市場調查報告書
商品編碼
1494749
2030 年醋酸纖維素市場預測:按產品類型、應用和地區分類的全球分析Cellulose Acetate Market Forecasts to 2030 - Global Analysis By Product, Type, Application and by Geography |
根據Stratistics MRC的數據,2024年全球醋酸纖維素市場規模為60.7億美元,預計2030年將達到89.6億美元,預測期內複合年成長率為6.70%。
醋酸纖維素是用醋酸乙醯化纖維素(一種植物中天然存在的聚合物)製成的。透過這個過程,纖維素的可再生性和生物分解性與強度、柔韌性和防潮性等改進的品質相結合,從而創造出一種材料。此外,包括紡織業在內的許多行業都廣泛使用醋酸纖維素來生產服裝和家居用品所使用的纖維。它也用作消費品和包裝材料的基材,例如眼鏡框和薄膜。
據美國化學會稱,化學在解決世界上最緊迫的挑戰(包括永續能源、清潔水和人類健康)方面發揮核心作用。
紡織應用的採用率提高
醋酸纖維素纖維由於其優異的性能,如高耐用性、柔軟性和抗皺性,在紡織應用中越來越受歡迎。除此之外,這些纖維擴大用於工業紡織品、家居用品和服飾的生產。此外,紡織業對環保和生物分解性材料的日益青睞正在推動對醋酸纖維素纖維的需求,因為它們是聚酯和尼龍等合成纖維的永續替代品。
與合成纖維的競爭
聚酯和尼龍等合成纖維對醋酸纖維素纖維構成嚴重威脅,儘管後者俱有生物分解性和柔軟性。根據纖維應用的不同,合成纖維可能因其優異的品質(例如彈性、高拉伸強度和防潮性)而成為首選。此外,醋酸纖維素纖維市場的成長可能會受到合成纖維生產成本低的阻礙,特別是在消費者對價格敏感的市場。
人們對環保包裝的興趣日益濃厚
隨著永續性和環境保護越來越受到關注,對環保包裝解決方案的需求日益成長。醋酸纖維素具有可再生資源和生物分解性的特性,是環保包裝材料的有力候選者。此外,生產商可以利用這一機會,為各種市場(包括藥品、化妝品、食品和飲料等)創造最先進的醋酸纖維素包裝。
替代材料的技術進步
製造和材料科學的快速進步可能會帶來功能或性能優於醋酸纖維素的替代材料。例如,醋酸纖維素在各種應用中的市場佔有率可能會受到性能更好的新型合成聚合物的開拓以及由可再生資源製成的生質塑膠的引入的威脅。此外,為了在市場趨勢變化時保持競爭力,製造商必須投資於研發並掌握最新技術趨勢。
COVID-19 大流行對醋酸纖維素市場產生了重大影響,導致供應鏈中斷並減少了許多最終用途行業的需求。旅行限制、關門和經濟不確定性導致消費者支出下降,影響了包裝、消費品和紡織品等行業的醋酸纖維素產品市場。此外,生產計劃中斷、原料供應中斷、製造設施暫時關閉和物流挑戰加劇了供應鏈中斷。此外,儘管捲菸過濾嘴等某些應用的需求相對強勁,但由於企業面臨營運問題和不穩定的市場狀況,整體市場萎縮。
預計醋酸纖維素絲束細分市場在預測期內將成為最大的細分市場
醋酸纖維素絲束通常在醋酸纖維素市場中佔有最大佔有率。術語「醋酸纖維素絲束」是指醋酸纖維素的長連續絲,主要用於製造香菸過濾嘴。醋酸纖維素絲束的市場規模仍然很大,因為菸草業是世界上醋酸纖維素最大的使用者之一。雖然醋酸纖維素絲束在香菸過濾嘴中的應用並不廣泛,但它也用於紡織產品的生產,例如紗線和紡織品的生產。因其適應性、生物分解性和良好的過濾品質而在業界廣為人知。然而,消費者對更健康生活方式的偏好的改變以及針對菸草使用的監管措施的增加也可能會影響這一細分市場的成長。
塑膠產業預計在預測期內複合年成長率最高
在醋酸纖維素市場中,塑膠產業往往表現出最高的複合年成長率。由醋酸纖維素製成的塑膠是適應性極強的材料,可用於多種產品,包括消費品、時尚配件、汽車零件和眼鏡框。此外,消費者環保意識的增強、對環保和永續材料的需求不斷成長以及鼓勵使用生物分解性塑膠替代傳統塑膠的立法舉措正在推動這一領域的發展,這是推動成長的主要因素。
醋酸纖維素市場通常由亞太地區主導。該地區不斷成長的人口和經濟成長、大型醋酸纖維素生產商的存在以及消費品、紡織品和包裝等最終用途行業的大量需求是這一優勢的主要原因。亞太地區醋酸纖維素市場深受中國、印度、日本和韓國等國家的影響,這些國家的製造、紡織和菸草業正在推動消費者對醋酸纖維素產品的需求。此外,都市化、基礎設施開拓和個人消費支出的增加正在支持該地區的市場擴張。
中東和非洲地區的醋酸纖維素市場複合年成長率通常最高。工業化程度的提高、可支配收入的增加以及消費品、包裝和紡織品等最終用途行業的擴張是這一成長的原因。該地區對醋酸纖維素產品的需求也受到不斷提高的環境永續意識和支持使用生物分解性材料的監管舉措的推動。此外,基礎設施發展和都市化的投資進一步刺激了市場,而有利的政府政策和獎勵也促進了醋酸纖維素在各種應用中的採用。
According to Stratistics MRC, the Global Cellulose Acetate Market is accounted for $6.07 billion in 2024 and is expected to reach $8.96 billion by 2030 growing at a CAGR of 6.70% during the forecast period.. Cellulose acetate is created by acetylating cellulose, a naturally occurring polymer found in plants, with acetic acid, due to its many different applications, cellulose acetate is a material that is both widely used and versatile. Through this process, cellulose's renewable nature and biodegradability are combined with improved qualities like strength, flexibility, and moisture resistance to create a material. Moreover, numerous industries, including textiles, use cellulose acetate extensively in the production of fibers used in apparel and home furnishings. It is also used as a base material for consumer products like eyeglass frames and films, as well as packaging materials.
According to the American Chemical Society, Chemistry plays a central role in addressing some of the world's most pressing challenges, including sustainable energy, clean water, and human health.
Rising adoption in textile applications
Due to their remarkable qualities-such as high durability, softness, and wrinkle resistance-cellulose acetate fibers have become more and more popular in textile applications. Among other things, these fibers are being used more and more in the manufacturing of industrial textiles, home furnishings, and clothing. Additionally, since cellulose acetate fibers provide a sustainable substitute for synthetic fibers like polyester and nylon, the textile industry's growing preference for eco-friendly and biodegradable materials has increased demand for them.
Competition from man-made fibers
Synthetic fibers like polyester and nylon pose a serious threat to cellulose acetate fibers, despite the latter are biodegradability and softness. In some textile applications, synthetic fibers are the preferred option due to their superior qualities, such as resilience, high tensile strength, and moisture resistance. Furthermore, the growth of the cellulose acetate fiber market may be impeded by the lower production costs of synthetic fibers, particularly in markets where consumers are price conscious.
Growing interest in eco-friendly packaging
The need for environmentally friendly packaging solutions has increased as sustainability and environmental conservation gain more attention. With its renewable source and biodegradable characteristics, cellulose acetate is a strong contender for environmentally friendly packaging materials. Moreover, producers can take advantage of this chance by creating cutting-edge cellulose acetate-based packaging for a range of markets, such as pharmaceuticals, cosmetics, and food and beverage.
Technological progress in alternative substances
Quick developments in manufacturing and material science could result in the creation of substitute materials that are more functional or perform better than cellulose acetate. For instance, the market share of cellulose acetate in a variety of applications may be threatened by the development of novel synthetic polymers with improved properties or the introduction of bioplastics made from renewable resources. Additionally, to remain competitive in the face of shifting market trends, manufacturers need to invest in research and development and stay up-to-date on technological advancements.
The COVID-19 pandemic has had a major effect on the market for cellulose acetate, causing supply chain disruptions and lowering demand in a number of end-use industries. Reduced consumer spending as a result of travel restrictions, lockdowns, and economic uncertainty had an impact on the market for cellulose acetate products in industries like packaging, consumer goods, and textiles. Moreover, production schedules were thrown off, raw material availability was hampered, and supply chain disruptions were made worse by temporary closures of manufacturing facilities and logistical difficulties. Furthermore, demand for some applications, like cigarette filters, was comparatively steady, but as companies struggled with operational issues and unstable market conditions, the market as a whole shrank.
The Cellulose Acetate Tow segment is expected to be the largest during the forecast period
In the cellulose acetate market, cellulose acetate tow usually has the largest share. The term cellulose acetate tow describes long, continuous cellulose acetate filaments that are mostly used in the manufacture of cigarette filters. There is still a strong market for cellulose acetate because the tobacco industry is one of the biggest users of cellulose acetate worldwide. Though not as much as with cigarette filters, cellulose acetate tow is also used in textile production, such as in the creation of yarns and fabrics. Because of its adaptability, biodegradability, and advantageous filtration qualities, it is well-known in the industry. However, shifting consumer preferences toward healthier lifestyles and stepping up regulatory actions aimed at tobacco use may also have an impact on the segment's growth.
The Plastics segment is expected to have the highest CAGR during the forecast period
In the cellulose acetate market, the plastics segment often has the highest CAGR. Plastics made of cellulose acetate are adaptable materials that find use in a wide range of products, including consumer goods, fashion accessories, automotive parts, and eyeglass frames. Additionally, the growing consumer consciousness of environmental conservation, the growing demand for eco-friendly and sustainable materials, and legislative measures encouraging the use of biodegradable plastic substitutes instead of traditional ones are the main drivers of the segment's growth.
The market for cellulose acetate is normally dominated by the Asia-Pacific area. The region's expanding population and economic growth, the existence of large cellulose acetate producers, and the sizeable demand from end-use industries like consumer goods, textiles, and packaging are the main causes of this dominance. The Asia-Pacific region's cellulose acetate market is significantly influenced by nations like China, India, Japan, and South Korea, whose booming manufacturing, textile, and tobacco industries fuel consumer demand for cellulose acetate products. Furthermore, rising expenditures on urbanization, infrastructure development, and consumer spending support the region's market expansion.
In the cellulose acetate market, the Middle East and Africa region usually shows the highest CAGR. Growing industrialization, raising levels of disposable income, and the expansion of end-use industries like consumer goods, packaging, and textiles are all blamed for this growth. The demand for cellulose acetate products in the region is also driven by growing environmental sustainability awareness and regulatory initiatives that support the use of biodegradable materials. Moreover, the market is further stimulated by investments in infrastructure development and urbanization, and the adoption of cellulose acetate in various applications is encouraged by favorable government policies and incentives.
Key players in the market
Some of the key players in Cellulose Acetate market include Celanese Corporation, Eastman Chemical Company, Mitsubishi Chemical Holdings, BASF SE, Accords Cellulosic Fibers Inc., Daicel Corporation, China National Tobacco Corporation, Solvay, Rotuba Extruders, Inc, Borregaard ASA, Sappi Ltd, Sichuan Push Acetate Co. Ltd., Arkema SA, Rayonier Advanced Materials, Inc and Cerdia International GmbH.
In April 2024, BASF signed a 25-year power purchase agreement (PPA) with China Energy Engineering Group Guangdong Electric Power Design Institute Co., Ltd. (GEDI) to purchase renewable electricity for its Zhanjiang Verbund site. The PPA is a further step in the renewable energy partnership between BASF and GEDI following the Letter of Intent (LOI).
In February 2024, Eastman has signed a long-term agreement with Nord Pal Plast, part of Dentis Group, to secure plastic waste feedstock for its planned molecular recycling facility in Port-Jerome-sur-Seine, Normandy, France. Italy-based Dentis Group focuses on the recovery and mechanical recycling of polyethylene terephthalate (PET) packaging waste. Under the agreement, Dentis will provide 30,000 metric tonnes of rejected PET post-consumer waste to Eastman annually.
In June 2023, US chemical group Celanese Corporation and Japanese chemical giant Mitsui & Co have signed a definitive agreement to form a food ingredients joint venture under the name Nutrinova. Building on an existing strategic cooperation agreement, Nutrinova will combine the technology, product portfolio and backward integration of the Celanese Food Ingredients business with Mitsui's long-standing positions across the food value chain in Asia and other regions.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.