase Change Material - Europe, By Applications

5.1 Research Methodology

5.2 Demand Side Analysis

5.3 Inorganic Advanced Phase Change Material By Application – HVAC System Snapshot

5.3.1 Inorganic Advanced Phase Change Material By Application - HVAC System Industry

5.3.2 HVAC System – By Geographies

5.4 Inorganic Advanced Phase Change Material By Application - Textiles Manufacturing Snapshot

5.4.1 Inorganic Advanced Phase Change Material By Application - Textiles Manufacturing 

5.4.2 Textiles Manufacturing - By Geographies

5.5 Inorganic Advanced Phase Change Material By Application - Energy Storage Systems Snapshot

5.5.1 Inorganic Advanced Phase Change Material By Application - Energy Storage Systems

5.5.2 Energy Storage Systems - By Geographies

5.6 Inorganic Advanced Phase Change Material By Application - Phase change memory Snapshot

5.6.1 Inorganic Advanced Phase Change Material By Application - Phase change memory

5.6.2 Phase change memory - By Geographies

5.7 Inorganic Advanced Phase Change Material By Application – Refrigeration Snapshot

5.7.1 Inorganic Advanced Phase Change Material By Application – Refrigeration

5.7.2 Refrigeration - By Geographies

5.8 Inorganic Advanced Phase Change Material By Application – Building & Construction Snapshot

5.8.1 Inorganic Advanced Phase Change Material By Application – Building & Construction

5.8.2 Building & Construction - By Geographies

5.9 Inorganic Advanced Phase Change Material By Application – Supply Chain Snapshot

5.9.1 Inorganic Advanced Phase Change Material By Application – Supply Chain

5.9.2 Supply Chain - By Geographies

5.10 Inorganic Advanced Phase Change Material By Application – Other Applications Snapshot

5.10.1 Inorganic Advanced Phase Change Material By Application – Other Applications

5.10.2 Other Applications - By Geographies

6 Inorganic Advanced Phase Change Material - Europe, By Geographies

6.1 Research Methodology

6.2 Introduction

6.3 Inorganic Advanced Phase Change Material – Europe Snapshot

6.4 Inorganic Advanced Phase Change Material – U.K.

6.4.1 Inorganic Advanced Phase Change Material – U.K. By Application

6.4.1.1 Inorganic Advanced Phase Change Material – Marine Industry

6.4.1.2 Inorganic Advanced Phase Change Material – Transportation Industry

6.4.1.3 Inorganic Advanced Phase Change Material – Electrical & Electronics

6.4.1.4 Inorganic Advanced Phase Change Material – Pipes & Tanks 

6.4.1.5 Inorganic Advanced Phase Change Material – Building & Construction 

6.4.1.6 Inorganic Advanced Phase Change Material – Wind Energy

6.4.1.7 Inorganic Advanced Phase Change Material – Supply Chain

6.4.1.8 Inorganic Advanced Phase Change Material – Other Applications

6.5 Inorganic Advanced Phase Change Material – France

6.5.1 Inorganic Advanced Phase Change Material – France By Application

6.5.1.1 Inorganic Advanced Phase Change Material – Marine Industry

6.5.1.2 Inorganic Advanced Phase Change Material – Transportation Industry

6.5.1.3 Inorganic Advanced Phase Change Material – Electrical & Electronics

6.5.1.4 Inorganic Advanced Phase Change Material – Pipes & Tanks 

6.5.1.5 Inorganic Advanced Phase Change Material – Building & Construction 

6.5.1.6 Inorganic Advanced Phase Change Material – Wind Energy

6.5.1.7 Inorganic Advanced Phase Change Material – Supply Chain

6.5.1.8 Inorganic Advanced Phase Change Material – Other Applications

6.6 Inorganic Advanced Phase Change Material – Germany

6.6.1 Inorganic Advanced Phase Change Material – Germany By Application

6.6.1.1 Inorganic Advanced Phase Change Material – Marine Industry

6.6.1.2 Inorganic Advanced Phase Change Material – Transportation Industry

6.6.1.3 Inorganic Advanced Phase Change Material – Electrical & Electronics

6.6.1.4 Inorganic Advanced Phase Change Material – Pipes & Tanks 

6.6.1.5 Inorganic Advanced Phase Change Material – Building & Construction 

6.6.1.6 Inorganic Advanced Phase Change Material – Wind Energy

6.6.1.7 Inorganic Advanced Phase Change Material – Supply Chain

6.6.1.8 Inorganic Advanced Phase Change Material – Other Applications

6.7 Inorganic Advanced Phase Change Material – Italy

6.7.1 Inorganic Advanced Phase Change Material – Italy By Application

6.7.1.1 Inorganic Advanced Phase Change Material – Marine Industry

6.7.1.2 Inorganic Advanced Phase Change Material – Transportation Industry

6.7.1.3 Inorganic Advanced Phase Change Material – Electrical & Electronics

6.7.1.4 Inorganic Advanced Phase Change Material – Pipes & Tanks 

6.7.1.5 Inorganic Advanced Phase Change Material – Building & Construction 

6.7.1.6 Inorganic Advanced Phase Change Material – Wind Energy

6.7.1.7 Inorganic Advanced Phase Change Material – Supply Chain

6.7.1.8 Inorganic Advanced Phase Change Material – Other Applications

6.8 Inorganic Advanced Phase Change Material – Spain

6.8.1 Inorganic Advanced Phase Change Material – Spain By Application

6.8.1.1 Inorganic Advanced Phase Change Material – Marine Industry

6.8.1.2 Inorganic Advanced Phase Change Material – Transportation Industry

6.8.1.3 Inorganic Advanced Phase Change Material – Electrical & Electronics

6.8.1.4 Inorganic Advanced Phase Change Material – Pipes & Tanks 

6.8.1.5 Inorganic Advanced Phase Change Material – Building & Construction 

6.8.1.6 Inorganic Advanced Phase Change Material – Wind Energy

6.8.1.7 Inorganic Advanced Phase Change Material – Supply Chain

6.8.1.8 Inorganic Advanced Phase Change Material – Other Applications

6.9 Inorganic Advanced Phase Change Material – Russia

6.9.1 Inorganic Advanced Phase Change Material – Russia By Application

6.9.1.1 Inorganic Advanced Phase Change Material – Marine Industry

6.9.1.2 Inorganic Advanced Phase Change Material – Transportation Industry

6.9.1.3 Inorganic Advanced Phase Change Material – Electrical & Electronics

6.9.1.4 Inorganic Advanced Phase Change Material – Pipes & Tanks 

6.9.1.5 Inorganic Advanced Phase Change Material – Building & Construction 

6.9.1.6 Inorganic Advanced Phase Change Material – Wind Energy

6.9.1.7 Inorganic Advanced Phase Change Material – Supply Chain

6.9.1.8 Inorganic Advanced Phase Change Material – Other Applications

7 Inorganic Advanced Phase Change Material - Europe, By Companies

7.1 Competitive Landscape

7.1.1 Merger & Acquisition

7.1.2 Other Expansion

7.1.3 New Synergies

7.2 SGL ROTEC GMBH & CO. KG

7.3 Rubitherm Technologies GMBH

7.4 Ewald Dörken AG

7.5 Climator Sweden AB

7.6 SALCA BV

7.7 Phase Change Material Products Limited

7.8 Cryopak Inc.

7.9 Sonoco Products Co.

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