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市場調查報告書
商品編碼
1802916
全球聚乙烯丁醛市場(按應用、最終用途行業、產品類型、樹脂類型、厚度和地區分類)- 預測至2030年Polyvinyl Butyral Market by Application, Thickness, Resin Type, Product Type, End-use Industry, and Region - Global Forecast to 2030 |
聚乙烯丁醛市場規模預計將從 2025 年的 15 億美元成長到 2030 年的 19 億美元,預測期內複合年成長率為 5.0%。
調查範圍 | |
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調查年份 | 2021-2030 |
基準年 | 2024 |
預測期 | 2025-2030 |
對價單位 | 數量(百萬美元/十億美元)和千噸 |
部分 | 依應用、依最終用途產業、依產品類型、按樹脂類型、厚度、按地區 |
目標區域 | 北美、亞太地區、歐洲、中東和非洲、南美 |
PVB 產業正在經歷顯著成長,其應用領域涵蓋汽車、建築和可再生能源等關鍵產業。推動這一成長的關鍵因素之一是 PVB 在夾層安全玻璃中的應用日益廣泛。 PVB 可作為中間膜,在撞擊過程中將玻璃黏合在一起,從而提高安全性並降低受傷風險。在汽車領域,隨著汽車產量(尤其是在亞太地區)的不斷成長以及監管要求的不斷提高,PVB 夾層玻璃已成為新車擋風玻璃、側窗和天窗的標準配置。此外,消費者的偏好也推動了對隔音、日光控制玻璃以及節能解決方案的需求。
在建築領域,都市化和基礎建設推動著夾層玻璃在商業和住宅建築的應用不斷增加,以提高安全性、隔音效果和紫外線防護性能。此外,在可再生能源產業,尤其是在光伏組件領域,PVB 可以保護太陽能電池免受潮濕和機械應力的影響。此外,PVB 技術的持續創新,例如 PVB 中間膜中的生物基選擇和再生材料,符合永續性趨勢,並持續受到歡迎,吸引更廣泛的人群。這些應用以及全球市場所需的必需產品,支撐著日常生活中 PVB 需求的穩定持續成長。
聚乙烯丁醛(PVB) 市場預計將穩定成長,這得益於其在汽車、建築和可再生能源等許多主要工業和商業領域的成功應用。汽車產業繼續擴大生產,主要是在亞太地區,而全球範圍內的安全玻璃法規也日益嚴格。汽車產量的增加推動了對夾層安全玻璃的需求,而 PVB 是其中的關鍵成分。印度、中國和巴西等國家的快速都市化和現代化,以及歐洲日益嚴格的能源效率和環境標準推動了建築業的發展。在可再生能源發電領域,PVB 通常用於保護產生可再生能源的太陽能板中的太陽能電池,這也導致了 PVB消費量的增加。由於各種回收流程和挑戰,公司必須投資新的回收方法,並投入資源使 PVB 生產更具永續,才能在嚴格的法規和原料成本上漲的環境中保持競爭力。
聚乙烯丁醛(PVB) 市場預計將在標準薄膜領域快速成長,該領域在大多數主要終端用戶領域(包括汽車和建築應用)提供性能、成本和法規遵循的最佳平衡。典型的 PVB 薄膜厚度為 0.76 毫米,被認為是夾層安全玻璃的行業標準。包括KURARAY CO. LTD.(Trosifol) 和酵母(Saflex) 在內的業內相關人員表示,這個厚度範圍為嵌裝玻璃應用提供了必要的特性,包括優異的抗衝擊性、光學清晰度、隔音性和紫外線防護性。在汽車產業,標準薄膜廣泛用於擋風玻璃和車窗,以滿足全球碰撞測試標準和聲學舒適度法規。電動車也建議更多使用標準厚度的聲學 PVB,以降低內部噪音並改善駕駛體驗。在建築業,PVB 薄膜用於從學校到辦公大樓的所有類型建築的建築幕牆和窗戶,需要快速應用、自動化生產線、能源效率和抗衝擊等安全標準。與超薄和厚夾層不同,標準膜提供了實用的中間地帶,滿足了更多的功能需求,同時實現了更具成本效益和可擴展性的生產,使標準膜成為成長最快的細分市場。
無機污染物是聚乙烯丁醛(EO) 市場成長最快的應用領域,這得益於處理重金屬、硝酸鹽和其他無機污染物的需求。 EO 透過直接電子轉移或活性物質的生成來氧化或還原去除無機物,這使得無機處理在傳統方法無法滿足去除需求時變得非常有效。由於工業實務的改變和法規的日益嚴格,EO 正逐漸成為亞太地區首選的處理技術。在該地區,採礦、化學和電子行業必須滿足嚴格的污染物排放標準,尤其是重金屬排放標準,例如中國的工業污水和採礦試點項目以及印度,採礦作業的污水排放標準中規定了零排放。在北美,有關硝酸鹽污染的農業法規已發生變化,涵蓋了農業徑流和地下水,這導致使用二氧化鉛和鈦電極進行高效硝酸鹽處理的 EO 試點計畫越來越多。在歐洲, 《都市廢水處理指令》及其關於防止工業廢水中污染(包括無機污染物)的要求,引發了人們對 EO 在化工廠中應用的興趣。在世界銀行的支持下,非洲、南美和拉丁美洲國家採礦活動的成長也推動了對環氧乙烷處理的需求,這種處理方法可以處理含有重金屬的酸性礦井廢水。
以樹脂類型分類的聚乙烯丁醛(PVB) 市場以高分子量 PVB 樹脂為主,預計此類樹脂的成長速度最快。高分子量 PVB 樹脂的成功源於其先進的性能特徵,為其在交通、建築、施工和電子行業的應用提供了額外的障礙。與低分子量和中分子量 PVB 樹脂相比,高分子量 PVB 樹脂具有更優異的機械強度、彈性、附著力和熱穩定性。這些獨特的性能對於夾層安全玻璃的應用至關重要,而夾層安全玻璃的市場需求日益成長,也促使住宅和商業領域多個組織制定了日益嚴格的安全、衛生、環境和產品責任標準。
據業內資訊來源(包括技術出版物)稱,高分子量樹脂用於夾層安全玻璃時,聲學性能更佳,抗分層性更強。隨著電動車的興起以及領先設計公司對建築設計的精益求精,這一趨勢仍在持續。未來的發展方向包括安全玻璃規格和多功能嵌裝玻璃,其先進設計包括隔音、防紫外線和節能。樹脂配方技術的最新創新使製造商能夠生產更高分子量的PVB樹脂,並提高其加工性能並與現有的夾層設備相容。隨著全球建築、汽車和電子產業對高性能、長壽命材料的需求不斷成長,「高分子量」PVB樹脂的前景仍然光明。
本報告研究了全球聚乙烯丁醛市場,並按應用、最終用途行業、產品類型、樹脂類型、厚度、區域趨勢和公司概況對市場進行了概述。
The polyvinyl butyral market is projected to grow from USD 1.5 billion in 2025 to USD 1.9 billion by 2030, registering a CAGR of 5.0% during the forecast period.
Scope of the Report | |
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Years Considered for the Study | 2021-2030 |
Base Year | 2024 |
Forecast Period | 2025-2030 |
Units Considered | Value (USD Million/Billion) and Kiloton |
Segments | Resin Type, Product Type, Thickness, Application, End-use Industry, and Region |
Regions covered | North America, Asia Pacific, Europe, Middle East & Africa, and South America |
The PVB industry is experiencing significant growth with many applications across major industries such as automotive, construction, and renewable energy. A key driver of this growth is the rising use of PVB in laminated safety glass, where PVB acts as an interlayer to hold glass together upon impact, enhancing safety and reducing injury risk. In the automotive sector, increased vehicle production-especially in the Asia Pacific region-and regulatory requirements mean PVB laminated glass is now standard in new vehicles for windshields, side windows, and sunroofs. Additionally, there is growing demand for acoustic and solar-control glazing and energy-efficient solutions, driven by consumer preferences.
In construction, urbanization and infrastructure development are boosting the use of laminated glass in both commercial and residential buildings to improve safety, noise insulation, and UV protection. The use of PVB in laminated glass is also an important factor in the renewable energy industry, especially in photovoltaic modules, where PVB protects solar cells from moisture and mechanical stress. Additionally, ongoing innovation of PVB, including bio-based options and recycled content for laminated PVB interlayers, aligns with sustainability trends and continues to grow in popularity to appeal to a broader demographic. These applications and essential products needed in the global market support steady and consistent growth in demand for PVB in our daily lives.
"Powder & granules segment to be fastest-growing product type segment of polyvinyl butyral market during forecast period"
The polyvinyl butyral (PVB) market is poised for steady growth due to its successful use in many major industrial and private sector applications across automotive, construction, and renewable energy. The automotive industry has continued to increase production, especially in the Asia Pacific region, while also becoming subject to stricter safety glass regulations worldwide. As vehicle manufacturing rises, the need for laminated safety glass will grow, with PVB being a key component. The construction sector also drives PVB demand due to rapid urbanization and modernization in countries like India, China, and Brazil, along with stricter energy efficiency and environmental standards in many European nations. The renewable energy sector contributes to increased PVB consumption since it is often used to protect photovoltaic cells in solar panels that generate renewable energy. Due to different recycling processes and challenges, companies must invest in new recycling methods and commit resources to making PVB production more sustainable to stay competitive amid strict regulations and rising raw material costs.
"Standard films to be fastest-growing segment of polyvinyl butyral market in terms of value"
The standard film segment is projected to witness fast growth in the polyvinyl butyral (PVB) market due to its optimal balance of performance, cost, and regulation compliance across most major end-user sectors, such as automotive and construction. Standard PVB films typically have a nominal thickness of 0.76 mm and are regarded as the industry standard for laminated safety glass. Industry sources like Kuraray (Trosifol) and Eastman (Saflex) have stated that this nominal thickness range provides good impact resistance, optical clarity, sound insulation, and UV protection-all essential characteristics for glazing applications. In the automotive industry, standard films are widely used in windshields and windows to ensure they pass global crash test standards and meet (acoustic) comfort regulations. They also suggest that the use of acoustic PVBs, within standard thicknesses, is increasing in electric vehicles to reduce cabin noise and enhance the driving experience. In the architecture industry, all types of buildings, from schools to office towers, utilize PVB films in facades and windows where quick adherence, automated production lines, energy efficiency compliance, and safety standards like impact resistance are required. Unlike ultra-thin or thick interlayers, standard films provide a practical middle ground, meeting more functional needs while enabling more cost-effective and scalable production; thus, standard films have become the fastest-growing sub-segment.
"Inorganic pollutants treatment to be fastest-growing in electrode material segment of polyvinyl butyral market in terms of value"
Inorganic pollutants are the fastest-growing application segment in the Polyvinyl butyral (EO) market due to the need to treat heavy metals, nitrates, and other inorganic contaminants. EO removes inorganics through oxidation or reduction by direct electron transfer or reactive species generation, and treatment of inorganics can be highly effective when traditional methods cannot meet removal needs. Due to changes in industrial practices and stricter regulations, EO is mainly emerging as the best treatment technology in the Asia-Pacific region, where industries in mining, chemicals, and electronics must meet stringent discharge standards for pollutants, especially heavy metals, as seen in pilots in China's industrial wastewater and mining industries, and in India, where mining operations have a zero-liquid discharge component to wastewater discharge standards. Changes in North America's agricultural regulations for nitrate contamination, which now target agricultural runoff and groundwater, have increased the use of EO pilots using lead dioxide or titanium electrodes for effective and efficient nitrate treatment. In Europe, the Urban Waste Water Treatment Directive and its requirements for pollution prevention, including inorganic contaminants in industrial discharges, have generated interest in EO applications in chemical plants. The growth of mining activities in countries across Africa, South America, and Latin America has also driven demand for EO treatment, as it can treat acidic mine drainage with heavy metals, with support from the World Bank.
"Higher molecular weight PVB resin to be fastest-growing resin type segment of polyvinyl butyral market in terms of value"
The leading materials in the polyvinyl butyral (PVB) market, classified by resin type, are the higher molecular weight PVB resins, which are the fastest-growing based on expected resin growth rates. The success of businesses in the higher molecular weight PVB resin segment is due to their advanced performance features, offering extra barriers for use in transportation, building, construction, and electronics industries. Compared to low or medium molecular weight PVB resins, higher molecular weight variants deliver superior mechanical strength, elasticity, adhesion, and thermal stability. These unique qualities are essential when used in laminated safety glass, as there are increased demands for interlayer strength and durability, along with a trend toward stricter safety, health, environmental, and product liability standards set by multiple organizations in the residential and commercial sectors.
Sources across the industry, including technical publications, indicate that higher molecular weight resin choices have better acoustic dampening characteristics when used in laminated safety glass and are more resistant to delamination. This is recommended for electric vehicles and as the trend continues among leading design firms for exquisite architectural design. There is even a developing trend toward multi-functional glazing that will have future specifications for safety glass and advanced designs that include sound insulation, ultraviolet shielding, and energy efficiency. Recent innovations in resin formulation technologies have enabled manufacturers to produce higher molecular weight PVBs with improved processability and compatibility with existing laminated glass equipment. With the increasing global demand for materials that deliver high performance and longer service life across the construction, automotive, and electronics industries, the outlook for "high molecular weight" PVB resin remains promising.
In-depth interviews were conducted with Chief Executive Officers (CEOs), marketing directors, other innovation and technology directors, and executives from various key organizations operating in the polyvinyl butyral market. Additionally, information was gathered from secondary research to determine and verify the market size of several segments.
Key players in the polyvinyl butyral market include Sekisui Chemical Co. Ltd. (Japan), Kuraray Co. Ltd. (Japan), Eastman Chemical Company (US), Hubergroup (US), Chang Chun Group (China), Anhui WanWei Bisheng New Material Co., Ltd. (China), Kingboard Fogang Specialty Resin Co., Ltd (China), Qingdao Jinuo New Materials Co., Ltd. (China), Huakai Plastic Co. Ltd. (China), and Everlam (Belgium). The study provides an in-depth competitive analysis of these key players in the Polyvinyl Butyral market, including their company profiles, recent developments, and main market strategies.
Research Coverage
This report segments the market for polyvinyl butyral based on resin type, thickness, product type, end-use industry, application, and region, and provides estimates for the overall market value across different regions. A detailed analysis of key industry players is included to offer insights into their business overviews, products and services, key strategies, and expansions related to the polyvinyl butyral market.
Key benefits of buying this report
This research report focuses on various levels of analysis - industry analysis (industry trends), market ranking analysis of top players, and company profiles, which together provide an overall view of the competitive landscape; emerging and high-growth segments of the polyvinyl butyral market; high-growth regions; and market drivers, restraints, opportunities, and challenges.