市場調查報告書
商品編碼
1370782
節能玻璃市場 - 2018-2028 年全球產業規模、佔有率、趨勢、機會與預測,按玻璃、塗層、垂直產業、地區、競爭細分Energy Efficient Glass Market - Global Industry Size, Share, Trends, Opportunity, and Forecast, 2018-2028 Segmented By Glazing, By Coating, By Industry Vertical, By Region, Competition |
預計節能玻璃市場在預測期內將以快速年複合成長率成長。
節能玻璃是一種旨在最大限度地減少建築物內部和外部之間的熱傳遞的玻璃,從而提高隔熱性能並減少加熱和冷卻的能耗。它通常具有特殊的塗層或功能,有助於阻擋或反射某些波長的光,從而減少夏季的太陽熱量增益和冬季的熱量損失。市場上有多種類型的節能玻璃,每種都有其特點和優點。一些常見的類型包括:
Low-E(低輻射率)玻璃:這種玻璃具有極薄的塗層,可以反射熱量,減少進入建築物的紅外線和紫外線 (UV) 輻射量。這有助於保持室內夏季涼爽、冬季溫暖,從而節省能源。
市場概況 | |
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預測期 | 2024-2028 |
2022 年市場規模 | 282.5億美元 |
2028 年市場規模 | 608.4億美元 |
2023-2028 年年複合成長率 | 12.72% |
成長最快的細分市場 | 汽車 |
最大的市場 | 北美洲 |
中空玻璃單元 (IGU):IGU 由兩個或更多玻璃板組成,玻璃板之間由空氣或充氣空間隔開,通常充滿氬氣或氪氣。該氣體充當絕緣體,減少通過玻璃的熱傳遞並提高熱性能。
建築業越來越認知到現代建築實踐中永續性和能源效率的重要性,這推動了市場對節能玻璃的需求。節能玻璃,也稱為低輻射 (low-E) 玻璃,旨在減少透過窗戶和其他玻璃表面的熱傳遞,有助於保持舒適的室內溫度並減少供暖和冷卻的能耗。
建築業對節能玻璃的需求不斷成長可歸因於多種因素。首先,人們越來越意識到減少溫室氣體排放和應對氣候變遷的必要性。節能玻璃可以減少人工加熱和冷卻的需要,從而幫助建築物減少碳足跡,從而降低能源消耗和相關排放。
其次,節能玻璃有助於提高建築的整體能源效率,這正成為建築業主和開發商的重要考量。節能建築可以透過減少能源消耗來降低營運成本,從長遠來看可以節省大量資金。
第三,世界許多國家正在實施與能源效率相關的更嚴格的建築規範和法規。這些法規通常要求在新建和改造專案中使用節能材料,包括玻璃。隨著建築商和建築師尋求遵守這些法規並為其建築物實現更高的能源性能評級,這推動了對節能玻璃的需求。
此外,玻璃技術的進步促進了創新節能玻璃產品的開發,這些產品在隔熱、陽光控制和減少眩光方面提供了改進的性能。這些技術進步擴大了建築師和建築商的選擇範圍,使節能玻璃成為現代建築設計可行且有吸引力的選擇。
總體而言,建築業對節能玻璃的需求不斷成長,可歸因於對永續性的日益重視、更嚴格的建築規範和法規以及玻璃技術的進步。隨著建築業繼續在建築設計和施工實踐中優先考慮能源效率和永續性,預計這一趨勢將在未來幾年持續下去。
綠建築的日益突出確實推動了全球節能玻璃市場的發展。綠建築旨在對環境負責和資源節約型,非常重視能源效率,包括在窗戶和外牆中使用節能玻璃。節能玻璃,也稱為高性能或低輻射(Low-E)玻璃,旨在最大限度地減少熱傳遞並減少建築物供暖、製冷和照明的能耗。許多國家和地區已經實施了能源效率法規和建築規範,強制要求在新建築或建築翻修中使用節能玻璃。這些法規旨在減少溫室氣體排放、緩解氣候變遷並降低建築業的能源消耗。
綠建築認證,如領先能源與環境設計 (LEED)、建築研究機構環境評估方法 (BREEAM) 等,鼓勵和獎勵在建築施工中使用節能材料,包括玻璃。
許多開發商、建築師和建築業主追求綠色建築認證,這推動了對節能玻璃的需求。節能玻璃可以最大限度地減少炎熱氣候下的熱量增加和寒冷氣候下的熱量損失,從而顯著降低建築物的能源消耗,從而降低供暖、冷氣和照明成本。建築業主和營運商越來越認知到與節能玻璃相關的長期成本節約,這激勵他們投資此類產品。節能玻璃可以透過減少溫室氣體排放、減少對化石燃料的依賴和保護自然資源來促進建築物的環境永續性。隨著環保意識和關注的不斷增強,對節能玻璃的需求預計將會增加。
總之,綠建築的日益突出,加上能源效率法規、綠建築認證、能源成本節約、環境永續性和技術進步,正在推動市場對節能玻璃的需求。對永續和節能建築實踐的日益關注預計將在未來幾年進一步推動節能玻璃市場。
根據玻璃,市場分為三層玻璃、雙層玻璃和單層玻璃。根據塗層,市場分為硬塗層和軟塗層。根據垂直產業,市場分為建築、汽車、太陽能板等。市場分析也研究區域細分,以設計區域市場細分,分為北美、歐洲、亞太地區、南美以及中東和非洲。
全球節能玻璃市場的主要參與者包括 Abrisa Technologies、AGC Glass Europe、Cardinal Glass Industries Inc.、Central Glass Co. Ltd、guardian Glass LLC、Morley Glass & Glazing Ltd、Nippon Sheet Glass Co. Ltd、Saint-Gobain、蕭特股份公司和Ecam 集團。
節能玻璃市場競爭激烈,各公司不斷尋求透過專業知識和成本效益使自己脫穎而出。隨著對創新產品的需求持續成長,節能玻璃市場預計在未來幾年將進一步擴大。
在本報告中,除了產業趨勢外,全球節能玻璃市場也分為以下幾類:
(註:公司名單可依客戶要求客製化。)
Energy Efficient Glass Market is expected to grow at a fast CAGR during the forecast period.
Energy-efficient glass is a type of glass that is designed to minimize heat transfer between the interior and exterior of a building, resulting in improved thermal insulation and reduced energy consumption for heating and cooling. It typically has special coatings or features that help to block or reflect certain wavelengths of light, thereby reducing solar heat gain in the summer and heat loss in the winter. There are several types of energy-efficient glass available in the market, each with its features and benefits. Some common types include:
Low-E (low-emissivity) glass: This type of glass has a microscopically thin coating that reflects heat, reducing the amount of infrared and ultraviolet (UV) radiation that enters a building. This helps to keep the interior cool in the summer and warm in the winter, resulting in energy savings.
Market Overview | |
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Forecast Period | 2024-2028 |
Market Size 2022 | USD 28.25 Billion |
Market Size 2028 | USD 60.84 Billion |
CAGR 2023-2028 | 12.72% |
Fastest Growing Segment | Automotive |
Largest Market | North America |
Insulated glass units (IGUs): IGUs consist of two or more glass panes separated by an air or gas-filled space, typically filled with argon or krypton gas. The gas acts as an insulator, reducing heat transfer through the glass and improving thermal performance.
Triple-glazed glass: Like IGUs, triple-glazed glass consists of three glass panes separated by air or gas-filled spaces. Triple-glazed glass provides even better thermal insulation compared to IGUs, making it highly energy-efficient.
Tinted or reflective glass: Tinted or reflective glass has a special coating that reduces the amount of solar radiation that passes through the glass, reducing heat gain in the interior. It is commonly used in hot climates to reduce cooling costs.
Electrochromic glass: Electrochromic glass is a type of smart glass that can change its tint or opacity in response to an electric current. This allows for dynamic control of heat and light transmission, making it highly energy-efficient and adaptable to changing environmental conditions.
Energy-efficient glass is widely used in windows, doors, and skylights in residential, commercial, and industrial buildings to improve energy efficiency, reduce greenhouse gas emissions, and lower heating and cooling costs. It is an important component of green building design and sustainable architecture, helping to create more energy-efficient and eco-friendly buildings.
The building and construction sector is increasingly recognizing the importance of sustainability and energy efficiency in modern construction practices, and this is driving the demand for energy efficient glass in the market. Energy efficient glass, also known as low-emissivity (low-E) glass, is designed to reduce heat transfer through windows and other glazed surfaces, helping to maintain comfortable indoor temperatures and reduce energy consumption for heating and cooling.
The growing demand for energy efficient glass in the building and construction sector can be attributed to several factors. First, there is a growing awareness of the need to reduce greenhouse gas emissions and combat climate change. Energy-efficient glasses can help buildings reduce their carbon footprint by reducing the need for artificial heating and cooling, thus lowering energy consumption and associated emissions.
Second, energy efficient glass can help improve the overall energy efficiency of buildings, which is becoming an important consideration for building owners and developers. Energy-efficient buildings can achieve lower operational costs by reducing energy consumption, which can lead to significant savings in the long run.
Third, stricter building codes and regulations related to energy efficiency are being implemented in many countries around the world. These regulations often require the use of energy efficient materials, including glass, in new construction and renovation projects. This is driving the demand for energy efficient glass as builders and architects seek to comply with these regulations and achieve higher energy performance ratings for their buildings.
Furthermore, advancements in glass technology have led to the development of innovative energy-efficient glass products that offer improved performance in terms of thermal insulation, solar control, and glare reduction. These technological advancements have expanded the range of options available for architects and builders, making energy efficient glass a viable and attractive choice for modern building designs.
Overall, the growing demand from the building and construction sector for energy efficient glass can be attributed to the increasing emphasis on sustainability, stricter building codes and regulations, and advancements in glass technology. This trend is expected to continue in the coming years as the construction industry continues to prioritize energy efficiency and sustainability in building design and construction practices.
The growing prominence of green buildings is indeed driving the market for energy efficient glass across the world. Green buildings, which are designed to be environmentally responsible and resource-efficient, place a strong emphasis on energy efficiency, including the use of energy-efficient glass in windows and facades. Energy-efficient glass, also known as high-performance or low-emissivity (Low-E) glass, is designed to minimize heat transfer and reduce energy consumption for heating, cooling, and lighting in buildings. Many countries and regions have implemented energy efficiency regulations and building codes that mandate the use of energy-efficient glass in new buildings or building renovations. These regulations aim to reduce greenhouse gas emissions, mitigate climate change, and lower energy consumption in the building sector.
Green building certifications, such as Leadership in Energy and Environmental Design (LEED), Building Research Establishment Environmental Assessment Method (BREEAM), and others, encourage and reward the use of energy-efficient materials, including glass, in building construction.
Many developers, architects, and building owners pursue green building certifications, which drives the demand for energy-efficient glass. Energy-efficient glass can significantly reduce the energy consumption of buildings by minimizing heat gain in hot climates and heat loss in cold climates, thereby lowering heating, cooling, and lighting costs. Building owners and operators are increasingly recognizing the long-term cost savings associated with energy-efficient glass, which incentivizes them to invest in such products. Energy-efficient glass can contribute to the environmental sustainability of buildings by reducing greenhouse gas emissions, decreasing the reliance on fossil fuels, and conserving natural resources. As environmental awareness and concerns continue to grow, the demand for energy-efficient glass is expected to increase.
In conclusion, the growing prominence of green buildings, along with energy efficiency regulations, green building certifications, energy cost savings, environmental sustainability, and technological advancements, are driving the demand for energy-efficient glass in the market. The increasing focus on sustainable and energy-efficient building practices is expected to further boost the energy-efficient glass market in the coming years.
Based on glazing, the market is segmented into triple glazing, double glazing, and single glazing. Based on coating, the market is segmented into hard coats and soft coats. Based on industry vertical, the market is segmented into building & construction, automotive, solar panels, and others. The market analysis also studies the regional segmentation to devise regional market segmentation, divided among North America, Europe, Asia-Pacific, South America, and Middle East & Africa.
Key players in the global energy efficient glass market are Abrisa Technologies, AGC Glass Europe, Cardinal Glass Industries Inc., Central Glass Co. Ltd, guardian Glass LLC, Morley Glass & Glazing Ltd, Nippon Sheet Glass Co. Ltd, Saint-Gobain, Schott AG, and Ecam Group.
The energy efficient glass market is highly competitive, with companies constantly seeking to differentiate themselves through their expertise, and cost-effectiveness. As the demand for innovative products continues to grow, the energy efficient glass market is expected to expand further in the coming years.
In this report, the global energy efficient glass market has been segmented into the following categories, in addition to the industry trends, which have also been detailed below:
(Note: The companies list can be customized based on the client requirements.)