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市場調查報告書
商品編碼
1284258
到 2028 年的相變材料市場預測——按類型(生物基、無機、有機、其他類型)、應用、地區進行的全球分析Phase Change Materials Market Forecasts to 2028 - Global Analysis By Type (Bio-Based, Inorganic, Organic and Other Types), Application and By Geography |
據Stratistics MRC稱,2022年全球相變材料市場規模將達到21億美元,預計2028年將達到61億美元,預計預測期內復合年增長率為19.4%成長於
潛熱是相變材料大量吸收或釋放的熱量。 相變材料可以提供多種熱管理技術,並有助於控制能源需求和利用之間的需求。 相變材料是一種能夠儲存大量能量並在相變過程中以潛熱形式釋放該能量的物質。 只要物質的物理狀態發生變化,即使溫度恆定,能量也會以輻射形式發射。
根據 Europa 的數據,與 1990 年相比,2017 年歐盟溫室氣體排放量下降了 19%,絕對減少量為 9.35 億我們有望實現到 2020 年減少 20% 和到 2030 年減少 40% 的 2020 年目標到上一年。
建築基礎設施(例如但不限於住宅牆壁、地板和屋頂)是使用相變材料建造的。 該技術的最大應用是通過將建築材料納入被動式建築系統來改變建築材料的熱性能。 因此,它在建築物內部裝飾中的應用正在取得進展,刺激了市場的擴大。
相變材料的腐蝕性以及低電導率和過冷等技術問題是主要障礙。 此外,無機材料具有腐蝕性、不穩定、極端冷卻等缺點,導致壽命短和維護成本高。 因此,這些因素限制了市場擴張。
由於運輸和儲存的食品量相對較大,製藥和食品行業在物流方面經歷了巨大的增長。 這種增長在很大程度上是由必須正確交付給客戶的溫度敏感貨物的運輸增加所推動的。 由於這些考慮,相變材料製造商有機會。
HVAC(供暖、通風和空調)系統用戶應為其係統投資購買相變材料。 如果認為具有成本效益,公司將採取適當措施整合相變材料。 從當前系統轉換到相變材料的成本現在很高。 因此,這已成為阻礙市場擴張的主要問題。
電暈爆發對相變材料市場產生了重大影響。 相變材料在建築行業的應用正在擴大。 由於建築活動停頓、物流問題、勞動力短缺和其他嚴重製約因素,建築業的增長急劇下滑。 由於原材料短缺、價格上漲和勞動力萎縮,建築供應鏈已經中斷。 結果,世界各地的主要建築工地和項目都被推遲了。
由於建築和建築行業的需求不斷增長,預計有機行業將實現利潤豐厚的增長。 被稱為有機相變材料的不同石油產品具有特定的相變溫度。 它在許多最終用途行業中的使用,特別是在建築和施工領域,正在增加其需求。 有機相變材料還具有優異的性能,例如降低密度和成本效率,這使得它們在重要的最終用途領域的需求越來越大。
由於對高效和創新建築材料的需求不斷增加,預計建築行業在預測期內將以最快的複合年增長率增長。 引入嚴格的節能建築標準,特別是在發達地區,增加了對高效和最先進隔熱材料的需求。 先進的相變材料在建築領域可以發揮關鍵作用,以節省能源並確保清潔和綠色的未來。
由於現代建築方法的盛行以及住宅領域對供暖、通風和空調 (HVAC) 系統的需求不斷增加,預計北美在預測期內將佔據最大的市場份額。 此外,由於越來越重視綠色建築和建築以減少碳足跡,該地區也在擴大相變材料領域。
由於技術改進,預計歐洲在預測期內的複合年增長率最高。 建築、紡織、汽車和製藥等許多最終用途領域的顯著發展和需求正在對該地區的相變材料市場產生重大影響。 建材對相變材料的需求創造了市場擴張的潛力。
2022 年 9 月,美國領先的泡沫產品分銷商和製造商 Sinomax USA Inc. 推出了全球首款生物基相變材料泡沫床上用品。 我們計劃推出一款名為 BioFrost 生產線的新產品,提供比其他 PCM 具有同等或更好的冷卻能力和更低成本的更可持續的冷卻解決方案。
2020 年 4 月,Rubizam Technologies 宣布推出 PhaseCube,這是一種新型空氣引導通風 PCM。 這種相變材料有各種尺寸和溫度可供選擇,可以有效地適應客戶的系統要求。
According to Stratistics MRC, the Global Phase Change Materials Market is accounted for $2.1 billion in 2022 and is expected to reach $6.1 billion by 2028 growing at a CAGR of 19.4% during the forecast period. The term "latent" heat refers to heat that is absorbed or released by phase change materials in significant volumes. They provide a range of thermal management techniques and are able to assist the capacity to control demand between energy requirements and utilisation. Phase change materials are substances that have a great capacity to store large amounts of energy and then release that energy as latent heat during the phase transition process. Even though the temperature remains constant, energy is released as radiation anytime the physical state of the material changes.
According to Europa, EU GHG emissions have reduced by 19% relative to 1990 levels in 2017, marking an absolute decline of 935 million tons of CO2 equivalents, placing the EU on track to reach its 2020 goal of lowering GHG emissions by 20% by 2020 and 40% by 2030 compared to 1990.
Building infrastructure for housing, including but not limited to walls, floors, roofs, and other building components, is constructed utilising phase-change materials. The most significant use of this technology has turned out to be changing the thermal properties of building materials by incorporating them into passive building systems. As a result, the product's increasing application in building interiors is fueling market expansion.
A significant obstacle is created by the corrosive nature of phase change materials and technical problems such low conductivity or super cooling. Inorganic varieties also suffer from drawbacks like corrosion, instability, and a propensity to become extremely cool, which shortens their lifespan and raises maintenance costs. As a result, these elements are limiting the market's expansion.
Due to the fact that relatively large amounts of food are now being transported and stored, the pharmaceutical and food industries have experienced tremendous growth in terms of logistics. The growth of has been greatly influenced by the increase in the transportation of goods that are temperature-sensitive and must reach customers in the appropriate forms. Manufacturers of phase transition materials have opportunities as a result of all these considerations.
HVAC (heating, ventilation, and air conditioning) system users must invest in phase transition materials for their systems. The corporation then takes the appropriate measures to incorporate phase change material if it is determined to be cost-effective. The cost of switching from the current systems to phase change materials is now significant. As a result, this is the main issue impeding market expansion.
The corona outbreak has a significant effect on the market for phase change materials. Applications for phase change materials in the building and construction industry are expanding. The building and construction industry experienced a sharp fall in growth as a result of the suspension of construction activity, logistics issues, manpower shortages, and other tight constraints. Along with a lack of raw materials, rising prices, and a shrinking workforce, the construction supply chain was disrupted. Major construction sites and projects around the world were delayed as a result.
The organic segment is estimated to have a lucrative growth, due to rising demand in the building and construction. The petroleum byproducts known as organic phase change materials have a specific phase transition temperature. The strong demand is a result of its expanding use across many end-use industries, particularly in the building and construction sector. The organic phase transition materials also offer good qualities including decreased density and efficient costs, which increases their demand in important end-use sectors.
The building and construction segment is anticipated to witness the fastest CAGR growth during the forecast period, due to increased the demand for highly effective and innovative construction materials. The demand for highly efficient and cutting-edge thermal insulation materials has increased as a result of the introduction of strict standards for energy-efficient buildings, particularly in developed regions. Advanced phase change materials have a significant role to play in the building sector to save energy and ensure a clean and green future.
North America is projected to hold the largest market share during the forecast period owing to the rising use of modern construction methods and the demand for Heating, ventilation, and air conditioning (HVAC) systems in the residential sector. Additionally, the sector for phase change materials is expanding in this region due to the increased focus on green building and construction to lower carbon emissions.
Europe is projected to have the highest CAGR over the forecast period, owing to technical improvements. The significant development and demand in numerous end-use sectors, including building & construction, textile, automotive, pharmaceutical, and others, has a significant impact on the market for phase change materials in this region. Building material demand for phase change materials is creating market expansion potential.
Some of the key players profiled in the Phase Change Materials Market include PureTemp LLC, PCM Products Ltd, Climator Sweden AB, Global E Systems, Croda International Plc, Honeywell International Inc., Laird Technologies, Inc., Phase Change Solutions, Sasol Limited, Cold Chain Technologies, Change Materials Products Ltd., Rubitherm Technologies GmbH, Microtek Laboratories Inc., Advansa B.V., Henkel AG & Company KGAA and Sinomax USA Inc.
In September 2022, Sinomax USA Inc., a U.S.-based leading foam products distributer and manufacturing company launched first-of-its-kind, bio-based phase change material based foam bedding. The company will launch new product by the name of BioFrost product line, which will provide more sustainable cooling solution with the same or better cooling power and lower costs than other PCMs.
In April 2020, the Rubitherm Technologies introduced the newly air-guided ventilation PCM, PhaseCube. The phase change material has availability in various sizes and temperature and offers efficient adaption to the requirement of client's system.